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GRAS-1 is a novel regulator of early meiotic chromosome dynamics in C. elegans

Chromosome movements and licensing of synapsis must be tightly regulated during early meiosis to ensure accurate chromosome segregation and avoid aneuploidy, although how these steps are coordinated is not fully understood. Here we show that GRAS-1, the worm homolog of mammalian GRASP/Tamalin and CY...

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Autores principales: Martinez-Garcia, Marina, Naharro, Pedro Robles, Skinner, Marnie W., Baran, Kerstin A., Lascarez-Lagunas, Laura I., Nadarajan, Saravanapriah, Shin, Nara, Silva-García, Carlos G., Saito, Takamune T., Beese-Sims, Sara, Diaz-Pacheco, Brianna N., Berson, Elizaveta, Castañer, Ana B., Pacheco, Sarai, Martinez-Perez, Enrique, Jordan, Philip W., Colaiácovo, Monica P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9983901/
https://www.ncbi.nlm.nih.gov/pubmed/36809245
http://dx.doi.org/10.1371/journal.pgen.1010666
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author Martinez-Garcia, Marina
Naharro, Pedro Robles
Skinner, Marnie W.
Baran, Kerstin A.
Lascarez-Lagunas, Laura I.
Nadarajan, Saravanapriah
Shin, Nara
Silva-García, Carlos G.
Saito, Takamune T.
Beese-Sims, Sara
Diaz-Pacheco, Brianna N.
Berson, Elizaveta
Castañer, Ana B.
Pacheco, Sarai
Martinez-Perez, Enrique
Jordan, Philip W.
Colaiácovo, Monica P.
author_facet Martinez-Garcia, Marina
Naharro, Pedro Robles
Skinner, Marnie W.
Baran, Kerstin A.
Lascarez-Lagunas, Laura I.
Nadarajan, Saravanapriah
Shin, Nara
Silva-García, Carlos G.
Saito, Takamune T.
Beese-Sims, Sara
Diaz-Pacheco, Brianna N.
Berson, Elizaveta
Castañer, Ana B.
Pacheco, Sarai
Martinez-Perez, Enrique
Jordan, Philip W.
Colaiácovo, Monica P.
author_sort Martinez-Garcia, Marina
collection PubMed
description Chromosome movements and licensing of synapsis must be tightly regulated during early meiosis to ensure accurate chromosome segregation and avoid aneuploidy, although how these steps are coordinated is not fully understood. Here we show that GRAS-1, the worm homolog of mammalian GRASP/Tamalin and CYTIP, coordinates early meiotic events with cytoskeletal forces outside the nucleus. GRAS-1 localizes close to the nuclear envelope (NE) in early prophase I and interacts with NE and cytoskeleton proteins. Delayed homologous chromosome pairing, synaptonemal complex (SC) assembly, and DNA double-strand break repair progression are partially rescued by the expression of human CYTIP in gras-1 mutants, supporting functional conservation. However, Tamalin, Cytip double knockout mice do not exhibit obvious fertility or meiotic defects, suggesting evolutionary differences between mammals. gras-1 mutants show accelerated chromosome movement during early prophase I, implicating GRAS-1 in regulating chromosome dynamics. GRAS-1-mediated regulation of chromosome movement is DHC-1-dependent, placing it acting within the LINC-controlled pathway, and depends on GRAS-1 phosphorylation at a C-terminal S/T cluster. We propose that GRAS-1 coordinates the early steps of homology search and licensing of SC assembly by regulating the pace of chromosome movement in early prophase I.
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spelling pubmed-99839012023-03-04 GRAS-1 is a novel regulator of early meiotic chromosome dynamics in C. elegans Martinez-Garcia, Marina Naharro, Pedro Robles Skinner, Marnie W. Baran, Kerstin A. Lascarez-Lagunas, Laura I. Nadarajan, Saravanapriah Shin, Nara Silva-García, Carlos G. Saito, Takamune T. Beese-Sims, Sara Diaz-Pacheco, Brianna N. Berson, Elizaveta Castañer, Ana B. Pacheco, Sarai Martinez-Perez, Enrique Jordan, Philip W. Colaiácovo, Monica P. PLoS Genet Research Article Chromosome movements and licensing of synapsis must be tightly regulated during early meiosis to ensure accurate chromosome segregation and avoid aneuploidy, although how these steps are coordinated is not fully understood. Here we show that GRAS-1, the worm homolog of mammalian GRASP/Tamalin and CYTIP, coordinates early meiotic events with cytoskeletal forces outside the nucleus. GRAS-1 localizes close to the nuclear envelope (NE) in early prophase I and interacts with NE and cytoskeleton proteins. Delayed homologous chromosome pairing, synaptonemal complex (SC) assembly, and DNA double-strand break repair progression are partially rescued by the expression of human CYTIP in gras-1 mutants, supporting functional conservation. However, Tamalin, Cytip double knockout mice do not exhibit obvious fertility or meiotic defects, suggesting evolutionary differences between mammals. gras-1 mutants show accelerated chromosome movement during early prophase I, implicating GRAS-1 in regulating chromosome dynamics. GRAS-1-mediated regulation of chromosome movement is DHC-1-dependent, placing it acting within the LINC-controlled pathway, and depends on GRAS-1 phosphorylation at a C-terminal S/T cluster. We propose that GRAS-1 coordinates the early steps of homology search and licensing of SC assembly by regulating the pace of chromosome movement in early prophase I. Public Library of Science 2023-02-21 /pmc/articles/PMC9983901/ /pubmed/36809245 http://dx.doi.org/10.1371/journal.pgen.1010666 Text en © 2023 Martinez-Garcia et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://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
Martinez-Garcia, Marina
Naharro, Pedro Robles
Skinner, Marnie W.
Baran, Kerstin A.
Lascarez-Lagunas, Laura I.
Nadarajan, Saravanapriah
Shin, Nara
Silva-García, Carlos G.
Saito, Takamune T.
Beese-Sims, Sara
Diaz-Pacheco, Brianna N.
Berson, Elizaveta
Castañer, Ana B.
Pacheco, Sarai
Martinez-Perez, Enrique
Jordan, Philip W.
Colaiácovo, Monica P.
GRAS-1 is a novel regulator of early meiotic chromosome dynamics in C. elegans
title GRAS-1 is a novel regulator of early meiotic chromosome dynamics in C. elegans
title_full GRAS-1 is a novel regulator of early meiotic chromosome dynamics in C. elegans
title_fullStr GRAS-1 is a novel regulator of early meiotic chromosome dynamics in C. elegans
title_full_unstemmed GRAS-1 is a novel regulator of early meiotic chromosome dynamics in C. elegans
title_short GRAS-1 is a novel regulator of early meiotic chromosome dynamics in C. elegans
title_sort gras-1 is a novel regulator of early meiotic chromosome dynamics in c. elegans
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9983901/
https://www.ncbi.nlm.nih.gov/pubmed/36809245
http://dx.doi.org/10.1371/journal.pgen.1010666
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