Unique_ID Origin_ID Sequence Activity Source Structure Hemolysis Reference Length Stereo FPDB00078 AP01064|||AP01064|||DRAMP00816|||DRAMP00816 " GIPCGESCVWIPCISAAIGCSCKSKVCYRN" Antiviral||Antifungal||Antiparasitic||Anti-HIV||Active against nematode parasites of sheep (e.g. Haemonchus contortus or Trichostrongylus colubriformis).||Insecticidal Viola odorata|||Viola odorata|||Viola odorata (Sweet violet)|||Viola odorata (Sweet violet) Bridge "Peptides were dissolved in water and serially diluted in PBS to give 0.02 ml test solutions in a 96-well U-bottomed microtitre plate (Nunc). Human type A RBCs (red blood cells) were washed with PBS and centrifuged at 1500000000 ug for 60 s in a microcentrifuge several times until a clear supernatant was obtained. A 0.25% suspension of washed RBCs in PBS (0.1 ml) was added to the peptide solutions. The plate was incubated at 37◦Cfor 1 h and centrifuged at 150000000 ug for 0.083333 h. Aliquots of 0.1 mlweretransferred to a 96-well flat-bottomed microtitre plate (Falcon) and the absorbance was measured at 405 nm with an automatic Multiskan Ascent plate reader (Labsystems). The amount of haemolysis was calculated as the percentage ofmaximum lysis (1%Triton X-100 control) after adjusting for minimum lysis (PBS control). Synthetic melittin (Sigma) was used for comparison. The haemolytic dose necessary to lyse 50% of the RBCs (HD50) was calculated using the regression constant from the linear portion of the haemolytic titration curve (Graphpad Prism software).|||The document mentions hemolysis-related data for various cyclic peptides isolated from Viola odorata, as follows: - cycloviolacin O2: At a concentration of 25 µM, the hemolysis rate is about 40%, and the half-hemolysis concentration (HD_{50}) is about 36 µM. - cycloviolacin O13: At a concentration of 25 µM, the hemolysis rate is about 60%, and the HD_{50} is about 11 µM. - cycloviolacin O14: At a concentration of 25 µM, the hemolysis rate is about 11%, making it the cyclic peptide with the lowest hemolysis among the new peptides. - cycloviolacin O15: At a concentration of 25 µM, the hemolysis rate is about 25%. - cycloviolacin O24: At a concentration of 25 µM, the hemolysis rate is about 75%, making it the cyclic peptide with the highest hemolysis among the new peptides. - varv A: At a concentration of 25 µM, the hemolysis rate is about 50%. - kalata B1: At a concentration of 25 µM, the hemolysis rate is about 30%. These data were obtained through hemolysis experiments using human type A red blood cells as the experimental subject, with 1% Triton X-100 treated group as the maximum hemolysis control and PBS treated group as the minimum hemolysis control, and the hemolysis percentage was calculated accordingly.|||[Ref:16872274] It has 50% hemolytic activity at 1 uM and 75% hemolytic activity at 1.5 uM against human type A red blood cells|||[Ref:16872274] It has 50% hemolytic activity at 1 uM and 75% hemolytic activity at 1.5 uM against human type A red blood cells" Biochem J. 2006 Nov 15;400(1):1-12. Pub-Med.|||Biochem J. 2006 Nov 15;400(1):1-12. doi: 10.1042/BJ20060627.|||Biochem J. 2006 Nov 15;400(1):1-12.Biopolymers. 2008;90(1):51-60. 30 FPDB00079 AP01065|||AP01065|||DRAMP00817|||DRAMP00817 GSIPACGESCFKGKCYTPGCSCSKYPLCAKN Antiviral||Antiparasitic||Anti-HIV||Anti-It inhibited HIV-1 infection in cultured human T-lymphoblast cells, activity value is EC50 = 0.44 uM||Insecticidal Viola odorata|||Viola odorata|||Viola odorata (Sweet violet)|||Viola odorata (Sweet violet) Combine||Combine helix and strand structure "The document mentions hemolysis-related data for various cyclic peptides isolated from Viola odorata, as follows: - cycloviolacin O2: At a concentration of 25 µM, the hemolysis rate is about 40%, and the half-hemolysis concentration (HD_{50}) is about 36 µM. - cycloviolacin O13: At a concentration of 25 µM, the hemolysis rate is about 60%, and the HD_{50} is about 11 µM. - cycloviolacin O14: At a concentration of 25 µM, the hemolysis rate is about 11%, making it the cyclic peptide with the lowest hemolysis among the new peptides. - cycloviolacin O15: At a concentration of 25 µM, the hemolysis rate is about 25%. - cycloviolacin O24: At a concentration of 25 µM, the hemolysis rate is about 75%, making it the cyclic peptide with the highest hemolysis among the new peptides. - varv A: At a concentration of 25 µM, the hemolysis rate is about 50%. - kalata B1: At a concentration of 25 µM, the hemolysis rate is about 30%. These data were obtained through hemolysis experiments using human type A red blood cells as the experimental subject, with 1% Triton X-100 treated group as the maximum hemolysis control and PBS treated group as the minimum hemolysis control, and the hemolysis percentage was calculated accordingly.|||[Ref:16872274] It has 3% hemolytic activity at 1 uM and 13% hemolytic activity at 1.5 uM against human type A red blood cells|||[Ref:16872274] It has 3% hemolytic activity at 1 uM and 13% hemolytic activity at 1.5 uM against human type A red blood cells" Biochem J. 2006 Nov 15;400(1):1-12. Pub-Med.|||Biochem J. 2006 Nov 15;400(1):1-12. doi: 10.1042/BJ20060627.||Ireland et al., 2008|||Biochem J. 2006 Nov 15;400(1):1-12. Pub-Med.|||Biochem J. 2006 Nov 15;400(1):1-12.Biopolymers. 2008;90(1):51-60.|||Biochem J. 2006 Nov 15;400(1):1-12.Biopolymers. 2008;90(1):51-60. 