Cargando…

Synthetic Pinnatoxins A and G Reversibly Block Mouse Skeletal Neuromuscular Transmission In Vivo and In Vitro

Pinnatoxins (PnTXs) A-H constitute an emerging family belonging to the cyclic imine group of phycotoxins. Interest has been focused on these fast-acting and highly-potent toxins because they are widely found in contaminated shellfish. Despite their highly complex molecular structure, PnTXs have been...

Descripción completa

Detalles Bibliográficos
Autores principales: Benoit, Evelyne, Couesnon, Aurélie, Lindovsky, Jiri, Iorga, Bogdan I., Aráoz, Rómulo, Servent, Denis, Zakarian, Armen, Molgó, Jordi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6562580/
https://www.ncbi.nlm.nih.gov/pubmed/31137661
http://dx.doi.org/10.3390/md17050306
_version_ 1783426334091902976
author Benoit, Evelyne
Couesnon, Aurélie
Lindovsky, Jiri
Iorga, Bogdan I.
Aráoz, Rómulo
Servent, Denis
Zakarian, Armen
Molgó, Jordi
author_facet Benoit, Evelyne
Couesnon, Aurélie
Lindovsky, Jiri
Iorga, Bogdan I.
Aráoz, Rómulo
Servent, Denis
Zakarian, Armen
Molgó, Jordi
author_sort Benoit, Evelyne
collection PubMed
description Pinnatoxins (PnTXs) A-H constitute an emerging family belonging to the cyclic imine group of phycotoxins. Interest has been focused on these fast-acting and highly-potent toxins because they are widely found in contaminated shellfish. Despite their highly complex molecular structure, PnTXs have been chemically synthetized and demonstrated to act on various nicotinic acetylcholine receptor (nAChR) subtypes. In the present work, PnTX-A, PnTX-G and analogue, obtained by chemical synthesis with a high degree of purity (>98%), have been studied in vivo and in vitro on adult mouse and isolated nerve-muscle preparations expressing the mature muscle-type (α1)(2)β1δε nAChR. The results show that PnTX-A and G acted on the neuromuscular system of anesthetized mice and blocked the compound muscle action potential (CMAP) in a dose- and time-dependent manner, using a minimally invasive electrophysiological method. The CMAP block produced by both toxins in vivo was reversible within 6–8 h. PnTX-A and G, applied to isolated extensor digitorum longus nerve-muscle preparations, blocked reversibly isometric twitches evoked by nerve stimulation. The action of PnTX-A was reversed by 3,4-diaminopyridine. Both toxins exerted no direct action on muscle fibers, as revealed by direct muscle stimulation. PnTX-A and G blocked synaptic transmission at mouse neuromuscular junctions and PnTX-A amino ketone analogue (containing an open form of the imine ring) had no effect on neuromuscular transmission. These results indicate the importance of the cyclic imine for interacting with the adult mammalian muscle-type nAChR. Modeling and docking studies revealed molecular determinants responsible for the interaction of PnTXs with the muscle-type nAChR.
format Online
Article
Text
id pubmed-6562580
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-65625802019-06-17 Synthetic Pinnatoxins A and G Reversibly Block Mouse Skeletal Neuromuscular Transmission In Vivo and In Vitro Benoit, Evelyne Couesnon, Aurélie Lindovsky, Jiri Iorga, Bogdan I. Aráoz, Rómulo Servent, Denis Zakarian, Armen Molgó, Jordi Mar Drugs Article Pinnatoxins (PnTXs) A-H constitute an emerging family belonging to the cyclic imine group of phycotoxins. Interest has been focused on these fast-acting and highly-potent toxins because they are widely found in contaminated shellfish. Despite their highly complex molecular structure, PnTXs have been chemically synthetized and demonstrated