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Brevinin-2-RA21 antimicrobial peptide
Brevinin-2-RA21 antimicrobial peptide was found in Odorrana andersonii (golden crossband frog). It has antimicrobial activity.
Brevinin-2-RA22 antimicrobial peptide
Brevinin-2-RA22 antimicrobial peptide was found in Odorrana andersonii (golden crossband frog). It has antimicrobial activity.
Brevinin-2-RA3 peptide precursor
Brevinin-2-RA3 peptide precursor was found in Odorrana andersonii (golden crossband frog). It has antimicrobial activity.
Brevinin-2-RA4 peptide precursor
Brevinin-2-RA4 peptide precursor was found in Odorrana andersonii (golden crossband frog). It has antimicrobial activity.
Brevinin-2-RA5 peptide precursor
Brevinin-2-RA5 peptide precursor was found in Odorrana andersonii (golden crossband frog). It has antimicrobial activity.
Brevinin-2-RA6 antimicrobial peptide
Brevinin-2-RA6 antimicrobial peptide was found in Odorrana andersonii (golden crossband frog). It has antimicrobial activity. Grades: >97% by HPLC.
Brevinin-2-RA6 peptide precursor
Brevinin-2-RA6 peptide precursor was found in Odorrana andersonii (golden crossband frog). It has antimicrobial activity.
Brevinin-2-RA7 peptide precursor
Brevinin-2-RA7 peptide precursor was found in Odorrana andersonii (golden crossband frog). It has antimicrobial activity. Grades: >96% by HPLC.
Brevinin-2-RA8 peptide precursor
Brevinin-2-RA8 peptide precursor was found in Odorrana andersonii (golden crossband frog). It has antimicrobial activity. Grades: >97% by HPLC.
Brevinin-2-RA9 peptide precursor
Brevinin-2-RA9 peptide precursor was found in Odorrana andersonii (golden crossband frog). It has antimicrobial activity.
Brevinin-2Rb
Brevinin-2Rb was found in Rana ridibunda. It has antimicrobial activity.
Brevinin-2Rc
Brevinin-2Rc has antimicrobial activity. The source of Brevinin-2Rc is Rana ridibunda. Grades: >97% by HPLC.
Brevinin-2Rd
Brevinin-2Rd has antimicrobial activity. The source of Brevinin-2Rd is Rana ridibunda.
Brevinin-2-related peptide
Brevinin-2-related peptide is first isolated from skin secretions of the mink frog Lithobates septentrionalis. Brevinin-2-related peptide shows broad-spectrum antimicrobial activity but its therapeutic potential is limited by moderate hemolytic activity. Alternative Names: B2RP.
Brevinin-2-RN1
Brevinin-2-RN1 has antibacterial and antifungal activity. Brevinin-2-RN1 was found in Rana nigrovittata. Grades: >96% by HPLC.
Brevinin-2-RN2
Brevinin-2-RN2 has antibacterial and antifungal activity. Brevinin-2-RN2 was found in Rana nigrovittata.
Brevinin-2RTa
Brevinin-2RTa is active against S. aureus ATCC2592, R. rhodochrous (Gram-poistive) and P. faecalis X29 (Gram-negative). Brevinin-2RTa was found in Amolops ricketti. Grades: >97% by HPLC.
Brevinin-2RTb
Brevinin-2RTb was found in Amolops ricketti. It has antibacterial activity.
Brevinin-2SHa antimicrobial peptide
Brevinin-2SHa antimicrobial peptide was found in Odorrana schmackeri. It has antimicrobial activity.
Brevinin-2SKa
Brevinin-2SKa was found in Rana sakuraii. It has antimicrobial activity.
Brevinin-2SKb
The source of Brevinin-2SKb is Rana sakuraii. It is active against E. coli (MIC=3 uM). Grades: >95% by HPLC.
Brevinin-2SN1
The source of Brevinin-2SN1 is Hylarana spinulosa. It is active against some Gram-negative and a variety of Gram-positive bacterial strains. Brevinin-2SN1 is also active against fungus C.glabrata 090902 but not against C.albicans. It shows hemolytic activity against human erythrocytes.
Brevinin-2SN2
The source of Brevinin-2SN2 is Hylarana spinulosa. It is active against some Gram-negative and a variety of Gram-positive bacterial strains. Brevinin-2SN2 is also active against fungus C.glabrata 090902 but not against C.albicans. It shows hemolytic activity against human erythrocytes.