31 FPDB00196 AP00485|||AP00485|||Cupiennin-1|||DRAMP03222 GFGALFKFLAKKVAKTVAKQAAKQGAKYVVNKQME Anti-and E. faecalis ATCC 29212, activity value is MIC = 2.5||activity value is IC50 = 0.658||Anti-T. brucei rhodesiense, activity value is IC50 = 0.055||Anti-and P. falciparum, activity value is IC50 = 0.029||Antibacterial||Antimicrobial||Anti-Gram+||Anti-Gram-||Insecticidal venom, Cupiennius salei|||venom, Cupiennius salei|||Cupiennius salei [Wandering spider]|||Cupiennius salei (Wandering spider) Helix||Alpha helix (3 helices; 11 residues) "In hemolysis experiments targeting the antimicrobial peptide Cupiennin 1 from spider venom, the relevant hemolytic values (peptide concentration causing 50% hemolysis, EC₅₀) are as follows: - Cupiennin 1a: 24.4 µM (95% confidence interval 22.9–26 µM). - Cupiennin 1a (non-amidated)*: 20.5 µM (95% confidence interval 19.4–21.8 µM). - Cupiennin 1d (non-amidated)*: 14.5 µM (95% confidence interval 14.4–14.7 µM). - Cupiennin 1b: Hemolysis rate was 15% at 8 µM, EC₅₀ was not explicitly determined, but activity is higher than Cupiennin 1a and lower than Cupiennin 1d. Compared with other peptides, the hemolytic activity of Cupiennin 1 is lower than that of bee venom peptide (Melittin, EC₅₀ = 1.7 µM), but higher than that of magainin 2 (which has no hemolytic activity).|||[Ref.11792701]EC50=24.4 uM against human red blood cells." "Kuhn-Nentwig L, Muller J, Schaller J, Walz A, Dathe M, Nentwig W2002 J Biol Chem. 2002 Mar 29;277(13):11208-16. PubMed.|||J Biol Chem . 2002 Mar 29;277(13):11208-16. doi: 10.1074/jbc.M111099200. Epub 2002 Jan 15.|||11792701|||Biochemistry. 2007 Mar 20;46(11):3576-3585." 35 FPDB00345 AP01036|||AP01036|||Cycloviolacin O2|||DRAMP00805 " GIPCGESCVWIPCISSAIGCSCKSKVCYRN" Anti-Gram+ & Gram-||Antifungal||candidacidal||Antiparasitic||Anticancer||Anti-S. enterica serovar Typhimurium LT2 and E. coli in RDAs and MIC assays . Moderately active against S. aureus, activity value is MIC = 20||Anti-and C. albicans . A. baumannii, activity value is MIC = 4.2 uM||Anti-plant fungi F. oxysporum, activity value is MIC = 6||Anti-B. cinerea, activity value is MIC = 1.5 uM||Anti-F. graminearum, activity value is MIC = 6.25 uM||Anti-F. culmorum, activity value is MIC = 1.5 uM||Anti-C. utrechtense, activity value is MIC = 6.25 uM||Anti-A. alternatam, activity value is MIC = 1.5 uM||Anti-Escherichia coli, activity value is MIC = 20 uM||Anti-Pseudomonas aeruginosa, activity value is MIC = 10 uM||Anti-Staphylococcus aureus, activity value is MIC = 20 uM||Anti-Candida albicans, activity value is MIC = 20 uM||Insecticidal Viola odorata and Viola japonica|||Viola odorata and Viola japonica|||Viola odorata L. and Viola tricolor L|||Viola biflora (Yellow wood violet) & Viola odorata (Sweet violet) Bridge||Combine helix and strand structure [Ref:16872274] It has 35% hemolytic activity at 1 uM and 60% hemolytic activity at 1.5 uM against human type A red blood cells J Mol Biol. 1999 Dec 17;294(5):1327-36. Pub-Med.|||1999 Dec 17;294(5):1327-36. doi: 10.1006/jmbi.1999.3383.||ref 2024||Pränting M et al., 2010||Fensterseifer IC et al., 2014||Strömstedt AA et al., 2017||Slazak et al. 2018|||28669767|||J Mol Biol. 1999 Dec 17;294(5):1327-36. Pub-Med.||ref 2024||Pränting M et al., 2010||Fensterseifer IC et al., 2014||Strömstedt AA et al., 2017||Slazak et al. 2018|||J Mol Biol. 1999 Dec 17;294(5):1327-36. Pub-Med.|||Biochem J. 2006 Nov 15;400(1):1-12.J Mol Biol. 1999 Dec 17;294(5):1327-1336.Biochem J . 2006 Nov 15;400(1):1-12. 30 FPDB01781 AP00386|||Ponericin-W1|||DRAMP02762|||Ponericin-W1|||AP00386|||DRAMP02762 WLGSALKIGAKLLPSVVGLFKKKKQ "Anti-Gram+ & Gram-||Antifungal||Insecticidal||Hemolytic||Antibacterial||Antimicrobial||Anti-Gram+||Anti-Gram-||Gram-positive bacteria: Bacillus cereus CIP 6624a(Inhibition zone = 10mm)||B. megaterium ATCC 9885b(Inhibition zone = 12.5mm)||B. stearothermophilus CIP 675(Inhibition zone = 17mm)||B. subtilis ATCC 6623(Inhibition zone = 12mm)||Enterococcus faecalis CIP 636(Inhibition zone = 6mm)||Lactococcus lactis ssp. cremoris I116(Inhibition zone = 15mm)||Streptococcus pyogenes CIP 561(Inhibition zone = 10mm)||S. sanguinis CIP 55128(Inhibition zone = 7.5mm)||Listeria ivanovii LMA 94d(Inhibition zone = 11.5mm)||Listeria monocytogenes ATCC 15313(Inhibition zone = 9.5mm)||Micrococcus luteus CIP 5345(Inhibition zone = 11.5mm)||Staphylococcus aureus CIP 677(Inhibition zone = 10mm)||Staphylococcus aureus LMA(Inhibition zone = 13.5mm)||S. epidermidis CIP 53134(Inhibition zone = 13.5mm); Gram-negative bacteria: Escherichia coli(Inhibition zone = 8mm)||Enterobacter cloacae CIP 6085(Inhibition zone = 3mm)||Klebsiella pneumoniae CIP 8291(Inhibition zone = 6.5mm)||Proteus mirabilis LMA TP(no detected)||Salmonella enterica CIP 813(Inhibition zone = 3mm)||Serratia marcescens LMA TP(no detected)||Flavobacterium meningosepticum CIP 6057(Inhibition zone = 6mm)||Pseudomonas aeruginosa CIP A22(Inhibition zone = 16mm)." venom, ants, Pachycondyla goeldii|||Pachycondyla goeldii [Ponerine ant]|||Pachycondyla goeldii (Ponerine ant)|||Pachycondyla goeldii [Ponerine ant]|||venom, ants, Pachycondyla goeldii, French, Europe|||Pachycondyla goeldii (Ponerine ant) Helix Hemolysis experiment of horse and sheep red blood cells: At concentrations of 400-500 μM, the crude toxin and three synthetic peptides (W1, W5, W6) can cause complete hemolysis of horse and sheep red blood cells; W3-desK and W4 only exhibit hemolytic activity against horse red blood cells, with no obvious effect on sheep red blood cells; the remaining five synthetic peptides (G1, G3, G4, G6, L13) did not show hemolytic activity. However, the document did not specify the exact hemolysis rate values, only describing whether hemolysis occurred and the range of hemolysis.|||At the same concentrations (400-500 uM) used for the antimicrobial activity assay, it can induce complete hemolysis of sheep red blood cells and horse red blood cells.|||[Ref.11279030]2mm in test condition against horse erythrocytes (A 12-ml sample of blood agar medium was supplemented with 1 ml of sheep or horse erythrocytes. Wells 5 mm in diameter were filled with 0.02 ml of the peptide solution and placed overnight at 4 °C to allow the diffusion of the hemolytic agent) "J Biol Chem . 2001 May 25;276(21):17823-9. doi: 10.1074/jbc.M100216200. Epub 2001 Feb 22.