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Presynaptic Proteins as Markers of the Neurotoxic Activity of BmjeTX-I and BmjeTX-II Toxins from Bothrops marajoensis (Marajó Lancehead) Snake Venom

Neuromuscular preparations exposed to B. marajoensis venom show increases in the frequency of miniature end-plate potentials and twitch tension facilitation followed by presynaptic neuromuscular paralysis, without evidences of muscle damage. Considering that presynaptic toxins interfere into the mac...

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Autores principales: Lisboa, Antonio, Melaré, Rodolfo, Franco, Junia R. B., Bis, Carolina V., Gracia, Marta, Ponce-Soto, Luis A., Marangoni, Sérgio, Rodrigues-Simioni, Léa, da Cruz-Höfling, Maria Alice, Rocha, Thalita
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5007310/
https://www.ncbi.nlm.nih.gov/pubmed/27635261
http://dx.doi.org/10.1155/2016/2053459
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author Lisboa, Antonio
Melaré, Rodolfo
Franco, Junia R. B.
Bis, Carolina V.
Gracia, Marta
Ponce-Soto, Luis A.
Marangoni, Sérgio
Rodrigues-Simioni, Léa
da Cruz-Höfling, Maria Alice
Rocha, Thalita
author_facet Lisboa, Antonio
Melaré, Rodolfo
Franco, Junia R. B.
Bis, Carolina V.
Gracia, Marta
Ponce-Soto, Luis A.
Marangoni, Sérgio
Rodrigues-Simioni, Léa
da Cruz-Höfling, Maria Alice
Rocha, Thalita
author_sort Lisboa, Antonio
collection PubMed
description Neuromuscular preparations exposed to B. marajoensis venom show increases in the frequency of miniature end-plate potentials and twitch tension facilitation followed by presynaptic neuromuscular paralysis, without evidences of muscle damage. Considering that presynaptic toxins interfere into the machinery involved in neurotransmitter release (synaptophysin, synaptobrevin, and SNAP25 proteins), the main objective of this communication is to analyze, by immunofluorescence and western blotting, the expression of the synaptic proteins, synaptophysin, synaptobrevin, and SNAP25 and by myography, light, and transmission electron microscopy the pathology of motor nerve terminals and skeletal muscle fibres of chick biventer cervicis preparations (CBC) exposed in vitro to BmjeTX-I and BmjeTX-II toxins from B. marajoensis venom. CBC incubated with toxins showed irreversible twitch tension blockade and unaffected KCl- and ACh-evoked contractures, and the positive colabelling of acetylcholine receptors confirmed that their action was primarily at the motor nerve terminal. Hypercontraction and loose myofilaments and synaptic vesicle depletion and motor nerve damage indicated that the toxins displayed both myotoxic and neurotoxic effect. The blockade resulted from interference on synaptophysin, synaptobrevin, and SNAP25 proteins leading to the conclusion that BmjeTX-I and BmjeTX-II affected neurotransmitter release machinery by preventing the docking of synaptic vesicles to the axolemma of the nerve terminal.
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spelling pubmed-50073102016-09-15 Presynaptic Proteins as Markers of the Neurotoxic Activity of BmjeTX-I and BmjeTX-II Toxins from Bothrops marajoensis (Marajó Lancehead) Snake Venom Lisboa, Antonio Melaré, Rodolfo Franco, Junia R. B. Bis, Carolina V. Gracia, Marta Ponce-Soto, Luis A. Marangoni, Sérgio Rodrigues-Simioni, Léa da Cruz-Höfling, Maria Alice Rocha, Thalita Biochem Res Int Research Article Neuromuscular preparations exposed to B. marajoensis venom show increases in the frequency of miniature end-plate potentials and twitch tension facilitation followed by presynaptic neuromuscular paralysis, without evidences of muscle damage. Considering that presynaptic toxins interfere into the machinery involved in neurotransmitter release (synaptophysin, synaptobrevin, and SNAP25 proteins), the main objective of this communication is to analyze, by immunofluorescence and western blotting, the expression of the synaptic proteins, synaptophysin, synaptobrevin, and SNAP25 and by myography, light, and transmission electron microscopy the pathology of motor nerve terminals and skeletal muscle fibres of chick biventer cervicis preparations (CBC) exposed in vitro to BmjeTX-I and BmjeTX-II toxins from B. marajoensis venom. CBC incubated with toxins showed irreversible twitch tension blockade and unaffected KCl- and ACh-evoked contractures, and the positive colabelling of acetylcholine receptors confirmed that their action was primarily at the motor nerve terminal. Hypercontraction and loose myofilaments and synaptic vesicle depletion and motor nerve damage indicated that the toxins displayed both myotoxic and neurotoxic effect. The blockade resulted from interference on synaptophysin, synaptobrevin, and SNAP25 proteins leading to the conclusion that BmjeTX-I and BmjeTX-II affected neurotransmitter release machinery by preventing the docking of synaptic vesicles to the axolemma of the nerve terminal. Hindawi Publishing Corporation 2016 2016-08-18 /pmc/articles/PMC5007310/ /pubmed/27635261 http://dx.doi.org/10.1155/2016/2053459 Text en Copyright © 2016 Antonio Lisboa et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Lisboa, Antonio
Melaré, Rodolfo
Franco, Junia R. B.
Bis, Carolina V.
Gracia, Marta
Ponce-Soto, Luis A.
Marangoni, Sérgio
Rodrigues-Simioni, Léa
da Cruz-Höfling, Maria Alice
Rocha, Thalita
Presynaptic Proteins as Markers of the Neurotoxic Activity of BmjeTX-I and BmjeTX-II Toxins from Bothrops marajoensis (Marajó Lancehead) Snake Venom
title Presynaptic Proteins as Markers of the Neurotoxic Activity of BmjeTX-I and BmjeTX-II Toxins from Bothrops marajoensis (Marajó Lancehead) Snake Venom
title_full Presynaptic Proteins as Markers of the Neurotoxic Activity of BmjeTX-I and BmjeTX-II Toxins from Bothrops marajoensis (Marajó Lancehead) Snake Venom
title_fullStr Presynaptic Proteins as Markers of the Neurotoxic Activity of BmjeTX-I and BmjeTX-II Toxins from Bothrops marajoensis (Marajó Lancehead) Snake Venom
title_full_unstemmed Presynaptic Proteins as Markers of the Neurotoxic Activity of BmjeTX-I and BmjeTX-II Toxins from Bothrops marajoensis (Marajó Lancehead) Snake Venom
title_short Presynaptic Proteins as Markers of the Neurotoxic Activity of BmjeTX-I and BmjeTX-II Toxins from Bothrops marajoensis (Marajó Lancehead) Snake Venom
title_sort presynaptic proteins as markers of the neurotoxic activity of bmjetx-i and bmjetx-ii toxins from bothrops marajoensis (marajó lancehead) snake venom
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5007310/
https://www.ncbi.nlm.nih.gov/pubmed/27635261
http://dx.doi.org/10.1155/2016/2053459
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