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Spiroindolines Identify the Vesicular Acetylcholine Transporter as a Novel Target for Insecticide Action

The efficacy of all major insecticide classes continues to be eroded by the development of resistance mediated, in part, by selection of alleles encoding insecticide insensitive target proteins. The discovery of new insecticide classes acting at novel protein binding sites is therefore important for...

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Autores principales: Sluder, Ann, Shah, Sheetal, Cassayre, Jérôme, Clover, Ralph, Maienfisch, Peter, Molleyres, Louis-Pierre, Hirst, Elizabeth A., Flemming, Anthony J., Shi, Min, Cutler, Penny, Stanger, Carole, Roberts, Richard S., Hughes, David J., Flury, Thomas, Robinson, Michael P., Hillesheim, Elke, Pitterna, Thomas, Cederbaum, Fredrik, Worthington, Paul A., Crossthwaite, Andrew J., Windass, John D., Currie, Richard A., Earley, Fergus G. P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3341389/
https://www.ncbi.nlm.nih.gov/pubmed/22563457
http://dx.doi.org/10.1371/journal.pone.0034712
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author Sluder, Ann
Shah, Sheetal
Cassayre, Jérôme
Clover, Ralph
Maienfisch, Peter
Molleyres, Louis-Pierre
Hirst, Elizabeth A.
Flemming, Anthony J.
Shi, Min
Cutler, Penny
Stanger, Carole
Roberts, Richard S.
Hughes, David J.
Flury, Thomas
Robinson, Michael P.
Hillesheim, Elke
Pitterna, Thomas
Cederbaum, Fredrik
Worthington, Paul A.
Crossthwaite, Andrew J.
Windass, John D.
Currie, Richard A.
Earley, Fergus G. P.
author_facet Sluder, Ann
Shah, Sheetal
Cassayre, Jérôme
Clover, Ralph
Maienfisch, Peter
Molleyres, Louis-Pierre
Hirst, Elizabeth A.
Flemming, Anthony J.
Shi, Min
Cutler, Penny
Stanger, Carole
Roberts, Richard S.
Hughes, David J.
Flury, Thomas
Robinson, Michael P.
Hillesheim, Elke
Pitterna, Thomas
Cederbaum, Fredrik
Worthington, Paul A.
Crossthwaite, Andrew J.
Windass, John D.
Currie, Richard A.
Earley, Fergus G. P.
author_sort Sluder, Ann
collection PubMed
description The efficacy of all major insecticide classes continues to be eroded by the development of resistance mediated, in part, by selection of alleles encoding insecticide insensitive target proteins. The discovery of new insecticide classes acting at novel protein binding sites is therefore important for the continued protection of the food supply from insect predators, and of human and animal health from insect borne disease. Here we describe a novel class of insecticides (Spiroindolines) encompassing molecules that combine excellent activity against major agricultural pest species with low mammalian toxicity. We confidently assign the vesicular acetylcholine transporter as the molecular target of Spiroindolines through the combination of molecular genetics in model organisms with a pharmacological approach in insect tissues. The vesicular acetylcholine transporter can now be added to the list of validated insecticide targets in the acetylcholine signalling pathway and we anticipate that this will lead to the discovery of novel molecules useful in sustaining agriculture. In addition to their potential as insecticides and nematocides, Spiroindolines represent the only other class of chemical ligands for the vesicular acetylcholine transporter since those based on the discovery of vesamicol over 40 years ago, and as such, have potential to provide more selective tools for PET imaging in the diagnosis of neurodegenerative disease. They also provide novel biochemical tools for studies of the function of this protein family.
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spelling pubmed-33413892012-05-04 Spiroindolines Identify the Vesicular Acetylcholine Transporter as a Novel Target for Insecticide Action Sluder, Ann Shah, Sheetal Cassayre, Jérôme Clover, Ralph Maienfisch, Peter Molleyres, Louis-Pierre Hirst, Elizabeth A. Flemming, Anthony J. Shi, Min Cutler, Penny Stanger, Carole Roberts, Richard S. Hughes, David J. Flury, Thomas Robinson, Michael P. Hillesheim, Elke Pitterna, Thomas Cederbaum, Fredrik Worthington, Paul A. Crossthwaite, Andrew J. Windass, John D. Currie, Richard A. Earley, Fergus G. P. PLoS One Research Article The efficacy of all major insecticide classes continues to be eroded by the development of resistance mediated, in part, by selection of alleles encoding insecticide insensitive target proteins. The discovery of new insecticide classes acting at novel protein binding sites is therefore important for the continued protection of the food supply from insect predators, and of human and animal health from insect borne disease. Here we describe a novel class of insecticides (Spiroindolines) encompassing molecules that combine excellent activity against major agricultural pest species with low mammalian toxicity. We confidently assign the vesicular acetylcholine transporter as the molecular target of Spiroindolines through the combination of molecular genetics in model organisms with a pharmacological approach in insect tissues. The vesicular acetylcholine transporter can now be added to the list of validated insecticide targets in the acetylcholine signalling pathway and we anticipate that this will lead to the discovery of novel molecules useful in sustaining agriculture. In addition to their potential as insecticides and nematocides, Spiroindolines represent the only other class of chemical ligands for the vesicular acetylcholine transporter since those based on the discovery of vesamicol over 40 years ago, and as such, have potential to provide more selective tools for PET imaging in the diagnosis of neurodegenerative disease. They also provide novel biochemical tools for studies of the function of this protein family. Public Library of Science 2012-05-01 /pmc/articles/PMC3341389/ /pubmed/22563457 http://dx.doi.org/10.1371/journal.pone.0034712 Text en Sluder et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Sluder, Ann
Shah, Sheetal
Cassayre, Jérôme
Clover, Ralph
Maienfisch, Peter
Molleyres, Louis-Pierre
Hirst, Elizabeth A.
Flemming, Anthony J.
Shi, Min
Cutler, Penny
Stanger, Carole
Roberts, Richard S.
Hughes, David J.
Flury, Thomas
Robinson, Michael P.
Hillesheim, Elke
Pitterna, Thomas
Cederbaum, Fredrik
Worthington, Paul A.
Crossthwaite, Andrew J.
Windass, John D.
Currie, Richard A.
Earley, Fergus G. P.
Spiroindolines Identify the Vesicular Acetylcholine Transporter as a Novel Target for Insecticide Action
title Spiroindolines Identify the Vesicular Acetylcholine Transporter as a Novel Target for Insecticide Action
title_full Spiroindolines Identify the Vesicular Acetylcholine Transporter as a Novel Target for Insecticide Action
title_fullStr Spiroindolines Identify the Vesicular Acetylcholine Transporter as a Novel Target for Insecticide Action
title_full_unstemmed Spiroindolines Identify the Vesicular Acetylcholine Transporter as a Novel Target for Insecticide Action
title_short Spiroindolines Identify the Vesicular Acetylcholine Transporter as a Novel Target for Insecticide Action
title_sort spiroindolines identify the vesicular acetylcholine transporter as a novel target for insecticide action
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3341389/
https://www.ncbi.nlm.nih.gov/pubmed/22563457
http://dx.doi.org/10.1371/journal.pone.0034712
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