|||11279030|||J. Biol. Chem. 2001; 276: 17823-17829.|||11279030|||J. Biol. Chem. 2001; 276: 17823-17829. PubMed.|||Ref.11279030|||J. Biol. Chem. 2001; 276: 17823-17829.|||J. Biol. Chem. 2001; 276: 17823-17829." 25 FPDB01782 AP00387|||Ponericin-W2|||DRAMP02763|||Ponericin-W2|||AP00387|||DRAMP02763 WLGSALKIGAKLLPSVVGLFQKKKK Anti-Gram+ & Gram-||Antifungal||Hemolytic||Antibacterial||Insecticidal||Antimicrobial||No MICs found in DRAMP database||Anti-Gram+||Anti-Gram- ants, Pachycondyla goeldii|||Pachycondyla goeldii [Ponerine ant]|||Pachycondyla goeldii (Ponerine ant)|||Pachycondyla goeldii [Ponerine ant]|||ants, Pachycondyla goeldii|||Pachycondyla goeldii (Ponerine ant) N/A Hemolysis experiment of horse and sheep red blood cells: At concentrations of 400-500 μM, the crude toxin and three synthetic peptides (W1, W5, W6) can cause complete hemolysis of horse and sheep red blood cells; W3-desK and W4 only exhibit hemolytic activity against horse red blood cells, with no obvious effect on sheep red blood cells; the remaining five synthetic peptides (G1, G3, G4, G6, L14) did not show hemolytic activity. However, the document did not specify the exact hemolysis rate values, only describing whether hemolysis occurred and the range of hemolysis. "J Biol Chem . 2001 May 25;276(21):17823-9. doi: 10.1074/jbc.M100216200. Epub 2001 Feb 22.|||11279030|||J. Biol. Chem. 2001; 276: 17823-17829.|||11279030|||J. Biol. Chem. 2001; 276: 17823-17829. PubMed.|||J. Biol. Chem. 2001; 276: 17823-17829." 25 FPDB01783 AP00388|||Ponericin-W3|||DRAMP02764|||Ponericin-W3|||AP00388|||DRAMP02764 GIWGTLAKIGIKAVPRVISMLKKKKQ "Anti-Gram+ & Gram-||Antifungal||Insecticidal||Hemolytic||B. cereus CIP 6624||B. megaterium ATCC 9885||B. stearothermophilus CIP 675||B. subtilis ATCC 6623||Enterococcus faecalis CIP 636||Lactococcus lactis ssp. cremoris I116||Streptococcus pyogenes CIP 561||S. sanguinis CIP 5512||Listeria ivanovii LMA 94||L. monocytogenesATCC 15313||Micrococcus luteus CIP 5345||S. aureus CIP 677||S. aureusLMA||S. epidermidisCIP 53134||E. coli CIP 548||E. coliL||Enterobacter cloacae CIP 6085||Klebsiella pneumoniae CIP 8291||Salmonella enterica CIP 813||Serratia marcescens LMA TP||Alcaligenes faecalis CIP 6723||Pseudomonas aeruginosa CIP A22||P. putidaLMA||Saccharomyces cerevisiae LMA 720||Antimicrobial||Antibacterial||Anti-Gram+||Anti-Gram-||warning: during synthesis||one C-terminal lysine was lost. This synthetic form is referred to as W3-desK in the paper. Diffusion assay: This form is active against Gram+ B. cereus CIP 6624||E. faecalis CIP 636||L. lactis ssp. cremoris I116||S. pyogenes CIP 561||S. sanguinis CIP 55128||L. ivanovii LMA 94||L. monocytogenes ATCC 15313||M. luteus CIP 5345||S. aureus CIP 677 or LMA||S. epidermidis CIP 53134||Gram- bacteria E. coli CIP 548 or L-||E. cloacae CIP 6085||K. pneumoniae CIP 8291||S. enterica CIP 813||S. marcescens LMA TP||A. faecalis CIP 6723||P. aeruginosa CIP A22||P. putida LMA||and yeast S. cerevisiae LMA 720.||Gram-positive bacteria: Bacillus cereus CIP 6624a(Inhibition zone = 10mm)||B. megaterium ATCC 9885b(Inhibition zone = 13.5mm)||B. stearothermophilus CIP 675(Inhibition zone = 17mm)||B. subtilis ATCC 6623(Inhibition zone = 13mm)||Enterococcus faecalis CIP 636(Inhibition zone = 8mm)||Lactococcus lactis ssp. cremoris I116(Inhibition zone = 17.5mm)||Streptococcus pyogenes CIP 561(Inhibition zone = 11.5mm)||S. sanguinis CIP 55128(Inhibition zone = 10mm)||Listeria ivanovii LMA 94d(Inhibition zone = 14mm)||Listeria monocytogenes ATCC 15313(Inhibition zone = 11mm)||Micrococcus luteus CIP 5345(Inhibition zone = 11mm)||Staphylococcus aureus CIP 677(Inhibition zone = 13mm)||Staphylococcus aureus LMA(Inhibition zone = 18mm)||S. epidermidis CIP 53134(Inhibition zone = 15mm); Gram-negative bacteria: Escherichia coli(Inhibition zone = 10mm)||Enterobacter cloacae CIP 6085(Inhibition zone = 4mm)||Klebsiella pneumoniae CIP 8291(Inhibition zone = 7.5mm)||Proteus mirabilis LMA TP(no detected)||Salmonella enterica CIP 813(Inhibition zone = 4mm)||Serratia marcescens LMA TP(Inhibition zone = 11mm)||Flavobacterium meningosepticum CIP 6057(no detected)||Pseudomonas aeruginosa CIP A22(Inhibition zone = 18.5mm)." ants, Pachycondyla goeldii|||Pachycondyla goeldii [Ponerine ant]|||Pachycondyla goeldii (Ponerine ant)|||Pachycondyla goeldii [Ponerine ant]|||ants, Pachycondyla goeldii|||Pachycondyla goeldii (Ponerine ant) N/A Hemolysis experiment of horse and sheep red blood cells: At concentrations of 400-500 μM, the crude toxin and three synthetic peptides (W1, W5, W6) can cause complete hemolysis of horse and sheep red blood cells; W3-desK and W4 only exhibit hemolytic activity against horse red blood cells, with no obvious effect on sheep red blood cells; the remaining five synthetic peptides (G1, G3, G4, G6, L15) did not show hemolytic activity. However, the document did not specify the exact hemolysis rates, only describing whether hemolysis occurred and the hemolytic range.|||It is a weak hemolytic peptide, exhibiting only slight hemolytic activity against horse red blood cells (with a hemolysis zone diameter of 2 mm).|||[Ref.11279030]1mm in test condition against horse erythrocytes (A 12-ml sample of blood agar medium was supplemented with 1 ml of sheep or horse erythrocytes. Wells 5 mm in diameter were filled with 0.02 ml of the peptide solution and placed overnight at 4 °C to allow the diffusion of the hemolytic agent) "J Biol Chem . 2001 May 25;276(21):17823-9. doi: 10.1074/jbc.M100216200. Epub 2001 Feb 22.|||11279030|||J. Biol. Chem. 2001; 276: 17823-17829.|||11279030|||J. Biol. Chem. 2001; 276: 17823-17829. PubMed.|||Ref.11279030|||J. Biol. Chem. 2001; 276: 17823-17829.|||J. Biol. Chem. 2001; 276: 17823-17829." 