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Fine-tuning the orientation of the polarity axis by Rga1, a Cdc42 GTPase-activating protein

In yeast and animal cells, signaling pathways involving small guanosine triphosphatases (GTPases) regulate cell polarization. In budding yeast, selection of a bud site directs polarity establishment and subsequently determines the plane of cell division. Rga1, a Cdc42 GTPase-activating protein, prev...

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Autores principales: Miller, Kristi E., Lo, Wing-Cheong, Lee, Mid Eum, Kang, Pil Jung, Park, Hay-Oak
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society for Cell Biology 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5739294/
https://www.ncbi.nlm.nih.gov/pubmed/29074565
http://dx.doi.org/10.1091/mbc.E17-01-0074
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author Miller, Kristi E.
Lo, Wing-Cheong
Lee, Mid Eum
Kang, Pil Jung
Park, Hay-Oak
author_facet Miller, Kristi E.
Lo, Wing-Cheong
Lee, Mid Eum
Kang, Pil Jung
Park, Hay-Oak
author_sort Miller, Kristi E.
collection PubMed
description In yeast and animal cells, signaling pathways involving small guanosine triphosphatases (GTPases) regulate cell polarization. In budding yeast, selection of a bud site directs polarity establishment and subsequently determines the plane of cell division. Rga1, a Cdc42 GTPase-activating protein, prevents budding within the division site by inhibiting Cdc42 repolarization. A protein complex including Nba1 and Nis1 is involved in preventing rebudding at old division sites, yet how these proteins and Rga1 might function in negative polarity signaling has been elusive. Here we show that Rga1 transiently localizes to the immediately preceding and older division sites by interacting with Nba1 and Nis1. The LIM domains of Rga1 are necessary for its interaction with Nba1, and loss of this interaction results in premature delocalization of Rga1 from the immediately preceding division site and, consequently, abnormal bud-site selection in daughter cells. However, such defects are minor in mother cells of these mutants, likely because the G1 phase is shorter and a new bud site is established prior to delocalization of Rga1. Indeed, our biphasic mathematical model of Cdc42 polarization predicts that premature delocalization of Rga1 leads to more frequent Cdc42 repolarization within the division site when the first temporal step in G1 is assumed to last longer. Spatial distribution of a Cdc42 GAP in coordination with G1 progression may thus be critical for fine-tuning the orientation of the polarity axis in yeast.
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spelling pubmed-57392942018-03-02 Fine-tuning the orientation of the polarity axis by Rga1, a Cdc42 GTPase-activating protein Miller, Kristi E. Lo, Wing-Cheong Lee, Mid Eum Kang, Pil Jung Park, Hay-Oak Mol Biol Cell Articles In yeast and animal cells, signaling pathways involving small guanosine triphosphatases (GTPases) regulate cell polarization. In budding yeast, selection of a bud site directs polarity establishment and subsequently determines the plane of cell division. Rga1, a Cdc42 GTPase-activating protein, prevents budding within the division site by inhibiting Cdc42 repolarization. A protein complex including Nba1 and Nis1 is involved in preventing rebudding at old division sites, yet how these proteins and Rga1 might function in negative polarity signaling has been elusive. Here we show that Rga1 transiently localizes to the immediately preceding and older division sites by interacting with Nba1 and Nis1. The LIM domains of Rga1 are necessary for its interaction with Nba1, and loss of this interaction results in premature delocalization of Rga1 from the immediately preceding division site and, consequently, abnormal bud-site selection in daughter cells. However, such defects are minor in mother cells of these mutants, likely because the G1 phase is shorter and a new bud site is established prior to delocalization of Rga1. Indeed, our biphasic mathematical model of Cdc42 polarization predicts that premature delocalization of Rga1 leads to more frequent Cdc42 repolarization within the division site when the first temporal step in G1 is assumed to last longer. Spatial distribution of a Cdc42 GAP in coordination with G1 progression may thus be critical for fine-tuning the orientation of the polarity axis in yeast. The American Society for Cell Biology 2017-12-15 /pmc/articles/PMC5739294/ /pubmed/29074565 http://dx.doi.org/10.1091/mbc.E17-01-0074 Text en © 2017 Miller et al. This article is distributed by The American Society for Cell Biology under license from the author(s). Two months after publication it is available to the public under an Attribution–Noncommercial–Share Alike 3.0 Unported Creative Commons License (http://creativecommons.org/licenses/by-nc-sa/3.0). “ASCB®,” “The American Society for Cell Biology®,” and “Molecular Biology of the Cell®” are registered trademarks of The American Society for Cell Biology.
spellingShingle Articles
Miller, Kristi E.
Lo, Wing-Cheong
Lee, Mid Eum
Kang, Pil Jung
Park, Hay-Oak
Fine-tuning the orientation of the polarity axis by Rga1, a Cdc42 GTPase-activating protein
title Fine-tuning the orientation of the polarity axis by Rga1, a Cdc42 GTPase-activating protein
title_full Fine-tuning the orientation of the polarity axis by Rga1, a Cdc42 GTPase-activating protein
title_fullStr Fine-tuning the orientation of the polarity axis by Rga1, a Cdc42 GTPase-activating protein
title_full_unstemmed Fine-tuning the orientation of the polarity axis by Rga1, a Cdc42 GTPase-activating protein
title_short Fine-tuning the orientation of the polarity axis by Rga1, a Cdc42 GTPase-activating protein
title_sort fine-tuning the orientation of the polarity axis by rga1, a cdc42 gtpase-activating protein
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5739294/
https://www.ncbi.nlm.nih.gov/pubmed/29074565
http://dx.doi.org/10.1091/mbc.E17-01-0074
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