to act on various nicotinic acetylcholine receptor (nAChR) subtypes. In the present work, PnTX-A, PnTX-G and analogue, obtained by chemical synthesis with a high degree of purity (>98%), have been studied in vivo and in vitro on adult mouse and isolated nerve-muscle preparations expressing the mature muscle-type (α1)(2)β1δε nAChR. The results show that PnTX-A and G acted on the neuromuscular system of anesthetized mice and blocked the compound muscle action potential (CMAP) in a dose- and time-dependent manner, using a minimally invasive electrophysiological method. The CMAP block produced by both toxins in vivo was reversible within 6–8 h. PnTX-A and G, applied to isolated extensor digitorum longus nerve-muscle preparations, blocked reversibly isometric twitches evoked by nerve stimulation. The action of PnTX-A was reversed by 3,4-diaminopyridine. Both toxins exerted no direct action on muscle fibers, as revealed by direct muscle stimulation. PnTX-A and G blocked synaptic transmission at mouse neuromuscular junctions and PnTX-A amino ketone analogue (containing an open form of the imine ring) had no effect on neuromuscular transmission. These results indicate the importance of the cyclic imine for interacting with the adult mammalian muscle-type nAChR. Modeling and docking studies revealed molecular determinants responsible for the interaction of PnTXs with the muscle-type nAChR. MDPI 2019-05-24 /pmc/articles/PMC6562580/ /pubmed/31137661 http://dx.doi.org/10.3390/md17050306 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Benoit, Evelyne
Couesnon, Aurélie
Lindovsky, Jiri
Iorga, Bogdan I.
Aráoz, Rómulo
Servent, Denis
Zakarian, Armen
Molgó, Jordi
Synthetic Pinnatoxins A and G Reversibly Block Mouse Skeletal Neuromuscular Transmission In Vivo and In Vitro
title Synthetic Pinnatoxins A and G Reversibly Block Mouse Skeletal Neuromuscular Transmission In Vivo and In Vitro
title_full Synthetic Pinnatoxins A and G Reversibly Block Mouse Skeletal Neuromuscular Transmission In Vivo and In Vitro
title_fullStr Synthetic Pinnatoxins A and G Reversibly Block Mouse Skeletal Neuromuscular Transmission In Vivo and In Vitro
title_full_unstemmed Synthetic Pinnatoxins A and G Reversibly Block Mouse Skeletal Neuromuscular Transmission In Vivo and In Vitro
title_short Synthetic Pinnatoxins A and G Reversibly Block Mouse Skeletal Neuromuscular Transmission In Vivo and In Vitro
title_sort synthetic pinnatoxins a and g reversibly block mouse skeletal neuromuscular transmission in vivo and in vitro
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6562580/
https://www.ncbi.nlm.nih.gov/pubmed/31137661
http://dx.doi.org/10.3390/md17050306
work_keys_str_mv AT benoitevelyne syntheticpinnatoxinsaandgreversiblyblockmouseskeletalneuromusculartransmissioninvivoandinvitro
AT couesnonaurelie syntheticpinnatoxinsaandgreversiblyblockmouseskeletalneuromusculartransmissioninvivoandinvitro
AT lindovskyjiri syntheticpinnatoxinsaandgreversiblyblockmouseskeletalneuromusculartransmissioninvivoandinvitro
AT iorgabogdani syntheticpinnatoxinsaandgreversiblyblockmouseskeletalneuromusculartransmissioninvivoandinvitro
AT araozromulo syntheticpinnatoxinsaandgreversiblyblockmouseskeletalneuromusculartransmissioninvivoandinvitro
AT serventdenis syntheticpinnatoxinsaandgreversiblyblockmouseskeletalneuromusculartransmissioninvivoandinvitro
AT zakarianarmen syntheticpinnatoxinsaandgreversiblyblockmouseskeletalneuromusculartransmissioninvivoandinvitro
AT molgojordi syntheticpinnatoxinsaandgreversiblyblockmouseskeletalneuromusculartransmissioninvivoandinvitro