26 FPDB01784 AP00389|||Ponericin-W4|||DRAMP02765|||Ponericin-W4|||AP00389|||DRAMP02765 GIWGTALKWGVKLLPKLVGMAQTKKQ "Anti-Gram+ & Gram-||Antifungal||Insecticidal||Hemolytic||B. cereus CIP 6624||B. megaterium ATCC 9885||B. stearothermophilus CIP 675||B. subtilis ATCC 6623||Enterococcus faecalis CIP 636||Lactococcus lactis ssp. cremoris I116||Streptococcus pyogenes CIP 561||S. sanguinis CIP 5512||Listeria ivanovii LMA 94||L. monocytogenesATCC 15313||Micrococcus luteus CIP 5345||S. aureus CIP 677||S. aureusLMA||S. epidermidisCIP 53134||E. coli CIP 548||E. coliL||Enterobacter cloacae CIP 6085||Klebsiella pneumoniae CIP 8291||Salmonella enterica CIP 813||Serratia marcescens LMA TP||Alcaligenes faecalis CIP 6723||Pseudomonas aeruginosa CIP A22||P. putidaLMA||Saccharomyces cerevisiae LMA 720||Antimicrobial||Antibacterial||Anti-Gram+||Anti-Gram-||Gram-positive bacteria: Bacillus cereus CIP 6624a(Inhibition zone = 8.5mm)||B. megaterium ATCC 9885b(Inhibition zone = 13.5mm)||B. stearothermophilus CIP 675(Inhibition zone = 18mm)||B. subtilis ATCC 6623(Inhibition zone = 13mm)||Enterococcus faecalis CIP 636(Inhibition zone = 3mm)||Lactococcus lactis ssp. cremoris I116(Inhibition zone = 14mm)||Streptococcus pyogenes CIP 561(Inhibition zone = 8mm)||S. sanguinis CIP 55128(Inhibition zone = 7mm)||Listeria ivanovii LMA 94d(Inhibition zone = 10mm)||Listeria monocytogenes ATCC 15313(Inhibition zone = 10mm)||Micrococcus luteus CIP 5345(Inhibition zone = 12.5mm)||Staphylococcus aureus CIP 677(Inhibition zone = 11.5mm)||Staphylococcus aureus LMA(Inhibition zone = 13.5mm)||S. epidermidis CIP 53134(Inhibition zone = 11.5mm); Gram-negative bacteria: Escherichia coli(Inhibition zone = 8.5mm)||Enterobacter cloacae CIP 6085(Inhibition zone = 16.5mm)||Klebsiella pneumoniae CIP 8291(Inhibition zone = 9mm)||Proteus mirabilis LMA TP(no detected)||Salmonella enterica CIP 813(no detected)||Serratia marcescens LMA TP(Inhibition zone = 13mm)||Flavobacterium meningosepticum CIP 6057(no detected)||Pseudomonas aeruginosa CIP A22(Inhibition zone = 17mm)." ants, Pachycondyla goeldii|||Pachycondyla goeldii [Ponerine ant]|||Pachycondyla goeldii (Ponerine ant)|||Pachycondyla goeldii [Ponerine ant]|||ants, Pachycondyla goeldii|||Pachycondyla goeldii (Ponerine ant) N/A Hemolysis experiment of horse and sheep red blood cells: At concentrations of 400-500 μM, the crude toxin and three synthetic peptides (W1, W5, W6) can cause complete hemolysis of horse and sheep red blood cells; W3-desK and W4 only exhibit hemolytic activity against horse red blood cells, with no obvious effect on sheep red blood cells; the remaining five synthetic peptides (G1, G3, G4, G6, L16) did not show hemolytic activity. However, the document did not specify the exact hemolysis rate values, only describing whether hemolysis occurred and the range of hemolysis.|||It only exhibits weak hemolytic activity against horse red blood cells (with a hemolysis zone diameter of 1 mm).|||[Ref.11279030]2mm in test condition against horse erythrocytes (A 12-ml sample of blood agar medium was supplemented with 1 ml of sheep or horse erythrocytes. Wells 5 mm in diameter were filled with 0.02 ml of the peptide solution and placed overnight at 4 °C to allow the diffusion of the hemolytic agent) "J Biol Chem . 2001 May 25;276(21):17823-9. doi: 10.1074/jbc.M100216200. Epub 2001 Feb 22.|||11279030|||J. Biol. Chem. 2001; 276: 17823-17829.|||11279030|||J. Biol. Chem. 2001; 276: 17823-17829. PubMed.|||Ref.11279030|||J. Biol. Chem. 2001; 276: 17823-17829.|||J. Biol. Chem. 2001; 276: 17823-17829." 26 FPDB01785 AP00390|||Ponericin-W5|||DRAMP02766|||Ponericin-W5|||AP00390|||DRAMP02766 FWGALIKGAAKLIPSVVGLFKKKQ "Anti-Gram+ & Gram-||Antifungal||Insecticidal||Hemolytic||Antibacterial||Antimicrobial||Anti-Gram+||Anti-Gram-||Gram-positive bacteria: Bacillus cereus CIP 6624a(Inhibition zone = 7mm)||B. megaterium ATCC 9885b(Inhibition zone = 12mm)||B. stearothermophilus CIP 675(Inhibition zone = 17mm)||B. subtilis ATCC 6623(Inhibition zone = 13mm)||Enterococcus faecalis CIP 636(Inhibition zone = 3mm)||Lactococcus lactis ssp. cremoris I116(Inhibition zone = 11mm)||Streptococcus pyogenes CIP 561(Inhibition zone = 6.5mm)||S. sanguinis CIP 55128(Inhibition zone = 4.5mm)||Listeria ivanovii LMA 94d(Inhibition zone = 8mm)||Listeria monocytogenes ATCC 15313(Inhibition zone = 6.5mm)||Micrococcus luteus CIP 5345(Inhibition zone = 11mm)||Staphylococcus aureus CIP 677(Inhibition zone = 7.5mm)||Staphylococcus aureus LMA(Inhibition zone = 9mm)||S. epidermidis CIP 53134(Inhibition zone = 7.5mm); Gram-negative bacteria: Escherichia coli(Inhibition zone = 3mm)||Enterobacter cloacae CIP 6085(Inhibition zone = 11mm)||Klebsiella pneumoniae CIP 8291(Inhibition zone = 6.5mm)||Proteus mirabilis LMA TP(no detected)||Salmonella enterica CIP 813(no detected)||Serratia marcescens LMA TP(Inhibition zone = 11mm)||Flavobacterium meningosepticum CIP 6057(Inhibition zone = 5mm)||Pseudomonas aeruginosa CIP A22(Inhibition zone = 14mm)." ants, Pachycondyla goeldii|||Pachycondyla goeldii [Ponerine ant]|||Pachycondyla goeldii (Ponerine ant)|||Pachycondyla goeldii [Ponerine ant]|||ants, Pachycondyla goeldii|||Pachycondyla goeldii (Ponerine ant) N/A Hemolysis experiment of horse and sheep red blood cells: At concentrations of 400-500 μM, the crude toxin and three synthetic peptides (W1, W5, W6) can cause complete hemolysis of horse and sheep red blood cells; W3-desK and W4 only exhibit hemolytic activity against horse red blood cells, with no obvious effect on sheep red blood cells; the remaining five synthetic peptides (G1, G3, G4, G6, L17) did not show hemolytic activity. However, the document did not specify the exact hemolysis rates, only describing whether hemolysis occurred and the hemolytic range.|||At the same concentrations (400-500 uM) used for the antimicrobial activity assay, it can induce complete hemolysis of sheep red blood cells and horse red blood cells.