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Male-Specific Fruitless Isoforms Target Neurodevelopmental Genes to Specify a Sexually Dimorphic Nervous System

BACKGROUND: In Drosophila, male courtship behavior is regulated in large part by the gene fruitless (fru). fru encodes a set of putative transcription factors that promote male sexual behavior by controlling the development of sexually dimorphic neuronal circuitry. Little is known about how Fru prot...

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Autores principales: Neville, Megan C., Nojima, Tetsuya, Ashley, Elizabeth, Parker, Darren J., Walker, John, Southall, Tony, Van de Sande, Bram, Marques, Ana C., Fischer, Bettina, Brand, Andrea H., Russell, Steven, Ritchie, Michael G., Aerts, Stein, Goodwin, Stephen F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3969260/
https://www.ncbi.nlm.nih.gov/pubmed/24440396
http://dx.doi.org/10.1016/j.cub.2013.11.035
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author Neville, Megan C.
Nojima, Tetsuya
Ashley, Elizabeth
Parker, Darren J.
Walker, John
Southall, Tony
Van de Sande, Bram
Marques, Ana C.
Fischer, Bettina
Brand, Andrea H.
Russell, Steven
Ritchie, Michael G.
Aerts, Stein
Goodwin, Stephen F.
author_facet Neville, Megan C.
Nojima, Tetsuya
Ashley, Elizabeth
Parker, Darren J.
Walker, John
Southall, Tony
Van de Sande, Bram
Marques, Ana C.
Fischer, Bettina
Brand, Andrea H.
Russell, Steven
Ritchie, Michael G.
Aerts, Stein
Goodwin, Stephen F.
author_sort Neville, Megan C.
collection PubMed
description BACKGROUND: In Drosophila, male courtship behavior is regulated in large part by the gene fruitless (fru). fru encodes a set of putative transcription factors that promote male sexual behavior by controlling the development of sexually dimorphic neuronal circuitry. Little is known about how Fru proteins function at the level of transcriptional regulation or the role that isoform diversity plays in the formation of a male-specific nervous system. RESULTS: To characterize the roles of sex-specific Fru isoforms in specifying male behavior, we generated novel isoform-specific mutants and used a genomic approach to identify direct Fru isoform targets during development. We demonstrate that all Fru isoforms directly target genes involved in the development of the nervous system, with individual isoforms exhibiting unique binding specificities. We observe that fru behavioral phenotypes are specified by either a single isoform or a combination of isoforms. Finally, we illustrate the utility of these data for the identification of novel sexually dimorphic genomic enhancers and novel downstream regulators of male sexual behavior. CONCLUSIONS: These findings suggest that Fru isoform diversity facilitates both redundancy and specificity in gene expression, and that the regulation of neuronal developmental genes may be the most ancient and conserved role of fru in the specification of a male-specific nervous system.
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spelling pubmed-39692602014-03-31 Male-Specific Fruitless Isoforms Target Neurodevelopmental Genes to Specify a Sexually Dimorphic Nervous System Neville, Megan C. Nojima, Tetsuya Ashley, Elizabeth Parker, Darren J. Walker, John Southall, Tony Van de Sande, Bram Marques, Ana C. Fischer, Bettina Brand, Andrea H. Russell, Steven Ritchie, Michael G. Aerts, Stein Goodwin, Stephen F. Curr Biol Article BACKGROUND: In Drosophila, male courtship behavior is regulated in large part by the gene fruitless (fru). fru encodes a set of putative transcription factors that promote male sexual behavior by controlling the development of sexually dimorphic neuronal circuitry. Little is known about how Fru proteins function at the level of transcriptional regulation or the role that isoform diversity plays in the formation of a male-specific nervous system. RESULTS: To characterize the roles of sex-specific Fru isoforms in specifying male behavior, we generated novel isoform-specific mutants and used a genomic approach to identify direct Fru isoform targets during development. We demonstrate that all Fru isoforms directly target genes involved in the development of the nervous system, with individual isoforms exhibiting unique binding specificities. We observe that fru behavioral phenotypes are specified by either a single isoform or a combination of isoforms. Finally, we illustrate the utility of these data for the identification of novel sexually dimorphic genomic enhancers and novel downstream regulators of male sexual behavior. CONCLUSIONS: These findings suggest that Fru isoform diversity facilitates both redundancy and specificity in gene expression, and that the regulation of neuronal developmental genes may be the most ancient and conserved role of fru in the specification of a male-specific nervous system. Cell Press 2014-02-03 /pmc/articles/PMC3969260/ /pubmed/24440396 http://dx.doi.org/10.1016/j.cub.2013.11.035 Text en © 2014 The Authors http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial-No Derivative Works License, which permits non-commercial use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Article
Neville, Megan C.
Nojima, Tetsuya
Ashley, Elizabeth
Parker, Darren J.
Walker, John
Southall, Tony
Van de Sande, Bram
Marques, Ana C.
Fischer, Bettina
Brand, Andrea H.
Russell, Steven
Ritchie, Michael G.
Aerts, Stein
Goodwin, Stephen F.
Male-Specific Fruitless Isoforms Target Neurodevelopmental Genes to Specify a Sexually Dimorphic Nervous System
title Male-Specific Fruitless Isoforms Target Neurodevelopmental Genes to Specify a Sexually Dimorphic Nervous System
title_full Male-Specific Fruitless Isoforms Target Neurodevelopmental Genes to Specify a Sexually Dimorphic Nervous System
title_fullStr Male-Specific Fruitless Isoforms Target Neurodevelopmental Genes to Specify a Sexually Dimorphic Nervous System
title_full_unstemmed Male-Specific Fruitless Isoforms Target Neurodevelopmental Genes to Specify a Sexually Dimorphic Nervous System
title_short Male-Specific Fruitless Isoforms Target Neurodevelopmental Genes to Specify a Sexually Dimorphic Nervous System
title_sort male-specific fruitless isoforms target neurodevelopmental genes to specify a sexually dimorphic nervous system
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3969260/
https://www.ncbi.nlm.nih.gov/pubmed/24440396
http://dx.doi.org/10.1016/j.cub.2013.11.035
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