4.6 Article

Structural basis of peptide recognition by the angiotensin-1 converting enzyme homologue AnCE from Drosophila melanogaster

期刊

FEBS JOURNAL
卷 279, 期 24, 页码 4525-4534

出版社

WILEY
DOI: 10.1111/febs.12038

关键词

angiotensin-1 converting enzyme; crystal structure; kinetics; natural peptides; substrate recognition

资金

  1. Medical Research Council (UK) [G1001685]
  2. Wellcome Trust (UK) [088464]
  3. Biotechnology and Biological Sciences Research Council (UK)
  4. MRC [G1001685] Funding Source: UKRI
  5. Medical Research Council [G1001685] Funding Source: researchfish

向作者/读者索取更多资源

Human somatic angiotensin-1 converting enzyme (ACE) is a zinc-dependent exopeptidase, that catalyses the conversion of the decapeptide angiotensin I to the octapeptide angiotensin II, by removing a C-terminal dipeptide. It is the principal component of the renin-angiotensinaldosterone system that regulates blood pressure. Hence it is an important therapeutic target for the treatment of hypertension and cardiovascular disorders. Here, we report the structures of an ACE homologue from Drosophila melanogaster (AnCE; a proven structural model for the more complex human ACE) co-crystallized with mammalian peptide substrates (bradykinin, Thr6bradykinin, angiotensin I and a snake venom peptide inhibitor, bradykinin-potentiating peptide-b). The structures determined at 2-angstrom resolution illustrate that both angiotensin II (the cleaved product of angiotensin I by AnCE) and bradykinin-potentiating peptide-b bind in an analogous fashion at the active site of AnCE, but also exhibit significant differences. In addition, the binding of ArgProPro, the cleavage product of bradykinin and Thr6 bradykinin, provides additional detail of the general peptide binding in AnCE. Thus the new structures of AnCE complexes presented here improves our understanding of the binding of peptides and the mechanism by which peptides inhibit this family of enzymes.

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