|||[Ref.11279030]4mm in test condition against horse erythrocytes (A 12-ml sample of blood agar medium was supplemented with 1 ml of sheep or horse erythrocytes. Wells 5 mm in diameter were filled with 0.02 ml of the peptide solution and placed overnight at 4 °C to allow the diffusion of the hemolytic agent) "J Biol Chem . 2001 May 25;276(21):17823-9. doi: 10.1074/jbc.M100216200. Epub 2001 Feb 22.|||11279030|||J. Biol. Chem. 2001; 276: 17823-17829.|||11279030|||J. Biol. Chem. 2001; 276: 17823-17829. PubMed.|||Ref.11279030|||J. Biol. Chem. 2001; 276: 17823-17829.|||J. Biol. Chem. 2001; 276: 17823-17829." 24 FPDB01860 AP00486|||DRAMP03223 GFGSLFKFLAKKVAKTVAKQAAKQGAKYIANKQME Anti-Gram+ & Gram-||Insecticidal||Antimicrobial||Antibacterial Cupiennius salei|||Cupiennius salei (Wandering spider) N/A "In hemolysis experiments targeting the antimicrobial peptide Cupiennin 1 from spider venom, the relevant hemolytic values (peptide concentration causing 50% hemolysis, EC₅₀) are as follows: - Cupiennin 1a: 24.4 μM (95% confidence interval 22.9–26 μM). - Cupiennin 1a (non-amidated)*: 20.5 μM (95% confidence interval 19.4–21.8 μM). - Cupiennin 1d (non-amidated)*: 14.5 μM (95% confidence interval 14.4–14.7 μM). - Cupiennin 1b: Hemolysis rate at 8 μM was 15%; EC₅₀ was not explicitly determined, but its activity is higher than Cupiennin 1a and lower than Cupiennin 1d. Compared with other peptides, the hemolytic activity of Cupiennin 1 is lower than that of bee venom peptide (Melittin, EC₅₀ = 1.7 μM), but higher than that of magainin 3 (which has no hemolytic activity).|||[Ref.11792701]Not determined" "J Biol Chem . 2002 Mar 29;277(13):11208-16. doi: 10.1074/jbc.M111099200. Epub 2002 Jan 15.|||J Biol Chem. 2002 Mar 29;277(13):11208-11216." 35 FPDB02044 AP00772|||Oxyopinin-1|||DRAMP03217 FRGLAKLLKIGLKSFARVLKKVLPKAAKAGKALAKSMADENAIRQQNQ Anti-Gram+ & Gram-||Hemolytic||Anti-E. coli, activity value is MIC = 1||Anti-S. aureus, activity value is MIC = 6||Antimicrobial||Antibacterial||Anti-Gram+||Anti-Gram-||Insecticidal venom, wolf spider Oxyopes kitabensis|||Oxyopes kitabensis|||Oxyopes takobius (Lynx spider) (Oxyopes foliiformis) Helix||Alpha helix "Oxyopinins Oxki1: Sheep red blood cells: 50 uM, Pig red blood cells: 12.5 uM, Guinea pig red blood cells: 6.2 uM Oxki2: Sheep red blood cells: 50 uM, Pig red blood cells: 12.5 uM, Guinea pig red blood cells: 6.2 uM Pandinins Pin1: Sheep red blood cells: 50 uM, Pig red blood cells: 12.5 uM, Guinea pig red blood cells: 6.2 uM Pin2: Sheep red blood cells: 1.6 uM, Pig red blood cells: 3.1 uM, Guinea pig red blood cells: 3.1 uM|||[Ref.11976325]100% hemolytic activity at 50 uM against sheep red blood cells" 2002 Jun 28;277(26):23627-37. doi: 10.1074/jbc.M200511200. Epub 2002 Apr 25.|||11976325|||Biochim Biophys Acta. 2004 Aug 30;1664(2):182-188. 48 FPDB02045 AP00773|||DRAMP03218 GKFSVFGKILRSIAKVFKGVGKVRKQFKTASDLDKNQ Anti-Gram+ & Gram-||Hemolytic||Antimicrobial||Antibacterial||Insecticidal||Anti-Gram+||Anti-Gram- venom, wolf spider Oxyopes kitabensis|||Oxyopes takobius (Lynx spider) (Oxyopes foliiformis) Helix||Alpha helix "Oxyopinins Oxki1: Sheep red blood cells: 50 uM, Pig red blood cells: 12.5 uM, Guinea pig red blood cells: 6.2 uM Oxki2: Sheep red blood cells: 50 uM, Pig red blood cells: 12.5 uM, Guinea pig red blood cells: 6.2 uM Pandinins Pin1: Sheep red blood cells: 50 uM, Pig red blood cells: 12.5 uM, Guinea pig red blood cells: 6.2 uM Pin2: Sheep red blood cells: 1.6 uM, Pig red blood cells: 3.1 uM, Guinea pig red blood cells: 3.1 uM|||[Ref.11976325]10% hemolytic activity at 50 uM against sheep red blood cells" 2002 Jun 28;277(26):23627-37. doi: 10.1074/jbc.M200511200. Epub 2002 Apr 25.|||J Biol Chem. 2002 Jun 28;277(26):23627-23637. 37 FPDB02047 AP00775|||DRAMP03220 GKLSGISKVLRAIAKFFKGVGKARKQFKEASDLDKNQ Anti-Gram+ & Gram-||Hemolytic||Antimicrobial||Antibacterial||Insecticidal venom, wolf spider Oxyopes kitabensis|||Oxyopes takobius (Lynx spider) (Oxyopes foliiformis) Helix||Alpha helix "Oxyopinins Oxki1: Sheep red blood cells: 50 uM, Pig red blood cells: 12.5 uM, Guinea pig red blood cells: 6.2 uM Oxki2: Sheep red blood cells: 50 uM, Pig red blood cells: 12.5 uM, Guinea pig red blood cells: 6.2 uM Pandinins Pin1: Sheep red blood cells: 50 uM, Pig red blood cells: 12.5 uM, Guinea pig red blood cells: 6.2 uM Pin2: Sheep red blood cells: 1.6 uM, Pig red blood cells: 3.1 uM, Guinea pig red blood cells: 3.1 uM|||[Ref.11976325]10% hemolytic activity at 50 uM against sheep red blood cells" 2002 Jun 28;277(26):23627-37. doi: 10.1074/jbc.M200511200. Epub 2002 Apr 25.|||J Biol Chem. 2002 Jun 28;277(26):23627-23637. 37 FPDB02181 AP01037|||Cycloviolacin O3|||AP01037|||DRAMP00806 GIPCGESCVWIPCLTSAIGCSCKSKVCYRN Anti-Gram+ & Gram-||Antifungal||candidacidal||Antiparasitic||Anti-Escherichia coli, activity value is MIC = 10 uM||Anti-Pseudomonas aeruginosa, activity value is MIC = 10 uM||Anti-Staphylococcus aureus, activity value is MIC = 20 uM||Anti-Candida albicans, activity value is MIC = 20 uM||Insecticidal Viola odorata|||Viola odorata L. and Viola tricolor L|||Viola odorata|||Viola odorata (Sweet violet) Bridge N/A 1999 Dec 17;294(5):1327-36. doi: 10.1006/jmbi.1999.3383.|||28669767|||J Mol Biol. 1999 Dec 17;294(5):1327-36. Pub-Med.|||Biochem J. 2006 Nov 15;400(1):1-12.J Mol Biol. 1999 Dec 17;294(5):1327-1336. 30 FPDB02183 AP01049|||Kalata B2|||AP01049|||DRAMP00857 GLPVCGETCFGGTCNTPGCSCTWPICTRD Anti-Gram+||Antiviral||Antifungal||Antiparasitic||Insecticidal||Hemolytic||Anti-Pseudomonas aeruginosa, activity value is MIC = 160 uM||Anti-Moderately active against S. aureus, activity value is MIC = 50 uM||Anti-inactive against E.coli, activity value is MIC > 160 uM||Anti-P.aeruginosa, activity value is MIC = 160 uM||Anti-S.aureus, activity value is MIC > 160 uM||Anti-C.albicans, activity value is MIC > 160 uM Viola betonicifolia|||Oldenlandia affinis|||Viola betonicifolia|||Oldenlandia affinis Combine Helix and Beta structure||Bridge It is mentioned in the document that cycloviolacin O1 and other cyclic peptides (cyclotides) are hemolytic, and the concentration that can cause 50% hemolysis of red blood cells is about 20 uM (the original expression is "cause 50% lysis of erythrocytes at a concentration of ~ 20 uM"). This is the only hemolytic value explicitly mentioned in the text.