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A Point Mutation in p190A RhoGAP Affects Ciliogenesis and Leads to Glomerulocystic Kidney Defects

Rho family GTPases act as molecular switches regulating actin cytoskeleton dynamics. Attenuation of their signaling capacity is provided by GTPase-activating proteins (GAPs), including p190A, that promote the intrinsic GTPase activity of Rho proteins. In the current study we have performed a small-s...

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Autores principales: Stewart, Katherine, Gaitan, Yaned, Shafer, Maxwell E. R., Aoudjit, Lamine, Hu, Di, Sharma, Richa, Tremblay, Mathieu, Ishii, Hidetaka, Marcotte, Michael, Stanga, Daniela, Tang, You Chi, Boualia, Sami Kamel, Nguyen, Alana H. T., Takano, Tomoko, Lamarche-Vane, Nathalie, Vidal, Silvia, Bouchard, Maxime
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4747337/
https://www.ncbi.nlm.nih.gov/pubmed/26859289
http://dx.doi.org/10.1371/journal.pgen.1005785
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author Stewart, Katherine
Gaitan, Yaned
Shafer, Maxwell E. R.
Aoudjit, Lamine
Hu, Di
Sharma, Richa
Tremblay, Mathieu
Ishii, Hidetaka
Marcotte, Michael
Stanga, Daniela
Tang, You Chi
Boualia, Sami Kamel
Nguyen, Alana H. T.
Takano, Tomoko
Lamarche-Vane, Nathalie
Vidal, Silvia
Bouchard, Maxime
author_facet Stewart, Katherine
Gaitan, Yaned
Shafer, Maxwell E. R.
Aoudjit, Lamine
Hu, Di
Sharma, Richa
Tremblay, Mathieu
Ishii, Hidetaka
Marcotte, Michael
Stanga, Daniela
Tang, You Chi
Boualia, Sami Kamel
Nguyen, Alana H. T.
Takano, Tomoko
Lamarche-Vane, Nathalie
Vidal, Silvia
Bouchard, Maxime
author_sort Stewart, Katherine
collection PubMed
description Rho family GTPases act as molecular switches regulating actin cytoskeleton dynamics. Attenuation of their signaling capacity is provided by GTPase-activating proteins (GAPs), including p190A, that promote the intrinsic GTPase activity of Rho proteins. In the current study we have performed a small-scale ENU mutagenesis screen and identified a novel loss of function allele of the p190A gene Arhgap35, which introduces a Leu1396 to Gln substitution in the GAP domain. This results in decreased GAP activity for the prototypical Rho-family members, RhoA and Rac1, likely due to disrupted ordering of the Rho binding surface. Consequently, Arhgap35-deficient animals exhibit hypoplastic and glomerulocystic kidneys. Investigation into the cystic phenotype shows that p190A is required for appropriate primary cilium formation in renal nephrons. P190A specifically localizes to the base of the cilia to permit axoneme elongation, which requires a functional GAP domain. Pharmacological manipulations further reveal that inhibition of either Rho kinase (ROCK) or F-actin polymerization is able to rescue the ciliogenesis defects observed upon loss of p190A activity. We propose a model in which p190A acts as a modulator of Rho GTPases in a localized area around the cilia to permit the dynamic actin rearrangement required for cilia elongation. Together, our results establish an unexpected link between Rho GTPase regulation, ciliogenesis and glomerulocystic kidney disease.
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spelling pubmed-47473372016-02-22 A Point Mutation in p190A RhoGAP Affects Ciliogenesis and Leads to Glomerulocystic Kidney Defects Stewart, Katherine Gaitan, Yaned Shafer, Maxwell E. R. Aoudjit, Lamine Hu, Di Sharma, Richa Tremblay, Mathieu Ishii, Hidetaka Marcotte, Michael Stanga, Daniela Tang, You Chi Boualia, Sami Kamel Nguyen, Alana H. T. Takano, Tomoko Lamarche-Vane, Nathalie Vidal, Silvia Bouchard, Maxime PLoS Genet Research Article Rho family GTPases act as molecular switches regulating actin cytoskeleton dynamics. Attenuation of their signaling capacity is provided by GTPase-activating proteins (GAPs), including p190A, that promote the intrinsic GTPase activity of Rho proteins. In the current study we have performed a small-scale ENU mutagenesis screen and identified a novel loss of function allele of the p190A gene Arhgap35, which introduces a Leu1396 to Gln substitution in the GAP domain. This results in decreased GAP activity for the prototypical Rho-family members, RhoA and Rac1, likely due to disrupted ordering of the Rho binding surface. Consequently, Arhgap35-deficient animals exhibit hypoplastic and glomerulocystic kidneys. Investigation into the cystic phenotype shows that p190A is required for appropriate primary cilium formation in renal nephrons. P190A specifically localizes to the base of the cilia to permit axoneme elongation, which requires a functional GAP domain. Pharmacological manipulations further reveal that inhibition of either Rho kinase (ROCK) or F-actin polymerization is able to rescue the ciliogenesis defects observed upon loss of p190A activity. We propose a model in which p190A acts as a modulator of Rho GTPases in a localized area around the cilia to permit the dynamic actin rearrangement required for cilia elongation. Together, our results establish an unexpected link between Rho GTPase regulation, ciliogenesis and glomerulocystic kidney disease. Public Library of Science 2016-02-09 /pmc/articles/PMC4747337/ /pubmed/26859289 http://dx.doi.org/10.1371/journal.pgen.1005785 Text en © 2016 Stewart 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Stewart, Katherine
Gaitan, Yaned
Shafer, Maxwell E. R.
Aoudjit, Lamine
Hu, Di
Sharma, Richa
Tremblay, Mathieu
Ishii, Hidetaka
Marcotte, Michael
Stanga, Daniela
Tang, You Chi
Boualia, Sami Kamel
Nguyen, Alana H. T.
Takano, Tomoko
Lamarche-Vane, Nathalie
Vidal, Silvia
Bouchard, Maxime
A Point Mutation in p190A RhoGAP Affects Ciliogenesis and Leads to Glomerulocystic Kidney Defects
title A Point Mutation in p190A RhoGAP Affects Ciliogenesis and Leads to Glomerulocystic Kidney Defects
title_full A Point Mutation in p190A RhoGAP Affects Ciliogenesis and Leads to Glomerulocystic Kidney Defects
title_fullStr A Point Mutation in p190A RhoGAP Affects Ciliogenesis and Leads to Glomerulocystic Kidney Defects
title_full_unstemmed A Point Mutation in p190A RhoGAP Affects Ciliogenesis and Leads to Glomerulocystic Kidney Defects
title_short A Point Mutation in p190A RhoGAP Affects Ciliogenesis and Leads to Glomerulocystic Kidney Defects
title_sort point mutation in p190a rhogap affects ciliogenesis and leads to glomerulocystic kidney defects
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4747337/
https://www.ncbi.nlm.nih.gov/pubmed/26859289
http://dx.doi.org/10.1371/journal.pgen.1005785
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