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The conserved AAA ATPase PCH-2 distributes its regulation of meiotic prophase events through multiple meiotic HORMADs in C. elegans

During meiotic prophase, the essential events of homolog pairing, synapsis, and recombination are coordinated with meiotic progression to promote fidelity and prevent aneuploidy. The conserved AAA+ ATPase PCH-2 coordinates these events to guarantee crossover assurance and accurate chromosome segrega...

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Autores principales: Russo, Anna E., Giacopazzi, Stefani, Deshong, Alison, Menon, Malaika, Ortiz, Valery, Ego, Kaori M., Corbett, Kevin D., Bhalla, Needhi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10132761/
https://www.ncbi.nlm.nih.gov/pubmed/37058535
http://dx.doi.org/10.1371/journal.pgen.1010708
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author Russo, Anna E.
Giacopazzi, Stefani
Deshong, Alison
Menon, Malaika
Ortiz, Valery
Ego, Kaori M.
Corbett, Kevin D.
Bhalla, Needhi
author_facet Russo, Anna E.
Giacopazzi, Stefani
Deshong, Alison
Menon, Malaika
Ortiz, Valery
Ego, Kaori M.
Corbett, Kevin D.
Bhalla, Needhi
author_sort Russo, Anna E.
collection PubMed
description During meiotic prophase, the essential events of homolog pairing, synapsis, and recombination are coordinated with meiotic progression to promote fidelity and prevent aneuploidy. The conserved AAA+ ATPase PCH-2 coordinates these events to guarantee crossover assurance and accurate chromosome segregation. How PCH-2 accomplishes this coordination is poorly understood. Here, we provide evidence that PCH-2 decelerates pairing, synapsis and recombination in C. elegans by remodeling meiotic HORMADs. We propose that PCH-2 converts the closed versions of these proteins, which drive these meiotic prophase events, to unbuckled conformations, destabilizing interhomolog interactions and delaying meiotic progression. Further, we find that PCH-2 distributes this regulation among three essential meiotic HORMADs in C. elegans: PCH-2 acts through HTP-3 to regulate pairing and synapsis, HIM-3 to promote crossover assurance, and HTP-1 to control meiotic progression. In addition to identifying a molecular mechanism for how PCH-2 regulates interhomolog interactions, our results provide a possible explanation for the expansion of the meiotic HORMAD family as a conserved evolutionary feature of meiosis. Taken together, our work demonstrates that PCH-2’s remodeling of meiotic HORMADs has functional consequences for the rate and fidelity of homolog pairing, synapsis, recombination and meiotic progression, ensuring accurate meiotic chromosome segregation.
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spelling pubmed-101327612023-04-27 The conserved AAA ATPase PCH-2 distributes its regulation of meiotic prophase events through multiple meiotic HORMADs in C. elegans Russo, Anna E. Giacopazzi, Stefani Deshong, Alison Menon, Malaika Ortiz, Valery Ego, Kaori M. Corbett, Kevin D. Bhalla, Needhi PLoS Genet Research Article During meiotic prophase, the essential events of homolog pairing, synapsis, and recombination are coordinated with meiotic progression to promote fidelity and prevent aneuploidy. The conserved AAA+ ATPase PCH-2 coordinates these events to guarantee crossover assurance and accurate chromosome segregation. How PCH-2 accomplishes this coordination is poorly understood. Here, we provide evidence that PCH-2 decelerates pairing, synapsis and recombination in C. elegans by remodeling meiotic HORMADs. We propose that PCH-2 converts the closed versions of these proteins, which drive these meiotic prophase events, to unbuckled conformations, destabilizing interhomolog interactions and delaying meiotic progression. Further, we find that PCH-2 distributes this regulation among three essential meiotic HORMADs in C. elegans: PCH-2 acts through HTP-3 to regulate pairing and synapsis, HIM-3 to promote crossover assurance, and HTP-1 to control meiotic progression. In addition to identifying a molecular mechanism for how PCH-2 regulates interhomolog interactions, our results provide a possible explanation for the expansion of the meiotic HORMAD family as a conserved evolutionary feature of meiosis. Taken together, our work demonstrates that PCH-2’s remodeling of meiotic HORMADs has functional consequences for the rate and fidelity of homolog pairing, synapsis, recombination and meiotic progression, ensuring accurate meiotic chromosome segregation. Public Library of Science 2023-04-14 /pmc/articles/PMC10132761/ /pubmed/37058535 http://dx.doi.org/10.1371/journal.pgen.1010708 Text en © 2023 Russo 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
Russo, Anna E.
Giacopazzi, Stefani
Deshong, Alison
Menon, Malaika
Ortiz, Valery
Ego, Kaori M.
Corbett, Kevin D.
Bhalla, Needhi
The conserved AAA ATPase PCH-2 distributes its regulation of meiotic prophase events through multiple meiotic HORMADs in C. elegans
title The conserved AAA ATPase PCH-2 distributes its regulation of meiotic prophase events through multiple meiotic HORMADs in C. elegans
title_full The conserved AAA ATPase PCH-2 distributes its regulation of meiotic prophase events through multiple meiotic HORMADs in C. elegans
title_fullStr The conserved AAA ATPase PCH-2 distributes its regulation of meiotic prophase events through multiple meiotic HORMADs in C. elegans
title_full_unstemmed The conserved AAA ATPase PCH-2 distributes its regulation of meiotic prophase events through multiple meiotic HORMADs in C. elegans
title_short The conserved AAA ATPase PCH-2 distributes its regulation of meiotic prophase events through multiple meiotic HORMADs in C. elegans
title_sort conserved aaa atpase pch-2 distributes its regulation of meiotic prophase events through multiple meiotic hormads in c. elegans
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10132761/
https://www.ncbi.nlm.nih.gov/pubmed/37058535
http://dx.doi.org/10.1371/journal.pgen.1010708
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