Literature DB >> 1692735

Interaction of hemorrhagic metalloproteinases with human alpha 2-macroglobulin.

E N Baramova1, J D Shannon, J B Bjarnason, S L Gonias, J W Fox.   

Abstract

The interaction between four Crotalus atrox hemorrhagic metalloproteinases and human alpha 2-macroglobulin was investigated. The proteolytic activity of the hemorrhagic toxins Ht-c, -d, and -e against the large molecular weight protein substrates, gelatin type I and collagen type IV, was completely inhibited by alpha 2-macroglobulin. The proteolytic activity of Ht-a against the same substrates was not significantly inhibited. Each mole of alpha 2-macroglobulin bound maximally 2 mol of Ht-e and 1.1 mol of Ht-c and Ht-d. These proteinases interacted with alpha 2-macroglobulin rapidly at 22 degrees C. Rate constants based on intrinsic fluorescence measurements were 0.62 X 10(5) M-1 s-1 for interaction of alpha 2-macroglobulin with Ht-c and -d and 2.3 X 10(5) M-1 s-1 for the interaction of alpha 2-macroglobulin with Ht-e. Ht-a interacted with alpha 2-macroglobulin very slowly at 22 degrees C. Increasing the temperature to 37 degrees C and prolonging the time of interaction with alpha 2-macroglobulin resulted in the formation of Mr 90,000 fragments and high molecular weight complexes (Mr greater than 180,000), in which Ht-a is covalently bound to the carboxy-terminal fragment of alpha 2-M. The identification of the sites of specific proteolysis of alpha 2-macroglobulin shows that the cleavage sites for the four metalloproteinases are within the bait region of alpha 2-macroglobulin. Ht-c and -d cleave only at one site, the Arg696-Leu697 peptide bond, which is also the site of cleavage for plasmin, thrombin, trypsin, and thermolysin. Ht-a cleaves alpha 2-macroglobulin primarily at the same site, but a secondary cleavage site at the His694-Ala695 peptide bond was also identified.(ABSTRACT TRUNCATED AT 250 WORDS)

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Year:  1990        PMID: 1692735     DOI: 10.1021/bi00456a032

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  10 in total

1.  Inhibition of collagen-induced platelet aggregation as the result of cleavage of alpha 2 beta 1-integrin by the snake venom metalloproteinase jararhagin.

Authors:  A S Kamiguti; C R Hay; M Zuzel
Journal:  Biochem J       Date:  1996-12-01       Impact factor: 3.857

2.  Structural interaction of natural and synthetic inhibitors with the venom metalloproteinase, atrolysin C (form d).

Authors:  D Zhang; I Botos; F X Gomis-Rüth; R Doll; C Blood; F G Njoroge; J W Fox; W Bode; E F Meyer
Journal:  Proc Natl Acad Sci U S A       Date:  1994-08-30       Impact factor: 11.205

3.  Role of collagens and perlecan in microvascular stability: exploring the mechanism of capillary vessel damage by snake venom metalloproteinases.

Authors:  Teresa Escalante; Natalia Ortiz; Alexandra Rucavado; Eladio F Sanchez; Michael Richardson; Jay W Fox; José María Gutiérrez
Journal:  PLoS One       Date:  2011-12-08       Impact factor: 3.240

4.  Tissue localization and extracellular matrix degradation by PI, PII and PIII snake venom metalloproteinases: clues on the mechanisms of venom-induced hemorrhage.

Authors:  Cristina Herrera; Teresa Escalante; Mathieu-Benoit Voisin; Alexandra Rucavado; Diego Morazán; Jéssica Kele A Macêdo; Juan J Calvete; Libia Sanz; Sussan Nourshargh; José María Gutiérrez; Jay W Fox
Journal:  PLoS Negl Trop Dis       Date:  2015-04-24

5.  A Meta-Analysis of the Protein Components in Rattlesnake Venom.

Authors:  Anant Deshwal; Phuc Phan; Jyotishka Datta; Ragupathy Kannan; Suresh Kumar Thallapuranam
Journal:  Toxins (Basel)       Date:  2021-05-23       Impact factor: 4.546

6.  Bmoo FIBMP-I: A New Fibrinogenolytic Metalloproteinase from Bothrops moojeni Snake Venom.

Authors:  F S Torres; B Rates; M T R Gomes; C E Salas; A M C Pimenta; F Oliveira; M M Santoro; M E de Lima
Journal:  ISRN Toxicol       Date:  2012-11-04

7.  Snake Venom Cytotoxins, Phospholipase A2s, and Zn2+-dependent Metalloproteinases: Mechanisms of Action and Pharmacological Relevance.

Authors:  Sardar E Gasanov; Ruben K Dagda; Eppie D Rael
Journal:  J Clin Toxicol       Date:  2014-01-25

Review 8.  Hemorrhage Caused by Snake Venom Metalloproteinases: A Journey of Discovery and Understanding.

Authors:  José María Gutiérrez; Teresa Escalante; Alexandra Rucavado; Cristina Herrera
Journal:  Toxins (Basel)       Date:  2016-03-26       Impact factor: 4.546

Review 9.  ADAM and ADAMTS Family Proteins and Snake Venom Metalloproteinases: A Structural Overview.

Authors:  Soichi Takeda
Journal:  Toxins (Basel)       Date:  2016-05-17       Impact factor: 4.546

10.  Cleavage of proteoglycans, plasma proteins and the platelet-derived growth factor receptor in the hemorrhagic process induced by snake venom metalloproteinases.

Authors:  Amanda F Asega; Milene C Menezes; Dilza Trevisan-Silva; Daniela Cajado-Carvalho; Luciana Bertholim; Ana K Oliveira; André Zelanis; Solange M T Serrano
Journal:  Sci Rep       Date:  2020-07-31       Impact factor: 4.379

  10 in total

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