Literature DB >> 20540563

Profiling the proteome of the venom from the social wasp Polybia paulista: a clue to understand the envenoming mechanism.

Lucilene Delazari dos Santos1, Keity Souza Santos, José Roberto Aparecido Pinto, Nathalia Baptista Dias, Bibiana Monson de Souza, Marise Fonseca dos Santos, Jonas Perales, Gilberto Barbosa Domont, Fabio Morato Castro, Jorge Elias Kalil, Mario Sergio Palma.   

Abstract

The study reported here is a classical bottom-up proteomic approach where proteins from wasp venom were extracted and separated by 2-DE; the individual protein spots were proteolytically digested and subsequently identified by using tandem mass spectrometry and database query with the protein search engine MASCOT. Eighty-four venom proteins belonging to 12 different molecular functions were identified. These proteins were classified into three groups; the first is constituted of typical venom proteins: antigens-5, hyaluronidases, phospholipases, heat shock proteins, metalloproteinases, metalloproteinase-desintegrin like proteins, serine proteinases, proteinase inhibitors, vascular endothelial growth factor-related protein, arginine kinases, Sol i-II and -II like proteins, alpha-glucosidase, and superoxide dismutases. The second contained proteins structurally related to the muscles that involves the venom reservoir. The third group, associated with the housekeeping of cells from venom glands, was composed of enzymes, membrane proteins of different types, and transcriptional factors. The composition of P. paulista venom permits us to hypothesize about a general envenoming mechanism based on five actions: (i) diffusion of venom through the tissues and to the blood, (ii) tissue, (iii) hemolysis, (iv) inflammation, and (v) allergy-played by antigen-5, PLA1, hyaluronidase, HSP 60, HSP 90, and arginine kinases.

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Year:  2010        PMID: 20540563     DOI: 10.1021/pr1000829

Source DB:  PubMed          Journal:  J Proteome Res        ISSN: 1535-3893            Impact factor:   4.466


  23 in total

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Review 7.  Facing Hymenoptera Venom Allergy: From Natural to Recombinant Allergens.

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Authors:  Wallace Felipe Blohem Pessoa; Ludimilla Carvalho Cerqueira Silva; Leila de Oliveira Dias; Jacques Hubert Charles Delabie; Helena Costa; Carla Cristina Romano
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