Literature DB >> 25352042

Monepantel irreversibly binds to and opens Haemonchus contortus MPTL-1 and Caenorhabditis elegans ACR-20 receptors.

Roland Baur1, Robin Beech1, Erwin Sigel1, Lucien Rufener2.   

Abstract

Monepantel is a recently developed anthelmintic with a novel mode of action. Parasitic nematodes with reduced sensitivity to monepantel have led to the identification of MPTL-1, a ligand-gated ion-channel subunit of the parasitic nematode Haemonchus contortus, as a potential drug target. Homomeric MPTL-1 channels reconstituted in Xenopus oocytes are gated by µM concentrations of betaine and mM concentrations of choline. Measurement of reversal potentials indicated that the channel has a similar conductance for Na(+) and K(+) ions and does not permeate Ca(2+). Concentrations of monepantel (amino-acetonitrile derivative [AAD]-2225) >0.1 μM, but not its inactive enantiomer AAD-2224, induced channel opening in an irreversible manner. Currents elicited by monepantel alone were larger than the maximal current amplitudes achieved with betaine or choline, making monepantel a superagonist. Currents elicited by betaine or choline were allosterically potentiated by nM concentrations of monepantel and to a much smaller degree by AAD-2224. We have also reconstituted the Caenorhabditis elegans homomeric ACR-20 receptor in Xenopus oocytes. The acr-20 sequence has higher similarity to mptl-1 than acr-23, the primary target for monepantel mode of action in C. elegans. The ACR-20 channel is gated similarly as MPTL-1. Monepantel, but not AAD-2224, was able to induce channel opening in an irreversible manner at similar concentrations as for MPTL-1. Interestingly, the allosteric potentiation measured in the presence of betaine was much smaller than in MPTL-1 receptors. Together, these results establish the mode of action of monepantel in H. contortus and contribute to our understanding of the mode of action of this anthelmintic.
Copyright © 2014 by The American Society for Pharmacology and Experimental Therapeutics.

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Year:  2014        PMID: 25352042     DOI: 10.1124/mol.114.095653

Source DB:  PubMed          Journal:  Mol Pharmacol        ISSN: 0026-895X            Impact factor:   4.436


  11 in total

1.  Polymorphisms in exon 11 of the mptl-1 gene and monepantel resistance in Haemonchus contortus.

Authors:  Simone Cristina Méo Niciura; Cintia Hiromi Okino; Alessandra da Silva Nucci; Wilson Malagó; Magda Vieira Benavides; Sergio Novita Esteves; Ana Carolina de Souza Chagas
Journal:  Parasitol Res       Date:  2022-10-04       Impact factor: 2.383

2.  A BRIEF REVIEW ON THE MODE OF ACTION OF ANTINEMATODAL DRUGS.

Authors:  Melanie Abongwa; Richard J Martin; Alan P Robertson
Journal:  Acta Vet (Beogr)       Date:  2017-06-26       Impact factor: 0.800

Review 3.  Complementary Approaches with Free-living and Parasitic Nematodes to Understanding Anthelmintic Resistance.

Authors:  Janneke Wit; Clayton M Dilks; Erik C Andersen
Journal:  Trends Parasitol       Date:  2020-12-13

4.  Pharmacological profile of Ascaris suum ACR-16, a new homomeric nicotinic acetylcholine receptor widely distributed in Ascaris tissues.

Authors:  Melanie Abongwa; Samuel K Buxton; Elise Courtot; Claude L Charvet; Cédric Neveu; Ciaran J McCoy; Saurabh Verma; Alan P Robertson; Richard J Martin
Journal:  Br J Pharmacol       Date:  2016-07-18       Impact factor: 8.739

5.  Functional Characterization of a Novel Class of Morantel-Sensitive Acetylcholine Receptors in Nematodes.

Authors:  Elise Courtot; Claude L Charvet; Robin N Beech; Abdallah Harmache; Adrian J Wolstenholme; Lindy Holden-Dye; Vincent O'Connor; Nicolas Peineau; Debra J Woods; Cedric Neveu
Journal:  PLoS Pathog       Date:  2015-12-01       Impact factor: 6.823

6.  Recent Duplication and Functional Divergence in Parasitic Nematode Levamisole-Sensitive Acetylcholine Receptors.

Authors:  Thomas B Duguet; Claude L Charvet; Sean G Forrester; Claudia M Wever; Joseph A Dent; Cedric Neveu; Robin N Beech
Journal:  PLoS Negl Trop Dis       Date:  2016-07-14

7.  Lupin (Lupinus spp.) seeds exert anthelmintic activity associated with their alkaloid content.

Authors:  O Dubois; C Allanic; C L Charvet; F Guégnard; H Février; I Théry-Koné; J Cortet; C Koch; F Bouvier; T Fassier; D Marcon; J B Magnin-Robert; N Peineau; E Courtot; C Huau; A Meynadier; C Enguehard-Gueiffier; C Neveu; L Boudesocque-Delaye; G Sallé
Journal:  Sci Rep       Date:  2019-06-21       Impact factor: 4.379

8.  Conserved nicotine-activated neuroprotective pathways involve mitochondrial stress.

Authors:  J Brucker Nourse; Gilad Harshefi; Adi Marom; Abdelrahaman Karmi; Hagit Cohen Ben-Ami; Kim A Caldwell; Guy A Caldwell; Millet Treinin
Journal:  iScience       Date:  2021-02-04

Review 9.  Drug discovery: Insights from the invertebrate Caenorhabditis elegans.

Authors:  Sebastián Giunti; Natalia Andersen; Diego Rayes; María José De Rosa
Journal:  Pharmacol Res Perspect       Date:  2021-04

10.  Genotypic characterisation of monepantel resistance in historical and newly derived field strains of Teladorsagia circumcincta.

Authors:  Frank Turnbull; Eileen Devaney; Alison A Morrison; Roz Laing; Dave J Bartley
Journal:  Int J Parasitol Drugs Drug Resist       Date:  2019-10-06       Impact factor: 4.077

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