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The nematode serotonin-gated chloride channel MOD-1: A novel target for anthelmintic therapy

Anthelmintics are used to treat human and veterinary parasitic diseases and to reduce crop and livestock production loss associated with parasitosis. The free-living nematode Caenorhabditis elegans, a model system for anthelmintic drug discovery, has a serotonin (5-HT)-gated chloride channel, MOD-1,...

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Autores principales: Rodriguez Araujo, Noelia, Hernando, Guillermina, Corradi, Jeremías, Bouzat, Cecilia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9471462/
https://www.ncbi.nlm.nih.gov/pubmed/35952761
http://dx.doi.org/10.1016/j.jbc.2022.102356
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author Rodriguez Araujo, Noelia
Hernando, Guillermina
Corradi, Jeremías
Bouzat, Cecilia
author_facet Rodriguez Araujo, Noelia
Hernando, Guillermina
Corradi, Jeremías
Bouzat, Cecilia
author_sort Rodriguez Araujo, Noelia
collection PubMed
description Anthelmintics are used to treat human and veterinary parasitic diseases and to reduce crop and livestock production loss associated with parasitosis. The free-living nematode Caenorhabditis elegans, a model system for anthelmintic drug discovery, has a serotonin (5-HT)-gated chloride channel, MOD-1, which belongs to the Cys-loop receptor family and modulates locomotory and behavioral functions. Since MOD-1 is unique to nematodes, it is emerging as an attractive anthelmintic drug target, but details of MOD-1 function are unclear. Here, we revealed novel aspects of MOD-1 function from the molecular level to the organism level and identified compounds targeting this receptor, which may provide new directions for anthelmintic drug discovery. We used whole-cell current recordings from heterologously expressed MOD-1 to show that tryptamine (Tryp), a weak partial agonist of vertebrate serotonin type 3 (5-HT(3)) receptors, efficaciously activates MOD-1. A screen for modulators revealed that GABAergic ligands piperazine (PZE) and muscimol reduce 5-HT-elicited currents, thus identifying novel MOD-1 allosteric inhibitors. Next, we performed locomotor activity assays, and we found 5-HT and Tryp rapidly decrease worm motility, which is reversible only at low 5-HT concentrations. Mutants lacking MOD-1 are partially resistant to both drugs, demonstrating its role in locomotion. Acting as an antagonist of MOD-1, we showed PZE reduces the locomotor effects of exogenous 5-HT. Therefore, Tryp- and PZE-derived compounds, acting at MOD-1 through different molecular mechanisms, emerge as promising anthelmintic agents. This study enhances our knowledge of the function and drug selectivity of Cys-loop receptors and postulates MOD-1 as a potential target for anthelmintic therapy.
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spelling pubmed-94714622022-09-19 The nematode serotonin-gated chloride channel MOD-1: A novel target for anthelmintic therapy Rodriguez Araujo, Noelia Hernando, Guillermina Corradi, Jeremías Bouzat, Cecilia J Biol Chem Research Article Anthelmintics are used to treat human and veterinary parasitic diseases and to reduce crop and livestock production loss associated with parasitosis. The free-living nematode Caenorhabditis elegans, a model system for anthelmintic drug discovery, has a serotonin (5-HT)-gated chloride channel, MOD-1, which belongs to the Cys-loop receptor family and modulates locomotory and behavioral functions. Since MOD-1 is unique to nematodes, it is emerging as an attractive anthelmintic drug target, but details of MOD-1 function are unclear. Here, we revealed novel aspects of MOD-1 function from the molecular level to the organism level and identified compounds targeting this receptor, which may provide new directions for anthelmintic drug discovery. We used whole-cell current recordings from heterologously expressed MOD-1 to show that tryptamine (Tryp), a weak partial agonist of vertebrate serotonin type 3 (5-HT(3)) receptors, efficaciously activates MOD-1. A screen for modulators revealed that GABAergic ligands piperazine (PZE) and muscimol reduce 5-HT-elicited currents, thus identifying novel MOD-1 allosteric inhibitors. Next, we performed locomotor activity assays, and we found 5-HT and Tryp rapidly decrease worm motility, which is reversible only at low 5-HT concentrations. Mutants lacking MOD-1 are partially resistant to both drugs, demonstrating its role in locomotion. Acting as an antagonist of MOD-1, we showed PZE reduces the locomotor effects of exogenous 5-HT. Therefore, Tryp- and PZE-derived compounds, acting at MOD-1 through different molecular mechanisms, emerge as promising anthelmintic agents. This study enhances our knowledge of the function and drug selectivity of Cys-loop receptors and postulates MOD-1 as a potential target for anthelmintic therapy. American Society for Biochemistry and Molecular Biology 2022-08-09 /pmc/articles/PMC9471462/ /pubmed/35952761 http://dx.doi.org/10.1016/j.jbc.2022.102356 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Rodriguez Araujo, Noelia
Hernando, Guillermina
Corradi, Jeremías
Bouzat, Cecilia
The nematode serotonin-gated chloride channel MOD-1: A novel target for anthelmintic therapy
title The nematode serotonin-gated chloride channel MOD-1: A novel target for anthelmintic therapy
title_full The nematode serotonin-gated chloride channel MOD-1: A novel target for anthelmintic therapy
title_fullStr The nematode serotonin-gated chloride channel MOD-1: A novel target for anthelmintic therapy
title_full_unstemmed The nematode serotonin-gated chloride channel MOD-1: A novel target for anthelmintic therapy
title_short The nematode serotonin-gated chloride channel MOD-1: A novel target for anthelmintic therapy
title_sort nematode serotonin-gated chloride channel mod-1: a novel target for anthelmintic therapy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9471462/
https://www.ncbi.nlm.nih.gov/pubmed/35952761
http://dx.doi.org/10.1016/j.jbc.2022.102356
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