Cargando…
Meiosis-Specific Cohesin Component, Stag3 Is Essential for Maintaining Centromere Chromatid Cohesion, and Required for DNA Repair and Synapsis between Homologous Chromosomes
Cohesins are important for chromosome structure and chromosome segregation during mitosis and meiosis. Cohesins are composed of two structural maintenance of chromosomes (SMC1-SMC3) proteins that form a V-shaped heterodimer structure, which is bridged by a α-kleisin protein and a stromal antigen (ST...
Autores principales: | , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2014
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4081007/ https://www.ncbi.nlm.nih.gov/pubmed/24992337 http://dx.doi.org/10.1371/journal.pgen.1004413 |
_version_ | 1782324049101193216 |
---|---|
author | Hopkins, Jessica Hwang, Grace Jacob, Justin Sapp, Nicklas Bedigian, Rick Oka, Kazuhiro Overbeek, Paul Murray, Steve Jordan, Philip W. |
author_facet | Hopkins, Jessica Hwang, Grace Jacob, Justin Sapp, Nicklas Bedigian, Rick Oka, Kazuhiro Overbeek, Paul Murray, Steve Jordan, Philip W. |
author_sort | Hopkins, Jessica |
collection | PubMed |
description | Cohesins are important for chromosome structure and chromosome segregation during mitosis and meiosis. Cohesins are composed of two structural maintenance of chromosomes (SMC1-SMC3) proteins that form a V-shaped heterodimer structure, which is bridged by a α-kleisin protein and a stromal antigen (STAG) protein. Previous studies in mouse have shown that there is one SMC1 protein (SMC1β), two α-kleisins (RAD21L and REC8) and one STAG protein (STAG3) that are meiosis-specific. During meiosis, homologous chromosomes must recombine with one another in the context of a tripartite structure known as the synaptonemal complex (SC). From interaction studies, it has been shown that there are at least four meiosis-specific forms of cohesin, which together with the mitotic cohesin complex, are lateral components of the SC. STAG3 is the only meiosis-specific subunit that is represented within all four meiosis-specific cohesin complexes. In Stag3 mutant germ cells, the protein level of other meiosis-specific cohesin subunits (SMC1β, RAD21L and REC8) is reduced, and their localization to chromosome axes is disrupted. In contrast, the mitotic cohesin complex remains intact and localizes robustly to the meiotic chromosome axes. The instability of meiosis-specific cohesins observed in Stag3 mutants results in aberrant DNA repair processes, and disruption of synapsis between homologous chromosomes. Furthermore, mutation of Stag3 results in perturbation of pericentromeric heterochromatin clustering, and disruption of centromere cohesion between sister chromatids during meiotic prophase. These defects result in early prophase I arrest and apoptosis in both male and female germ cells. The meiotic defects observed in Stag3 mutants are more severe when compared to single mutants for Smc1β, Rec8 and Rad21l, however they are not as severe as the Rec8, Rad21l double mutants. Taken together, our study demonstrates that STAG3 is required for the stability of all meiosis-specific cohesin complexes. Furthermore, our data suggests that STAG3 is required for structural changes of chromosomes that mediate chromosome pairing and synapsis, DNA repair and progression of meiosis. |
format | Online Article Text |
id | pubmed-4081007 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-40810072014-07-14 Meiosis-Specific Cohesin Component, Stag3 Is Essential for Maintaining Centromere Chromatid Cohesion, and Required for DNA Repair and Synapsis between Homologous Chromosomes Hopkins, Jessica Hwang, Grace Jacob, Justin Sapp, Nicklas Bedigian, Rick Oka, Kazuhiro Overbeek, Paul Murray, Steve Jordan, Philip W. PLoS Genet Research Article Cohesins are important for chromosome structure and chromosome segregation during mitosis and meiosis. Cohesins are composed of two structural maintenance of chromosomes (SMC1-SMC3) proteins that form a V-shaped heterodimer structure, which is bridged by a α-kleisin protein and a stromal antigen (STAG) protein. Previous studies in mouse have shown that there is one SMC1 protein (SMC1β), two α-kleisins (RAD21L and REC8) and one STAG protein (STAG3) that are meiosis-specific. During meiosis, homologous chromosomes must recombine with one another in the context of a tripartite structure known as the synaptonemal complex (SC). From interaction studies, it has been shown that there are at least four meiosis-specific forms of cohesin, which together with the mitotic cohesin complex, are lateral components of the SC. STAG3 is the only meiosis-specific subunit that