Literature DB >> 16215260

cDNA cloning and functional expression of jerdostatin, a novel RTS-disintegrin from Trimeresurus jerdonii and a specific antagonist of the alpha1beta1 integrin.

Libia Sanz1, Run-Qiang Chen, Alicia Pérez, Rebeca Hilario, Paula Juárez, Cezary Marcinkiewicz, Daniel Monleón, Bernardo Celda, Yu-Liang Xiong, Enrique Pérez-Payá, Juan J Calvete.   

Abstract

Jerdostatin represents a novel RTS-containing short disintegrin cloned by reverse transcriptase-PCR from the venom gland mRNA of the Chinese Jerdons pit viper Trimeresurus jerdonii. The jerdostatins precursor cDNA contained a 333-bp open reading frame encoding a signal peptide, a pre-peptide, and a 43-amino acid disintegrin domain, whose amino acid sequence displayed 80% identity with that of the KTS-disintegrins obtustatin and viperistatin. The jerdostatin cDNA structure represents the first complete open reading frame of a short disintegrin and points to the emergence of jerdostatin from a short-coding gene. The different residues between jerdostatin and obtustatin/viperistatin are segregated within the integrin-recognition loop and the C-terminal tail. Native jerdostatin (r-jerdostatin-R21) and a R21K mutant (r-jerdostatin-K21) were produced in Escherichia coli. In each case, two conformers were isolated. One-dimensional (1)H NMR showed that conformers 1 and 2 of r-jerdostatin-R21 represent, respectively, well folded and unfolded proteins. The two conformers of the wild-type and the R21K mutant inhibited the adhesion of alpha(1)-K562 cells to collagen IV with IC(50) values of 180 and 703 nm, respectively. The IC(50) values of conformers 2 of r-jerdostatin-R21 and r-jerdostatin-K21 were, respectively, 5.95 and 12.5 microm. Neither r-jerdostatin-R21 nor r-jerdostatin-K21 showed inhibitory activity toward other integrins, including alpha(IIb)beta(3), alpha(v)beta(3), alpha(2)beta(1), alpha(5)beta(1), alpha(4)beta(1), alpha(6)beta(1), and alpha(9)beta(1) up to a concentration of 24 mum. Although the RTS motif appears to be more potent than KTS inhibiting the alpha(1)beta(1) integrin, r-jerdostatin-R21 is less active than the KTS-disintegrins, strongly suggesting that substitutions outside the integrin-binding motif and/or C-terminal proteolytic processing are responsible for the decreased inhibitory activity.

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Year:  2005        PMID: 16215260     DOI: 10.1074/jbc.M509738200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  10 in total

1.  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.

Authors:  Libia Sanz; Amine Bazaa; Naziha Marrakchi; Alicia Pérez; Mehdi Chenik; Zakaria Bel Lasfer; Mohamed El Ayeb; Juan J Calvete
Journal:  Biochem J       Date:  2006-04-15       Impact factor: 3.857

2.  Loss of introns along the evolutionary diversification pathway of snake venom disintegrins evidenced by sequence analysis of genomic DNA from Macrovipera lebetina transmediterranea and Echis ocellatus.

Authors:  Amine Bazaa; Paula Juárez; Néziha Marrakchi; Zakaria Bel Lasfer; Mohamed El Ayeb; Robert A Harrison; Juan J Calvete; Libia Sanz
Journal:  J Mol Evol       Date:  2006-12-19       Impact factor: 2.395

3.  Cloning, expression, and hemostatic activities of a disintegrin, r-mojastin 1, from the mohave rattlesnake (Crotalus scutulatus scutulatus).

Authors:  Elda E Sánchez; Sara E Lucena; Steven Reyes; Julio G Soto; Esteban Cantu; Juan Carlos Lopez-Johnston; Belsy Guerrero; Ana Maria Salazar; Alexis Rodríguez-Acosta; Jacob A Galán; W Andy Tao; John C Pérez
Journal:  Thromb Res       Date:  2010-07-02       Impact factor: 3.944

4.  Anti-metastatic activity of the recombinant disintegrin, r-mojastin 1, from the Mohave rattlesnake.

Authors:  Sara Lucena; Elda E Sanchez; John C Perez
Journal:  Toxicon       Date:  2011-02-18       Impact factor: 3.033

Review 5.  Applications of snake venom components to modulate integrin activities in cell-matrix interactions.

Authors:  Cezary Marcinkiewicz
Journal:  Int J Biochem Cell Biol       Date:  2013-06-26       Impact factor: 5.085

6.  Angiostatic activity of obtustatin as alpha1beta1 integrin inhibitor in experimental melanoma growth.

Authors:  Meghan C Brown; Izabela Staniszewska; Luis Del Valle; George P Tuszynski; Cezary Marcinkiewicz
Journal:  Int J Cancer       Date:  2008-11-01       Impact factor: 7.396

Review 7.  Disintegrins from hematophagous sources.

Authors:  Teresa C F Assumpcao; José M C Ribeiro; Ivo M B Francischetti
Journal:  Toxins (Basel)       Date:  2012-04-26       Impact factor: 4.546

Review 8.  Structure-Function Relationship of the Disintegrin Family: Sequence Signature and Integrin Interaction.

Authors:  Ariana A Vasconcelos; Jorge C Estrada; Victor David; Luciana S Wermelinger; Fabio C L Almeida; Russolina B Zingali
Journal:  Front Mol Biosci       Date:  2021-12-03

Review 9.  Metalloproteases Affecting Blood Coagulation, Fibrinolysis and Platelet Aggregation from Snake Venoms: Definition and Nomenclature of Interaction Sites.

Authors:  R Manjunatha Kini; Cho Yeow Koh
Journal:  Toxins (Basel)       Date:  2016-09-29       Impact factor: 4.546

Review 10.  Recombinant and Chimeric Disintegrins in Preclinical Research.

Authors:  Victor David; Barbara Barbosa Succar; João Alfredo de Moraes; Roberta Ferreira Gomes Saldanha-Gama; Christina Barja-Fidalgo; Russolina Benedeta Zingali
Journal:  Toxins (Basel)       Date:  2018-08-07       Impact factor: 4.546

  10 in total

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