Brevinin-2SN2_2 antimicrobial peptide precursor
Brevinin-2SN2_2 antimicrobial peptide precursor is isolated from Hylarana spinulosa. It has antimicrobial activity.
Brevinin-2SN3
The source of Brevinin-2SN3 is Hylarana spinulosa. It is active against some Gram-negative and a variety of Gram-positive bacterial strains. Brevinin-2SN3 is also active against fungus C.glabrata 090902 but not against C.albicans. It shows hemolytic activity against human erythrocytes. Grades: >97% by HPLC.
Brevinin-2SN4
The source of Brevinin-2SN4 is Hylarana spinulosa. Brevinin-2SN4 is active against a variety of Gram-negative and Gram-positive bacterial strains. It is not active against fungi. Brevinin-2SN4 also shows very weak hemolytic activity against human erythrocytes.
Brevinin-2SN4 antimicrobial peptide precursor
Brevinin-2SN4 antimicrobial peptide precursor is isolated from Hylarana spinulosa. It has antimicrobial activity.
Brevinin 2Ta
Brevinin 2Ta is produced by Rana temporaria. B-2Ta exhibited remarkable antimicrobial and anticancer activities.
Brevinin-2Tb
Brevinin-2Tb was found in Rana temporaria. It is an antimicrobial peptide.
Brevinin-2Tc
Brevinin-2Tc was found in Rana temporaria. It contains one disulfide bond: 23, 29. Brevinin-2TC has antibacterial activity against representative Gram-negative and Gram-positive bacteria. Molecular formula: C150H242N40O36S2. Mole weight: 3245.89.
Brevinin-2Td
Brevinin-2Td was found in Rana temporaria. It has antibacterial activity against representative Gram-negative and Gram-positive bacteria.
Brevinin-2TP1_2 antimicrobial peptide precursor
Brevinin-2TP1_2 antimicrobial peptide precursor was originally isolated from Hylarana taipehensis.
Brevinin-2TP1 antimicrobial peptide precursor
Brevinin-2TP1 antimicrobial peptide precursor was found in Hylarana taipehensis.
Brevinin-2TR1_2 antimicrobial peptide precursor
Brevinin-2TR1_2 antimicrobial peptide precursor was originally isolated from Amolops torrentis.
Brevinin-2TR2 antimicrobial peptide precursor
Brevinin-2TR2 antimicrobial peptide precursor was originally isolated from Amolops torrentis.
Brevinin-2TSa
Brevinin-2TSa was found in Rana tsushimensis. Brevinin-2TSa has broad-spectrum growth inhibitory activity against a range of Gram-negative and Gram-positive bacteria (including methicillin-resistant S. aureus MRSA) (MIC< or=25 uM) and relatively low hemolytic activity against human erythrocytes (LD50=100 uM). Grades:>96% by HPLC. Molecular formula: C148H253N41O41S3. Mole weight: 3359.03.
Brochocin C
Brochocin C, produced by Brochothrix campestris, is active against many strains of the closely related meat spoilage organism Brochothrix thermosphacta and a wide range of other gram-positive bacteria, including spores of Clostridium botulinum.
Bromoacetyl resin
Bromoacetyl resin can be selectively cleaved by trimethyltin hydroxide to phenacyl ester of BOC-amino acids and -peptides attached to polystyrene resins using a highly efficient non-acidolytic method. Alternative Names: Br-CH2-CO-Ph-polymer.
Bromoethyl resin
Bromoethyl resin. Alternative Names: Br-Et-Resin; Polystyrene A Br.
BTD-1 is produced by Papio anubis. BTD-1 has antimicrobial activity against the Gram-negative bacterium E.coli ML35, the Gram-positive bacterium S.aureus 502a, and the fungus C.albicans 16820. BTD-2 is more effective against E.coli than BTD-1.
BTD-2
BTD-2 is produced by Papio anubis. BTD-2 has antimicrobial activity against the Gram-negative bacterium E.coli ML35, the Gram-positive bacterium S.aureus 502a, and the fungus C.albicans 16820. BTD-2 is more effective against E.coli than BTD-1.
BTD-4
BTD-4 is produced by Papio anubis. It has antibacterial and antifungal activity.
BTD-7
BTD-7 is produced by Papio anubis. BTD-7 has antimicrobial activity against the Gram-negative bacterium E.coli ML35, the Gram-positive bacterium S.aureus 502a, and the fungus C.albicans 16820.
BTL was isolated from Bacillus subtilis B-TL2. BTL shows relatively low identity to other antimicrobial peptides from bacteria. The peptide exhibited strong inhibitory activity against mycelial growth of Bipolaris maydis, Alternaria brassicae, Aspergillus niger, Cercospora personata.