|||[Ref.20564013] HD50=3.3±1.9 uM against Human red blood cells . 1999 Dec 17;294(5):1327-36 doi: 10.1006/jmbi.1999.3383.|||28669767|||J Mol Biol. 1999 Dec 17;294(5):1327-36. Pub-Med.||Fensterseifer IC et al., 2014||Strömstedt et al., 2017|||J Mol Biol. 1999 Dec 17;294(5):1327-36. Pub-Med.|||J Mol Biol. 1999 Dec 17;294(5):1327-1336.Biochemistry. 2005 Jan 25;44(3):851-860.Biopolymers . 2010;94(5):647-58. 29 FPDB02185 AP01071|||Cycloviolacin O19|||AP01071|||DRAMP00822 GTLPCGESCVWIPCISSVVGCSCKSKVCYKD Anti-E. coli, activity value is MIC = 10 uM||Anti-P. aeruginosa, activity value is MIC = 10 uM||Anti-S. aureus, activity value is MIC = 10 uM||Anti-and C. albicans, activity value is MIC = 20 uM||Anti-plant fungi F. oxysporum, activity value is MIC = 12.5||Anti-B. cinerea, activity value is MIC = 1.5 uM||Anti-F. graminearum, activity value is MIC = 12.5 uM||Anti-F. culmorum, activity value is MIC = 1.5 uM||Anti-C. utrechtense, activity value is MIC = 6.25 uM||Anti-A. alternatam, activity value is MIC = 1.5 uM||Antibacterial||Anti-Gram+ & Gram-||Antifungal||candidacidal||Insecticidal Viola odorata|||Viola odorata L. and Viola tricolor L|||Viola odorata|||Viola odorata (Sweet violet) Bridge "Cyclic peptide O13: HD₅₀ is approximately 11 µM Cyclic peptide O14: HD₅₀ is approximately 11% hemolysis Cyclic peptide O24: HD₅₀ is approximately 75% hemolysis|||Peptides were dissolved in water and serially diluted in PBS to give 0.02 ml test solutions in a 96-well U-bottomed microtitre plate (Nunc). Human type A RBCs (red blood cells) were washed with PBS and centrifuged at 1500000000 ug for 60 s in a microcentrifuge several times until a clear supernatant was obtained. A 0.25% suspension of washed RBCs in PBS (0.1 ml) was added to the peptide solutions. The plate was incubated at 37◦Cfor 1 h and centrifuged at 150000000 ug for 0.083333 h. Aliquots of 0.1 mlweretransferred to a 96-well flat-bottomed microtitre plate (Falcon) and the absorbance was measured at 405 nm with an automatic Multiskan Ascent plate reader (Labsystems). The amount of haemolysis was calculated as the percentage ofmaximum lysis (1%Triton X-100 control) after adjusting for minimum lysis (PBS control). Synthetic melittin (Sigma) was used for comparison. The haemolytic dose necessary to lyse 50% of the RBCs (HD51) was calculated using the regression constant from the linear portion of the haemolytic titration curve (Graphpad Prism software)." 2006 Nov 15;400(1):1-12. doi: 10.1042/BJ20060627.||Strömstedt AA et al., 2017||Slazak et al. 2018|||28669767|||Biochem J. 2006 Nov 15;400(1):1-12. Pub-Med.||Strömstedt AA et al., 2017||Slazak et al. 2018|||Biochem J. 2006 Nov 15;400(1):1-12. Pub-Med.|||Biochem J. 2006 Nov 15;400(1):1-12. 31 FPDB02349 AP01368|||RprDefA|||DRAMP03163 ATCDLFSFRSKWVTPNHAACAAHCLLRGNRGGRCKGTICHCRK Anti-Gram+ & Gram-||Antibacterial||Antimicrobial||Anti-Gram+||Anti-Gram-||Insecticidal Rhodnius prolixus|||Rhodnius prolixus [Triatomid bug]|||Rhodnius prolixus Bridge||Combine helix and strand structure N/A 2009 Feb;46(4):516-22. doi: 10.1016/j.molimm.2008.07.021. Epub 2008 Oct 28.|||12650692|||Insect Biochem Mol Biol. 2003 Apr;33(4):439-447. 43 FPDB02903 AP02163|||Cytoinsectotoxin-1a|||DRAMP03236 GFFGNTWKKIKGKADKIMLKKAVKIMVKKEGISKEEAQAKVDAMSKKQIRLYLLKYYGKKALQKASEKL Anti-B. subtilis, activity value is MIC = 0.5||Anti-A. globiformisVKM Ac-1112, activity value is MIC = 0.5||Anti-and B.subtilis VKM B-501, activity value is MIC = 0.9 uM||Anti-E.coli C600, activity value is MIC = 0.5 uM||Anti-E.coli DH5alpha, activity value is MIC = 0.9 uM||Anti-E.coli MH1, activity value is MIC = 0.5 uM||Anti-P.aeruginosa PAO1, activity value is MIC = 1.9 uM||Anti-P.fluorescens VKM B-894, activity value is MIC = 3.8 uM||Antimicrobial||Antibacterial||Anti-Gram+||Anti-Gram-||Insecticidal Lachesana tarabaevi [Spider]|||Lachesana tarabaevi (Spider) Helix venom, Lachesana tarabaevi|||Hemolytic activity against Human erythrocytes ( EC50 = 6 uM ) , Has cytolytic activity against insect Sf9 cells ( EC50 = 1 uM ) , human leukocytes ( EC50 = 3 uM )|||[Ref.18215128]EC50=6 uM against human erythrocytes Biochem J. 2008 May 1;411(3):687-96.Pub-Med.||Ali et al., 2014|||https://pubmed.ncbi.nlm.nih.gov/18215128|||Biochem J. 2008 May 1;411(3):687-696. 69 FPDB14601 RprDefB|||DRAMP03164 ATCDLLSFRSKWVTPNHAGCAAHCLLRGNRGGHCKGTICHCRK Antibacterial||Antimicrobial||Anti-Gram+||Anti-Gram-||Insecticidal Rhodnius prolixus [Triatomid bug]|||Rhodnius prolixus Combine helix and strand structure N/A 12650692|||Insect Biochem Mol Biol. 2003 Apr;33(4):439-447. 43 FPDB14602 RprDefC|||DRAMP03165 ATCDLFSFRSKWVTPNHAGCAAHCIFLGNRGGRCVGTVCHCRK Antibacterial||Antimicrobial||Anti-Gram+||Anti-Gram-||Insecticidal Rhodnius prolixus [Triatomid bug]|||Rhodnius prolixus Combine helix and strand structure N/A 12650692|||Insect Biochem Mol Biol. 2003 Apr;33(4):439-447. 43 FPDB14938 Cytoinsectotoxin 1-9|||DRAMP03244 "GFFGNTWKKIKGKTDKIMLKKAVKIMVKKEGISKEEAQAKVDAMSKKQIRLYLLKHYGKK ALQKASEKL" Antibacterial||Antimicrobial||Insecticidal Lachesana tarabaevi [Spider]|||Lachesana tarabaevi (Spider) N/A N/A https://pubmed.ncbi.nlm.nih.gov/18215128|||Biochem J. 2008 May 1;411(3):687-696. 69 FPDB14939 Cytoinsectotoxin 1-6|||DRAMP03246 " GFFGNTWKKIKGKADKIMLKKAVKIMVKKEGIFKEEAQAKVDAMSKKQIRLYLLKYYGKK ALQKASEKL" Antibacterial||Antimicrobial||Insecticidal Lachesana tarabaevi [Spider]|||Lachesana tarabaevi (Spider) N/A N/A https://pubmed.ncbi.nlm.nih.gov/18215128|||Biochem J. 2008 May 1;411(3):687-696. 