is represented within all four meiosis-specific cohesin complexes. In Stag3 mutant germ cells, the protein level of other meiosis-specific cohesin subunits (SMC1β, RAD21L and REC8) is reduced, and their localization to chromosome axes is disrupted. In contrast, the mitotic cohesin complex remains intact and localizes robustly to the meiotic chromosome axes. The instability of meiosis-specific cohesins observed in Stag3 mutants results in aberrant DNA repair processes, and disruption of synapsis between homologous chromosomes. Furthermore, mutation of Stag3 results in perturbation of pericentromeric heterochromatin clustering, and disruption of centromere cohesion between sister chromatids during meiotic prophase. These defects result in early prophase I arrest and apoptosis in both male and female germ cells. The meiotic defects observed in Stag3 mutants are more severe when compared to single mutants for Smc1β, Rec8 and Rad21l, however they are not as severe as the Rec8, Rad21l double mutants. Taken together, our study demonstrates that STAG3 is required for the stability of all meiosis-specific cohesin complexes. Furthermore, our data suggests that STAG3 is required for structural changes of chromosomes that mediate chromosome pairing and synapsis, DNA repair and progression of meiosis. Public Library of Science 2014-07-03 /pmc/articles/PMC4081007/ /pubmed/24992337 http://dx.doi.org/10.1371/journal.pgen.1004413 Text en © 2014 Hopkins 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 Hopkins, Jessica Hwang, Grace Jacob, Justin Sapp, Nicklas Bedigian, Rick Oka, Kazuhiro Overbeek, Paul Murray, Steve Jordan, Philip W. Meiosis-Specific Cohesin Component, Stag3 Is Essential for Maintaining Centromere Chromatid Cohesion, and Required for DNA Repair and Synapsis between Homologous Chromosomes |
title | Meiosis-Specific Cohesin Component, Stag3 Is Essential for Maintaining Centromere Chromatid Cohesion, and Required for DNA Repair and Synapsis between Homologous Chromosomes |
title_full | Meiosis-Specific Cohesin Component, Stag3 Is Essential for Maintaining Centromere Chromatid Cohesion, and Required for DNA Repair and Synapsis between Homologous Chromosomes |
title_fullStr | Meiosis-Specific Cohesin Component, Stag3 Is Essential for Maintaining Centromere Chromatid Cohesion, and Required for DNA Repair and Synapsis between Homologous Chromosomes |
title_full_unstemmed | Meiosis-Specific Cohesin Component, Stag3 Is Essential for Maintaining Centromere Chromatid Cohesion, and Required for DNA Repair and Synapsis between Homologous Chromosomes |
title_short | Meiosis-Specific Cohesin Component, Stag3 Is Essential for Maintaining Centromere Chromatid Cohesion, and Required for DNA Repair and Synapsis between Homologous Chromosomes |
title_sort | meiosis-specific cohesin component, stag3 is essential for maintaining centromere chromatid cohesion, and required for dna repair and synapsis between homologous chromosomes |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4081007/ https://www.ncbi.nlm.nih.gov/pubmed/24992337 http://dx.doi.org/10.1371/journal.pgen.1004413 |
work_keys_str_mv | AT hopkinsjessica meiosisspecificcohesincomponentstag3isessentialformaintainingcentromerechromatidcohesionandrequiredfordnarepairandsynapsisbetweenhomologouschromosomes AT hwanggrace meiosisspecificcohesincomponentstag3isessentialformaintainingcentromerechromatidcohesionandrequiredfordnarepairandsynapsisbetweenhomologouschromosomes AT jacobjustin meiosisspecificcohesincomponentstag3isessentialformaintainingcentromerechromatidcohesionandrequiredfordnarepairandsynapsisbetweenhomologouschromosomes AT sappnicklas meiosisspecificcohesincomponentstag3isessentialformaintainingcentromerechromatidcohesionandrequiredfordnarepairandsynapsisbetweenhomologouschromosomes AT bedigianrick meiosisspecificcohesincomponentstag3isessentialformaintainingcentromerechromatidcohesionandrequiredfordnarepairandsynapsisbetweenhomologouschromosomes AT okakazuhiro meiosisspecificcohesincomponentstag3isessentialformaintainingcentromerechromatidcohesionandrequiredfordnarepairandsynapsisbetweenhomologouschromosomes AT overbeekpaul meiosisspecificcohesincomponentstag3isessentialformaintainingcentromerechromatidcohesionandrequiredfordnarepairandsynapsisbetweenhomologouschromosomes AT murraysteve meiosisspecificcohesincomponentstag3isessentialformaintainingcentromerechromatidcohesionandrequiredfordnarepairandsynapsisbetweenhomologouschromosomes AT jordanphilipw meiosisspecificcohesincomponentstag3isessentialformaintainingcentromerechromatidcohesionandrequiredfordnarepairandsynapsisbetweenhomologouschromosomes |