Buforin-1
The source of Buforin-1 is Bufo gargarizans. Buforin I is generated from histone H2A by pepsin-directed proteolysis in the cytoplasm of gastric gland cells. After secretion into the gastric lumen, buforin I remains adhered to the mucous biofilm that lines the stomach, thus providing a protective antimicrobial coat. Buforins also are known to possess anti-endotoxin and anticancer activities, thus making these peptides attractive reagents for pharmaceutical applications.
Buforin-EC
Buforin-EC was found in Euphlyctis cyanophlyctis. It has antibacterial activity against E.coli HP101BA (MIC=9.6 μM), K.pneumoniae PTCC1388 (MIC=10.6 μM), M.luteus PTCC1625 (MIC=6.0 μM) and S.aureus PTCC1431 (MIC=8.1 μM). Buforin-EC has no or very limited (<3%) hemolytic activity at concentrations of 15 μg/ml and 60 μg/ml, respectively.
Buforin I
Buforin I is a 39-amino acid AMP that was first isolated from the stomach tissue of the Asian toad Bufo gargarizans. Compared with other amphibian AMPs, such as magainin 2, buforin I shows much stronger antimicrobial activities in vitro against a broad spectrum of microorganisms. Buforins have anti-endotoxin and anticancer activities. Alternative Names: H-Ala-Gly-Arg-Gly-Lys-Gln-Gly-Gly-Lys-Val-Arg-Ala-Lys-Ala-Lys-Thr-Arg-Ser-Ser-Arg-Ala-Gly-Leu-Gln-Phe-Pro-Val-Gly-Arg-Val-His-Arg-Leu-Leu-Arg-Lys-Gly-Asn-Tyr-OH; L-alanyl-glycyl-L-arginyl-glycyl-L-lysyl-L-glutaminyl-glycyl-glycyl-L-lysyl-L-valyl-L-arginyl-L-alanyl-L-lysyl-L-alanyl-L-lysyl-L-threonyl-L-arginyl-L-seryl-L-seryl-L-arginyl-L-alanyl-glycyl-L-leucyl-L-glutaminyl-L-phenylalanyl-L-prolyl-L-valyl-glycyl-L-arginyl-L-valyl-L-histidyl-L-arginyl-L-leucyl-L-leucyl-L-arginyl-L-lysyl-glycyl-L-asparagyl-L-tyrosine. Grades: ≥90% by HPLC. CAS No. 173010-28-1. Molecular formula: C184H318N70O47. Mole weight: 4262.93.
Buforin II
It is a 21 amino acid peptide derived from Buforin I peptide that is isolated from the Asian toad Bufo gargarizans. It has anti-microbial activity by penetrating bacteria and inhibiting cellular functions. Compared with magainin 2, It binds DNA and RNA from E.coli with a much greater affinity. It is also considered to be a cell-delivery peptide and has been shown to deliver SiRNAs into cells followed by effective mRNA degradation. Alternative Names: H-Thr-Arg-Ser-Ser-Arg-Ala-Gly-Leu-Gln-Phe-Pro-Val-Gly-Arg-Val-His-Arg-Leu-Leu-Arg-Lys-OH; Buforin; L-Threonyl-L-arginyl-L-seryl-L-seryl-L-arginyl-L-alanylglycyl-L-leucyl-L-glutaminyl-L-phenylalanyl-L-prolyl-L-valylglycyl-L-arginyl-L-valyl-L-histidyl-L-arginyl-L-leucyl-L-leucyl-L-arginyl-L-lysine; Buforin 2. Grades: ≥95%. CAS No. 172998-24-2. Molecular formula: C106H184N40O26. Mole weight: 2434.88.
BV-6 is a selective inhibitor of apoptosis (IAP) family with IC50 value of 7.2 μM when tested with H460 cells. It acts by promoting glioblastoma cancer stem-like cell differentiation by activating NF-κB. BV-6 induces autoubiquitination and proteasomal degradation of IAP1 and XIAP in MDA-MB-231 cells at 5 μM. In BALB/c mice model with transplanted abdominal cavities from donor mouse uterine tissue, intraperitoneally with BV-6 repressed the advancement of endometriosis, cell proliferative activity via inhibiting the expression of IAPs. In hematological THP-1 cells, pre-treatment with BV-6 increased the CIK cells killing ability and the same results were achieved in solid malignancy RH30 cells. Grades: ≥98%. CAS No. 1001600-56-1. Molecular formula: C70H96N10O8. Mole weight: 1205.57.
