Literature DB >> 15688321

Using bradykinin-potentiating peptide structures to develop new antihypertensive drugs.

Jorge Hernandez Fernandez1, Goran Neshich, Antonio Carlos M Camargo.   

Abstract

Angiotensin I-converting enzyme (ACE) is a dipeptidyl-carboxypeptidase expressed in endothelial, epithelial and neuroepithelial cells. It is composed of two domains, known as N- and C-domains, and it is primarily involved in blood pressure regulation. Although the physiological functions of ACE are not limited to its cardiovascular role, it has been an attractive target for drug design due to its critical role in cardiovascular and renal disease. We examined natural structures based on bradykinin-potentiating peptides (BPPs) extracted from Bothrops jararaca venom for ACE inhibition. Modeling, docking and molecular dynamics were used to study the conserved residues in the S2', S1' and S1 positions that allow enzyme-substrate/inhibitor contacts. These positions are conserved in other oligopeptidases, and they form tight and non-specific contacts with lisinopril, enalapril and BPP9a inhibitors. The only specific inhibitor for human somatic ACE (sACE) was BPP9a, which is instable in the N-sACE-BPP9a complex due to repulsive electrostatic interactions between Arg P4-Arg 412 residues. Specificity for the C-terminal domain in human sACE inhibition was confirmed by electrostatic interaction with the Asp 1008 residue. Peptide-like BPP structures, naturally developed by snakes across millions of years of evolution, appear to be good candidates for the development of domain-selective ACE inhibitors with high stability and improved pharmacological profiles.

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Year:  2004        PMID: 15688321

Source DB:  PubMed          Journal:  Genet Mol Res        ISSN: 1676-5680


  6 in total

1.  Possible dynamic anchor points in a benzoxazinone derivative-human oxytocin receptor system--a molecular docking and dynamics calculation.

Authors:  Balázs Jójárt; Arpád Márki
Journal:  J Mol Model       Date:  2006-05-05       Impact factor: 1.810

2.  ESI-MS/MS identification of a bradykinin-potentiating peptide from Amazon Bothrops atrox snake venom using a hybrid Qq-oaTOF mass spectrometer.

Authors:  Antonio Coutinho-Neto; Cleópatra A S Caldeira; Gustavo H M F Souza; Kayena D Zaqueo; Anderson M Kayano; Rodrigo S Silva; Juliana P Zuliani; Andreimar M Soares; Rodrigo G Stábeli; Leonardo A Calderon
Journal:  Toxins (Basel)       Date:  2013-02-18       Impact factor: 4.546

Review 3.  The modular nature of bradykinin-potentiating peptides isolated from snake venoms.

Authors:  Juliana Mozer Sciani; Daniel Carvalho Pimenta
Journal:  J Venom Anim Toxins Incl Trop Dis       Date:  2017-10-26

Review 4.  Evolutionary Ecology of Fish Venom: Adaptations and Consequences of Evolving a Venom System.

Authors:  Richard J Harris; Ronald A Jenner
Journal:  Toxins (Basel)       Date:  2019-01-22       Impact factor: 4.546

5.  Bradykinin-Potentiating Activity of a Gamma-Irradiated Bioactive Fraction Isolated from Scorpion (Leiurus quinquestriatus) Venom in Rats with Doxorubicin-Induced Acute Cardiotoxicity: Favorable Modulation of Oxidative Stress and Inflammatory, Fibrogenic and Apoptotic Pathways.

Authors:  Lamiaa A Ahmed; Fatma Y Abdou; Abir A El Fiky; Esmat A Shaaban; Afaf A Ain-Shoka
Journal:  Cardiovasc Toxicol       Date:  2020-08-29       Impact factor: 3.231

6.  Isolation and biochemical characterization of bradykinin-potentiating peptides from Bitis gabonica rhinoceros.

Authors:  Tamara M Fucase; Juliana M Sciani; Ingrid Cavalcante; Vincent L Viala; Bruno B Chagas; Daniel C Pimenta; Patrick J Spencer
Journal:  J Venom Anim Toxins Incl Trop Dis       Date:  2017-06-26
  6 in total

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