69 FPDB14940 Cytoinsectotoxin-1h|||DRAMP03243 " GFFGNAWKKIKGKAEKFFRKKAAKIIAKKEGITKEEAEAKVDTMSKKQIKVYLLKHYGKK ALQKASEKL" Antibacterial ; E. coli||Antimicrobial||Antibacterial||Anti-Gram-||Insecticidal Lachesana tarabaevi [Spider]|||Lachesana tarabaevi (Spider) N/A N/A https://pubmed.ncbi.nlm.nih.gov/18215128|||Biochem J. 2008 May 1;411(3):687-696. 69 FPDB14941 Cytoinsectotoxin-1000000 ug|||DRAMP03242 " GFFGNTWKKIKGKADKIMLKKAVKIMVKKEGISKEEAQAKVDAMSKKQIRLYVLKHYGKK ALQKASEKL" Antibacterial ; E. coli||Antimicrobial||Antibacterial||Anti-Gram-||Insecticidal Lachesana tarabaevi [Spider]|||Lachesana tarabaevi (Spider) N/A N/A https://pubmed.ncbi.nlm.nih.gov/18215128|||Biochem J. 2008 May 1;411(3):687-696. 69 FPDB14942 Cytoinsectotoxin-1f|||DRAMP03241 " GFFGNTWKKIKGKADKIMLKKAVKIMVKKEGISKEEAQAKVDAMSKKQIRLYLLKHYGKK ALQKASEKL" Antibacterial ; E. coli||Antimicrobial||Antibacterial||Anti-Gram-||Insecticidal Lachesana tarabaevi [Spider]|||Lachesana tarabaevi (Spider) N/A N/A https://pubmed.ncbi.nlm.nih.gov/18215128|||Biochem J. 2008 May 1;411(3):687-696. 69 FPDB16089 DRAMP03741 IFGSLFSLGSKLLPSVFKLFSRKKQ Antimicrobial||Antibacterial||Anti-Gram+||Anti-Gram-||Antifungal||Insecticidal Lychas mucronatus (Chinese swimming scorpion) N/A [Swiss_Prot Entry P0CI91]has hemolytic activities BMC Genomics. 2010 Jul 28;11:452. 25 FPDB16090 DRAMP03742 IFGSLFSLGSKLLPTVFKLFSRKKQ Antimicrobial||Antibacterial||Anti-Gram+||Anti-Gram-||Antifungal||Insecticidal Lychas mucronatus (Chinese swimming scorpion) N/A [Swiss_Prot Entry P0CI92]has hemolytic activities BMC Genomics. 2010 Jul 28;11:452. 25 FPDB19136 DRAMP03219 GKFSGFAKILKSIAKFFKGVGKVRKQFKEASDLDKNQ Antimicrobial||Antibacterial||Insecticidal||Anti-Gram+||Anti-Gram- Oxyopes takobius (Lynx spider) (Oxyopes foliiformis) N/A [Ref.11976325]10% hemolytic activity at 50 uM against sheep red blood cells J Biol Chem. 2002 Jun 28;277(26):23627-23637. 37 FPDB19137 DRAMP03221 GKFSVFSKILRSIAKVFKGVGKVRKQFKTASDLDKNQ Antimicrobial||Antibacterial||Insecticidal Oxyopes takobius (Lynx spider) (Oxyopes foliiformis)|||Oxyopes takobius (Lynx spider) N/A [Ref.11976325]10% hemolytic activity at 50 uM against sheep red blood cells J Biol Chem. 2002 Jun 28;277(26):23627-23637. 37 FPDB19138 DRAMP03238 GFFGNTWKKIKGKADKIMLKKAVKIMVKKEGISKEEAQAKVDAMSKKQIRLYVLKYYGKKALQKASEKL Antimicrobial||Antibacterial||Anti-Gram+||Anti-Gram-||Insecticidal Lachesana tarabaevi (Spider) N/A N/A Biochem J. 2008 May 1;411(3):687-696. 69 FPDB19141 DRAMP03239 GFFGNTWKKIKGKADKIMLKKAVKIMVKKEGITKEEAQAKVDAMSKKQIRLYLLKYYGKKALQKASEKL Antimicrobial||Antibacterial||Insecticidal Lachesana tarabaevi (Spider) N/A N/A Biochem J. 2008 May 1;411(3):687-696. 69 FPDB19142 DRAMP03240 GFFGNTWKKIKGKSDKIMLKKAVKIMVKKEGISKEEAQAKVDAMSKKQIRLYLLKYYGKKALQKASEKL Antimicrobial||Antibacterial||Insecticidal Lachesana tarabaevi (Spider) N/A N/A Biochem J. 2008 May 1;411(3):687-696. 69 FPDB19143 DRAMP03245 GFFGNTWKKIKGKADKIMLKKAVKIMVKKEGISKEEAQAKVDAMSKKQIRLYVLKHYGKKALQKVSEKL Antimicrobial||Antibacterial||Insecticidal Lachesana tarabaevi (Spider) N/A N/A Biochem J. 2008 May 1;411(3):687-696. 69 FPDB19144 DRAMP03247 GFFGNAWKKIKGKAEKFFRKKAAKIIAKKEGITKEEAEAKVDPMSKKQIKVYLLKHYGKKALQKASEKL Antimicrobial||Antibacterial||Insecticidal Lachesana tarabaevi (Spider) N/A N/A Biochem J. 2008 May 1;411(3):687-696. 69 FPDB19145 DRAMP03248 GFFGNTWKKIKGKADKIMLKKAVKIMVKKEGISKEEAQAKVDAMSKKQIRLYLLKHYGKKLFKKRPKNCDQ Antimicrobial||Antibacterial||Insecticidal Lachesana tarabaevi (Spider) N/A N/A Biochem J. 2008 May 1;411(3):687-696. 71 FPDB19146 DRAMP03249 GFFGNTWKKIKGKADKIMLKKAVKIMVKKEGISKEEAQAKVDAMSKKQIRLYLLKYYGKKLFKKRPKNCDQ Antimicrobial||Antibacterial||Insecticidal Lachesana tarabaevi (Spider) N/A N/A Biochem J. 2008 May 1;411(3):687-696. 71 FPDB19147 DRAMP03250 GFFGNTWKKIKGKADKIMLKKAVKLMVKKEGISKEEAQAKVDAMSKKQIRLYLLKYYGKKSSSKSVRKIVISKSF Antimicrobial||Antibacterial||Insecticidal Lachesana tarabaevi (Spider) N/A N/A Biochem J. 2008 May 1;411(3):687-696. 75 FPDB19148 DRAMP03251 GFFGNTWKKIKGKADKIMLKKAVKIMVKKEGISKEEAQAKVDAMSKKQIRLYVLKHYGKKSSSKSFRKIVISKSF Antimicrobial||Antibacterial||Insecticidal Lachesana tarabaevi (Spider) N/A N/A Biochem J. 2008 May 1;411(3):687-696. 75 FPDB19401 DRAMP04526 SCVFIPCITSLAGCSCKNKVCYYDGGSVPCGE No MICs found in DRAMP database||Insecticidal Palicourea rigida (Rubiaceae) N/A No hemolysis information or data found in the reference(s) presented in this entry J Biol Chem. 2012 Jan 2;287(1):134-147. 32 FPDB21299 DRAMP00322 SEPQXGRDAGGAL Insecticidal Morus alba (White mulberry) N/A N/A BMC Biochem. 2010 Jan 28;11:6. 13 FPDB21300 DRAMP00323 SEQQXGRDVGGAL Insecticidal Morus alba (White mulberry) N/A N/A BMC Biochem. 2010 Jan 28;11:6. 13 FPDB21301 DRAMP00804 GIPCAESCVYIPCTVTALLGCSCSNRVCYN Insecticidal Viola odorata (Sweet violet) Combine helix and strand structure N/A Biochem J. 2006 Nov 15;400(1):1-12.J Mol Biol. 1999 Dec 17;294(5):1327-1336.J Biol Chem. 2003 Mar 7;278(10):8606-8616. 30 FPDB21302 DRAMP00807 GIPCGESCVWIPCISSAIGCSCKNKVCYRN Insecticidal Viola odorata (Sweet violet) Bridge N/A Biochem J. 2006 Nov 15;400(1):1-12.J Mol Biol. 1999 Dec 17;294(5):1327-1336. 30 FPDB21303 DRAMP00808 GTPCGESCVWIPCISSAVGCSCKNKVCYKN Insecticidal Viola odorata (Sweet violet) Bridge N/A Biochem J. 2006 Nov 15;400(1):1-12.J Mol Biol. 1999 Dec 17;294(5):1327-1336. 30 FPDB21304 DRAMP00809 GTLPCGESCVWIPCISAVGCSCKSKVCYKN Insecticidal Viola odorata (Sweet violet) Bridge N/A Biochem J. 2006 Nov 15;400(1):1-12.J Mol Biol. 1999 Dec 17;294(5):1327-1336. 30 FPDB21305 DRAMP00810 SIPCGESCVWIPCTITALAGCKCKSKVCYN Insecticidal Viola odorata (Sweet violet) Bridge N/A Biochem J. 2006 Nov 15;400(1):1-12.J Mol Biol. 1999 Dec 17;294(5):1327-1336. 