BVD 10
BVD 10 is a selective NPY Y1 receptor antagonist (Ki = 25.7, 1420, 2403 and 7100 nM at Y1, Y2, Y4 and Y5 receptors, respectively) with no activity at Y4 receptors. Alternative Names: BVD 10; BVD10; BVD-10. Grades: >98%. CAS No. 262418-00-8. Molecular formula: C58H92N16O13. Mole weight: 1221.46.
Bz-Ala-Arg-OH
Bz-Ala-Arg-OH. Alternative Names: Benzoylalanylarginine; N-Benzoyl-Ala-Arg-OH; L-Arginine, N(2)-(N-benzoyl-L-alanyl)-. Grades: 95%. CAS No. 71448-11-8. Molecular formula: C16H23N5O4. Mole weight: 349.38.
Bz-Arg-4-Abz-OH HCl
Bz-Arg-4-Abz-OH HCl. Alternative Names: Nα-Benzoyl-L-arginine 4-carboxyanilide hydrochloride; Bz-Arg-4-Abz-OH Hydrochloride. Grades: ≥ 98% by TLC. Molecular formula: C20H23N5O4.HCl. Mole weight: 433.89.
Bz-Arg-4-Abz-OH·HCl
Bz-Arg-4-Abz-OH·HCl. Alternative Names: Na-Benzoyl-L-arginine 4-carboxyanilide hydrochloride. CAS No. 60833-82-1. Molecular formula: C20H23N5O4. Mole weight: 397.43.
Bz-Arg-Gly-Phe-Phe-Leu-4MbetaNA
A substrate for cathepsin D. Alternative Names: benzoyl-Arg-Gly-Phe-Phe-Leu-MNA; Bz-Arg-Gly-Phe-Phe-Leu-4-methoxy-beta-naphthylamide; Bz-RGFFL-MNA. CAS No. 99112-24-0. Molecular formula: C50H59N9O7. Mole weight: 898.06.
Bz-Arg-Gly-Phe-Phe-Pro-4MβNA HCl
Bz-Arg-Gly-Phe-Phe-Pro-4MβNA HCl. Alternative Names: Bz-Arg-Gly-Phe-Phe-Pro-4MbNA HCl; Bz-RGFFP-MNA HCl. CAS No. 201928-98-5. Molecular formula: C49H56ClN9O7. Mole weight: 918.49.
Bz-Arg-His-D-Asp-CH2Cl
Bz-Arg-His-D-Asp-CH2Cl is a peptide inhibitor of D-Aspartyl Endopeptidase. Alternative Names: Bz-RHd-CMK; (Benzoyl-L-arginyl-L-histidyl-D-aspart-1-yl)chloromethane. CAS No. 468102-94-5. Molecular formula: C24H31N8O6Cl. Mole weight: 563.01.
Bz-Gly-Gly-OH. Alternative Names: Hippuryl glycine(N-Benzoylglycyl)glycine. Grades: ≥ 98% (HPLC). CAS No. 1145-32-0. Molecular formula: C11H12N2O4. Mole weight: 236.23.
Bz-Gly-His-Leu hydrate
N-Hippuryl-His-Leu (hydrate) can be used for the identification of ACE inhibitors in vitro. Alternative Names: N-Hippuryl-His-Leu hydrate; N-benzoylglycyl-L-histidyl-L-leucine, hydrate; N-Benzoyl-Gly-His-Leu. Grades: 95%. CAS No. 207386-83-2. Molecular formula: C21H27N5O5.xH2O. Mole weight: 447.5 (anhydrous).
BZ-ILE-GLU-GLY-ARG-PNA
Bz-IEGR-pNA is a substrate for plasma kallikrein and coagulation factor XIIa. Alternative Names: Nalpha-Benzoyl-L-isoleucyl-L-glutamyl-glycyl-L-arginine-4-nitroanilide; L-Argininamide, N-benzoyl-L-isoleucyl-L-alpha-glutamylglycyl-N-(4-nitrophenyl)-. CAS No. 59068-47-2. Molecular formula: C32H43N9O9. Mole weight: 697.74.
Bz-Nle-Lys-Arg-Arg-AMC
Bz-Nle-Lys-Arg-Arg-AMC is a substrate of dengue virus NS2B-NS3 and yellow fever virus NS3 protease. Alternative Names: BZ-NLE-LYS-ARG-ARG-AMC. CAS No. 863975-32-0. Molecular formula: C41H60N12O7. Mole weight: 832.99.