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Crotalus durissus terrificus crotapotin naturally displays preferred positions for amino acid substitutions

BACKGROUND: Classically, Crotalus durissus terrificus (Cdt) venom can be described, according to chromatographic criteria, as a simple venom, composed of four major toxins, namely: gyroxin, crotamine, crotoxin and convulxin. Crotoxin is a non-covalent heterodimeric neurotoxin constituted of two subu...

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Autores principales: de Oliveira, Laudicéia Alves, Ferreira, Rui Seabra, Barraviera, Benedito, de Carvalho, Francilene Capel Tavares, de Barros, Luciana Curtolo, dos Santos, Lucilene Delazari, Pimenta, Daniel Carvalho
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2017
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5704381/
https://www.ncbi.nlm.nih.gov/pubmed/29209361
http://dx.doi.org/10.1186/s40409-017-0136-5
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author de Oliveira, Laudicéia Alves
Ferreira, Rui Seabra
Barraviera, Benedito
de Carvalho, Francilene Capel Tavares
de Barros, Luciana Curtolo
dos Santos, Lucilene Delazari
Pimenta, Daniel Carvalho
author_facet de Oliveira, Laudicéia Alves
Ferreira, Rui Seabra
Barraviera, Benedito
de Carvalho, Francilene Capel Tavares
de Barros, Luciana Curtolo
dos Santos, Lucilene Delazari
Pimenta, Daniel Carvalho
author_sort de Oliveira, Laudicéia Alves
collection PubMed
description BACKGROUND: Classically, Crotalus durissus terrificus (Cdt) venom can be described, according to chromatographic criteria, as a simple venom, composed of four major toxins, namely: gyroxin, crotamine, crotoxin and convulxin. Crotoxin is a non-covalent heterodimeric neurotoxin constituted of two subunits: an active phospholipase A(2) and a chaperone protein, termed crotapotin. This molecule is composed of three peptide chains connected by seven disulfide bridges. Naturally occurring variants/isoforms of either crotoxin or crotapotin itself have already been reported. METHODS: The crude Cdt venom was separated by using RP-HPLC and the toxins were identified by mass spectrometry (MS). Crotapotin was purified, reduced and alkylated in order to separate the peptide chains that were further analyzed by mass spectrometry and de novo peptide sequencing. RESULTS: The RP-HPLC profile of the isolated crotapotin chains already indicated that the α chain would present isoforms, which was corroborated by the MS and tandem mass spectrometry analyses. CONCLUSION: It was possible to observe that the Cdt crotapotin displays a preferred amino acid substitution pattern present in the α chain, at positions 31 and 40. Moreover, substitutions could also be observed in β and γ chains (one for each). The combinations of these four different peptides, with the already described chains, would produce ten different crotapotins, which is compatible to our previous observations for the Cdt venom.
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spelling pubmed-57043812017-12-05 Crotalus durissus terrificus crotapotin naturally displays preferred positions for amino acid substitutions de Oliveira, Laudicéia Alves Ferreira, Rui Seabra Barraviera, Benedito de Carvalho, Francilene Capel Tavares de Barros, Luciana Curtolo dos Santos, Lucilene Delazari Pimenta, Daniel Carvalho J Venom Anim Toxins Incl Trop Dis Research BACKGROUND: Classically, Crotalus durissus terrificus (Cdt) venom can be described, according to chromatographic criteria, as a simple venom, composed of four major toxins, namely: gyroxin, crotamine, crotoxin and convulxin. Crotoxin is a non-covalent heterodimeric neurotoxin constituted of two subunits: an active phospholipase A(2) and a chaperone protein, termed crotapotin. This molecule is composed of three peptide chains connected by seven disulfide bridges. Naturally occurring variants/isoforms of either crotoxin or crotapotin itself have already been reported. METHODS: The crude Cdt venom was separated by using RP-HPLC and the toxins were identified by mass spectrometry (MS). Crotapotin was purified, reduced and alkylated in order to separate the peptide chains that were further analyzed by mass spectrometry and de novo peptide sequencing. RESULTS: The RP-HPLC profile of the isolated crotapotin chains already indicated that the α chain would present isoforms, which was corroborated by the MS and tandem mass spectrometry analyses. CONCLUSION: It was possible to observe that the Cdt crotapotin displays a preferred amino acid substitution pattern present in the α chain, at positions 31 and 40. Moreover, substitutions could also be observed in β and γ chains (one for each). The combinations of these four different peptides, with the already described chains, would produce ten different crotapotins, which is compatible to our previous observations for the Cdt venom. BioMed Central 2017-11-28 /pmc/articles/PMC5704381/ /pubmed/29209361 http://dx.doi.org/10.1186/s40409-017-0136-5 Text en © The Author(s). 2017 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
de Oliveira, Laudicéia Alves
Ferreira, Rui Seabra
Barraviera, Benedito
de Carvalho, Francilene Capel Tavares
de Barros, Luciana Curtolo
dos Santos, Lucilene Delazari
Pimenta, Daniel Carvalho
Crotalus durissus terrificus crotapotin naturally displays preferred positions for amino acid substitutions
title Crotalus durissus terrificus crotapotin naturally displays preferred positions for amino acid substitutions
title_full Crotalus durissus terrificus crotapotin naturally displays preferred positions for amino acid substitutions
title_fullStr Crotalus durissus terrificus crotapotin naturally displays preferred positions for amino acid substitutions
title_full_unstemmed Crotalus durissus terrificus crotapotin naturally displays preferred positions for amino acid substitutions
title_short Crotalus durissus terrificus crotapotin naturally displays preferred positions for amino acid substitutions
title_sort crotalus durissus terrificus crotapotin naturally displays preferred positions for amino acid substitutions
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5704381/
https://www.ncbi.nlm.nih.gov/pubmed/29209361
http://dx.doi.org/10.1186/s40409-017-0136-5
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