Molecular cloning of disintegrins from Cerastes vipera and Macrovipera lebetina transmediterranea venom gland cDNA libraries: insight into the evolution of the snake venom integrin-inhibition system

Author:

Sanz Libia1,Bazaa Amine2,Marrakchi Naziha2,Pérez Alicia1,Chenik Mehdi3,Bel Lasfer Zakaria2,El Ayeb Mohamed2,Calvete Juan J.1

Affiliation:

1. Instituto de Biomedicina de Valencia, C.S.I.C., Jaume Roig 11, 46010 Valencia, Spain

2. Laboratoire des Venins et Toxines, Institut Pasteur de Tunis, B.P. 74, 1002 Tunis-Belvédère, Tunisia

3. Laboratoire d'immunologie, Institut Pasteur de Tunis, B.P. 74, 1002 Tunis-Belvédère, Tunisia

Abstract

We report the cloning and sequence analysis of Cerastes vipera and Macrovipera lebetina transmediterranea cDNAs coding for short non-RGD (Arg-Gly-Asp) disintegrins and for dimeric disintegrin subunits. The mRNAs belong to the short-coding class, suggesting that these disintegrin mRNAs may be more widely distributed than previously thought. Our data also argue for a common ancestry of the mRNAs of short disintegrins and those coding for precursors of dimeric disintegrin chains. The Macrovipera lebetina transmediterranea dimeric disintegrin reported to inhibit the laminin-binding integrins α3β1, α6β1 and α7β1 was analysed using a proteomic approach and was shown to bear MLD (Met-Leu-Asp) and VGD (Val-Gly-Asp) motifs. The results highlight the fact that disintegrins have evolved a restricted panel of integrin-blocking sequences that segregate with defined branches of the phylogenetic tree of the integrin α-chains, providing novel insights into the evolutionary adaptation of the snake venom antagonists to the ligand-binding sites of their target integrin receptors.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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