Dabsylated Bradykinin Is Cleaved by Snake Venom Proteases from Echis ocellatus

Author:

Abiola Julius12,Berg Anna Maria1,Aiyelaagbe Olapeju2,Adeyi Akindele3,König Simone1ORCID

Affiliation:

1. IZKF Core Unit Proteomics, Interdisciplinary Center for Clinical Research, University of Münster, Röntgenstr. 21, 48149 Münster, Germany

2. Organic Unit, Department of Chemistry, University of Ibadan, Ibadan 200005, Nigeria

3. Animal Physiology Unit, Department of Zoology, University of Ibadan, Ibadan 200005, Nigeria

Abstract

The vasoactive peptide bradykinin (BK) is an important member of the renin–angiotensin system. Its discovery is tightly interwoven with snake venom research, because it was first detected in plasma following the addition of viper venom. While the fact that venoms liberate BK from a serum globulin fraction is well described, its destruction by the venom has largely gone unnoticed. Here, BK was found to be cleaved by snake venom metalloproteinases in the venom of Echis ocellatus, one of the deadliest snakes, which degraded its dabsylated form (DBK) in a few minutes after Pro7 (RPPGFSP↓FR). This is a common cleavage site for several mammalian proteases such as ACE, but is not typical for matrix metalloproteinases. Residual protease activity < 5% after addition of EDTA indicated that DBK is also cleaved by serine proteases to a minor extent. Mass spectrometry-based protein analysis provided spectral proof for several peptides of zinc metalloproteinase-disintegrin-like Eoc1, disintegrin EO4A, and three serine proteases in the venom.

Funder

German Academic Exchange Service

Publisher

MDPI AG

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