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Multiple Opposing Constraints Govern Chromosome Interactions during Meiosis

Homolog pairing and crossing over during meiosis I prophase is required for accurate chromosome segregation to form euploid gametes. The repair of Spo11-induced double-strand breaks (DSB) using a homologous chromosome template is a major driver of pairing in many species, including fungi, plants, an...

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Autores principales: Lui, Doris Y., Cahoon, Cori K., Burgess, Sean M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3547833/
https://www.ncbi.nlm.nih.gov/pubmed/23341780
http://dx.doi.org/10.1371/journal.pgen.1003197
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author Lui, Doris Y.
Cahoon, Cori K.
Burgess, Sean M.
author_facet Lui, Doris Y.
Cahoon, Cori K.
Burgess, Sean M.
author_sort Lui, Doris Y.
collection PubMed
description Homolog pairing and crossing over during meiosis I prophase is required for accurate chromosome segregation to form euploid gametes. The repair of Spo11-induced double-strand breaks (DSB) using a homologous chromosome template is a major driver of pairing in many species, including fungi, plants, and mammals. Inappropriate pairing and crossing over at ectopic loci can lead to chromosome rearrangements and aneuploidy. How (or if) inappropriate ectopic interactions are disrupted in favor of allelic interactions is not clear. Here we used an in vivo “collision” assay in budding yeast to test the contributions of cohesion and the organization and motion of chromosomes in the nucleus on promoting or antagonizing interactions between allelic and ectopic loci at interstitial chromosome sites. We found that deletion of the cohesin subunit Rec8, but not other chromosome axis proteins (e.g. Red1, Hop1, or Mek1), caused an increase in homolog-nonspecific chromosome interaction, even in the absence of Spo11. This effect was partially suppressed by expression of the mitotic cohesin paralog Scc1/Mdc1, implicating Rec8's role in cohesion rather than axis integrity in preventing nonspecific chromosome interactions. Disruption of telomere-led motion by treating cells with the actin polymerization inhibitor Latrunculin B (Lat B) elevated nonspecific collisions in rec8Δ spo11Δ. Next, using a visual homolog-pairing assay, we found that the delay in homolog pairing in mutants defective for telomere-led chromosome motion (ndj1Δ or csm4Δ) is enhanced in Lat B–treated cells, implicating actin in more than one process promoting homolog juxtaposition. We suggest that multiple, independent contributions of actin, cohesin, and telomere function are integrated to promote stable homolog-specific interactions and to destabilize weak nonspecific interactions by modulating the elastic spring-like properties of chromosomes.
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spelling pubmed-35478332013-01-22 Multiple Opposing Constraints Govern Chromosome Interactions during Meiosis Lui, Doris Y. Cahoon, Cori K. Burgess, Sean M. PLoS Genet Research Article Homolog pairing and crossing over during meiosis I prophase is required for accurate chromosome segregation to form euploid gametes. The repair of Spo11-induced double-strand breaks (DSB) using a homologous chromosome template is a major driver of pairing in many species, including fungi, plants, and mammals. Inappropriate pairing and crossing over at ectopic loci can lead to chromosome rearrangements and aneuploidy. How (or if) inappropriate ectopic interactions are disrupted in favor of allelic interactions is not clear. Here we used an in vivo “collision” assay in budding yeast to test the contributions of cohesion and the organization and motion of chromosomes in the nucleus on promoting or antagonizing interactions between allelic and ectopic loci at interstitial chromosome sites. We found that deletion of the cohesin subunit Rec8, but not other chromosome axis proteins (e.g. Red1, Hop1, or Mek1), caused an increase in homolog-nonspecific chromosome interaction, even in the absence of Spo11. This effect was partially suppressed by expression of the mitotic cohesin paralog Scc1/Mdc1, implicating Rec8's role in cohesion rather than axis integrity in preventing nonspecific chromosome interactions. Disruption of telomere-led motion by treating cells with the actin polymerization inhibitor Latrunculin B (Lat B) elevated nonspecific collisions in rec8Δ spo11Δ. Next, using a visual homolog-pairing assay, we found that the delay in homolog pairing in mutants defective for telomere-led chromosome motion (ndj1Δ or csm4Δ) is enhanced in Lat B–treated cells, implicating actin in more than one process promoting homolog juxtaposition. We suggest that multiple, independent contributions of actin, cohesin, and telomere function are integrated to promote stable homolog-specific interactions and to destabilize weak nonspecific interactions by modulating the elastic spring-like properties of chromosomes. Public Library of Science 2013-01-17 /pmc/articles/PMC3547833/ /pubmed/23341780 http://dx.doi.org/10.1371/journal.pgen.1003197 Text en © 2013 Lui 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Lui, Doris Y.
Cahoon, Cori K.
Burgess, Sean M.
Multiple Opposing Constraints Govern Chromosome Interactions during Meiosis
title Multiple Opposing Constraints Govern Chromosome Interactions during Meiosis
title_full Multiple Opposing Constraints Govern Chromosome Interactions during Meiosis
title_fullStr Multiple Opposing Constraints Govern Chromosome Interactions during Meiosis
title_full_unstemmed Multiple Opposing Constraints Govern Chromosome Interactions during Meiosis
title_short Multiple Opposing Constraints Govern Chromosome Interactions during Meiosis
title_sort multiple opposing constraints govern chromosome interactions during meiosis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3547833/
https://www.ncbi.nlm.nih.gov/pubmed/23341780
http://dx.doi.org/10.1371/journal.pgen.1003197
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