30 FPDB21306 DRAMP00811 GTLPCESCVWIPCISSVVGCSCKSKVCYKN Insecticidal Viola odorata (Sweet violet) Bridge N/A Biochem J. 2006 Nov 15;400(1):1-12.J Mol Biol. 1999 Dec 17;294(5):1327-1336. 30 FPDB21307 DRAMP00812 GIPCGESCVWIPCLTSAVGCSCKSKVCYRN Insecticidal Viola odorata (Sweet violet) & Viola biflora (Yellow wood violet) Bridge N/A Biochem J. 2006 Nov 15;400(1):1-12.J Mol Biol. 1999 Dec 17;294(5):1327-1336.Phytochemistry. 2008 Feb;69(4):939-952. 30 FPDB21308 DRAMP00813 GIPCGESCVYIPCLTSAVGCSCKSKVCYRN Insecticidal Viola odorata (Sweet violet) Bridge N/A Biochem J. 2006 Nov 15;400(1):1-12. 30 FPDB21309 DRAMP00814 GTLPCGESCVWIPCISAVVGCSCKSKVCYKN Insecticidal Viola odorata (Sweet violet) Bridge N/A Biochem J. 2006 Nov 15;400(1):1-12. 31 FPDB21310 DRAMP00818 GLVPCGETCFTGKCYTPGCSCSYPICKKN Insecticidal Viola odorata (Sweet violet) Bridge [Ref:16872274] It has 6% hemolytic activity at 1 uM and 26% hemolytic activity at 1.5 uM against human type A red blood cells Biochem J. 2006 Nov 15;400(1):1-12. 29 FPDB21311 DRAMP00819 GLPCGETTCFTGKCYTPGCSCSYPICKKIN Insecticidal Viola odorata (Sweet violet) Bridge N/A Biochem J. 2006 Nov 15;400(1):1-12. 30 FPDB21312 DRAMP00820 GIPCGESCVWIPGISAAIGCSCKNKVCYRN Insecticidal Viola odorata (Sweet violet) Bridge N/A Biochem J. 2006 Nov 15;400(1):1-12. 30 FPDB21313 DRAMP00821 GIPCGESCVYIIPCTVTALAQCKCKSKVCYN Insecticidal Viola odorata (Sweet violet) Bridge N/A Biochem J. 2006 Nov 15;400(1):1-12. 31 FPDB21314 DRAMP00823 GIPCGESCVWIPCLTSAIGCSCKSKVCYKD Insecticidal Viola odorata (Sweet violet) Bridge N/A Biochem J. 2006 Nov 15;400(1):1-12. 30 FPDB21315 DRAMP00824 GLPVCGETCVTGSCYTPGCTCSWPVCTRN Insecticidal Viola odorata (Sweet violet) Bridge N/A Biochem J. 2006 Nov 15;400(1):1-12. 29 FPDB21316 DRAMP00825 GLPICGETCVGGTCNTPGCTCSWPVCTRN Insecticidal Viola odorata (Sweet violet) Bridge N/A Biochem J. 2006 Nov 15;400(1):1-12. 29 FPDB21317 DRAMP00826 GLPTCGETCFGGTCNTPGCTCDSSWPICTHN Insecticidal Viola odorata (Sweet violet) Bridge N/A Biochem J. 2006 Nov 15;400(1):1-12. 31 FPDB21318 DRAMP00858 GLPTCGETCFGGTCNTPGCTCDPWPICTRD Insecticidal Oldenlandia affinis Bridge [Ref:11535828] It has hemolytic activity Proc Natl Acad Sci U S A. 2001 Sep 11;98(19):10614-9. 30 FPDB21319 DRAMP00861 GLPVCGETCFGGTCNTPGCSCSSWPICTRN Insecticidal Oldenlandia affinis Bridge [Ref.20564013] HD50=7.7±1.3 uM against Human red blood cells. Chembiochem. 2007 Jun 18;8(9):1001-1011. 30 FPDB21320 DRAMP03259 RTCMIKKEGWGKCLIDTTCAHSCKNRGYIGGDCKGMTRTCYCLVNC Insecticidal V. radiata (a bruchid-resistant mungbean) N/A N/A J Agric Food Chem. 2002 Dec 4;50(25):7258-7263. 46 FPDB21321 DRAMP18097 MPFHYFPKLNPITWIPGWIPGLGKDRCLLPKVTGPCKASLTRYYYDKDTKACVEFIYGGCRGNRNNFKRKDECEKACTDH Insecticidal Araneus ventricosus (Orbweaver spider) (Epeira ventricosa) N/A N/A Int. J. Ind. Entomol. 4:43-49 (2002) 80 FPDB21322 DRAMP18098 MALALLGLTIKPEHVPEGTGKAVADVEALACDPAQCMRSCPFNPFLNQYGGICKNGQCVCVKPS Insecticidal Araneus ventricosus (Orbweaver spider) (Epeira ventricosa) N/A N/A Int. J. Ind. Entomol. 4:43-49 (2002). 64 FPDB21323 DRAMP18099 ECAAKNKRCADWAGPWCCEGLYCSCRSYPGCMCRPNS Insecticidal Agelena orientalis (Spider) N/A N/A J. Biol. CheM. 285:18545-18554 (2010). 37 FPDB21324 DRAMP18100 GCVGENQQCADWAGPHCCSGYYCTCRYFPKCICRKDS Insecticidal Agelena orientalis (Spider) N/A N/A J. Biol. CheM. 285:18545-18554 (2010). 37 FPDB21325 DRAMP18101 GDCVGESQQCADWSGPYCCKGYYCTCRYFPKCICVNDN Insecticidal Agelena orientalis (Spider) N/A N/A J. Biol. CheM. 285:18545-18554 (2010). 38 FPDB21326 DRAMP18102 GGCVGESQQCADWSGPYCCKGYYCTCRYFPKCICVNDN Insecticidal Agelena orientalis (Spider) N/A N/A J. Biol. CheM. 285:18545-18554 (2010). 38 FPDB21327 DRAMP18103 GCVGENQQCADWAGLHCCSGYYCTCRYFPKCICRKDS Insecticidal Agelena orientalis (Spider) N/A N/A J. Biol. CheM. 285:18545-18554 (2010). 37 FPDB21328 DRAMP18104 DCVGENGRCRDWYNDCCDGFYCSCRQPPYCICRNNN Insecticidal Agelena orientalis (Spider) N/A N/A J. Biol. CheM. 285:18545-18554 (2010). 36 FPDB21329 DRAMP18105 ECVGENGHCRSWYNDCCDGYYCSCMQPPNCICRNNN Insecticidal Agelena orientalis (Spider) N/A N/A J. Biol. CheM. 285:18545-18554 (2010). 36 FPDB21330 DRAMP18106 IFECVFSCDIKKEGKPCKPKGEKKCTGGWRCKIKLCLKI Insecticidal Brachypelma ruhnaui (Mexican golden redrump tarantula) (Brachypelmaalbiceps) Beta sheet (3 strands; 10 residues) N/A BiochiM. BiophyS. Acta 1794:1190-1196 (2009). 39 FPDB21331 DRAMP18107 ILECVFSCDIKKEGKPCKPKGEKKCTGGWRCKIKLCLKI Insecticidal Brachypelma ruhnaui (Mexican golden redrump tarantula) (Brachypelmaalbiceps) N/A N/A Submitted (FEB-2008) to UniProtK 39 FPDB21332 DRAMP18109 SDCTLRNHDCTDDRHSCCRSKMFKDVCTCFYPSQAKKELCTCQQPKHLKYIEKGLQKAKDYAT Insecticidal Cupiennius salei (Wandering spider) N/A N/A J. Exp. Biol. 208:2115-2121 (2005). 63 FPDB21333 DRAMP18110 SSVCIPSGQPCPYNEHCCSGSCTYKENENGNTVQRCD Insecticidal Atrax robustus (Sydney funnel-web spider) N/A N/A BiocheM. Pharmacol. 74:623-638 (2007). 37 FPDB21334 DRAMP18111 GGCIKWNHSCQTTTLKCCGKCVVCYCHTPWGTNCRCDRTRLFCTED Insecticidal Macrothele gigas (Spider) N/A N/A FEBS Lett. 547:43-50 (2003). 46 FPDB21335 DRAMP18112 CMGYDIHCTDRLPCCFGLECVKTSGYWWYKKTYCRRKS Insecticidal Macrothele gigas (Spider) N/A N/A FEBS Lett. 547:43-50 (2003). 38 FPDB21336 DRAMP18113 ACVGDGQRCASWSGPYCCDGYYCSCRSMPYCRCRNNS Insecticidal Pireneitega luctuosa (Tangled nest spider) (Paracoelotes luctuosus) beta sheet (5 strands; 10 residues) N/A Eur. J. BiocheM. 267:5783-5795 (2000).Biochemistry 44:1542-1549 (2005).Proteins 59:368-379 (2005). 37 FPDB21337 DRAMP18116 QDFMKHLDKKTQTPKL Insecticidal Segestria florentina (Tube-web spider) (Segestria gracilis) N/A N/A Toxicon 40:125-130 (2002). 16 FPDB21338 DRAMP18117 KECMTDGTVCYIHNHNDCCGSCLCSNGPIARPWEMMVGNCMCGPKA Insecticidal Segestria florentina (Tube-web spider) (Segestria gracilis) N/A N/A J. Insect Physiol. 50:61-71 (2004). 46 FPDB21339 DRAMP18118 AECMVDETVCYIHNHNNC Insecticidal Segestria florentina (Tube-web spider) (Segestria gracilis) N/A N/A Toxicon 40:125-130 (2002). 18