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Sequential Loading of Cohesin Subunits during the First Meiotic Prophase of Grasshoppers

The cohesin complexes play a key role in chromosome segregation during both mitosis and meiosis. They establish sister chromatid cohesion between duplicating DNA molecules during S-phase, but they also have an important role during postreplicative double-strand break repair in mitosis, as well as du...

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Autores principales: Valdeolmillos, Ana M, Viera, Alberto, Page, Jesús, Prieto, Ignacio, Santos, Juan L, Parra, María Teresa, Heck, Margarete M. S, Martínez-A, Carlos, Barbero, José L, Suja, José A, Rufas, Julio S
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1802827/
https://www.ncbi.nlm.nih.gov/pubmed/17319746
http://dx.doi.org/10.1371/journal.pgen.0030028
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author Valdeolmillos, Ana M
Viera, Alberto
Page, Jesús
Prieto, Ignacio
Santos, Juan L
Parra, María Teresa
Heck, Margarete M. S
Martínez-A, Carlos
Barbero, José L
Suja, José A
Rufas, Julio S
author_facet Valdeolmillos, Ana M
Viera, Alberto
Page, Jesús
Prieto, Ignacio
Santos, Juan L
Parra, María Teresa
Heck, Margarete M. S
Martínez-A, Carlos
Barbero, José L
Suja, José A
Rufas, Julio S
author_sort Valdeolmillos, Ana M
collection PubMed
description The cohesin complexes play a key role in chromosome segregation during both mitosis and meiosis. They establish sister chromatid cohesion between duplicating DNA molecules during S-phase, but they also have an important role during postreplicative double-strand break repair in mitosis, as well as during recombination between homologous chromosomes in meiosis. An additional function in meiosis is related to the sister kinetochore cohesion, so they can be pulled by microtubules to the same pole at anaphase I. Data about the dynamics of cohesin subunits during meiosis are scarce; therefore, it is of great interest to characterize how the formation of the cohesin complexes is achieved in order to understand the roles of the different subunits within them. We have investigated the spatio-temporal distribution of three different cohesin subunits in prophase I grasshopper spermatocytes. We found that structural maintenance of chromosome protein 3 (SMC3) appears as early as preleptotene, and its localization resembles the location of the unsynapsed axial elements, whereas radiation-sensitive mutant 21 (RAD21) (sister chromatid cohesion protein 1, SCC1) and stromal antigen protein 1 (SA1) (sister chromatid cohesion protein 3, SCC3) are not visualized until zygotene, since they are located in the synapsed regions of the bivalents. During pachytene, the distribution of the three cohesin subunits is very similar and all appear along the trajectories of the lateral elements of the autosomal synaptonemal complexes. However, whereas SMC3 also appears over the single and unsynapsed X chromosome, RAD21 and SA1 do not. We conclude that the loading of SMC3 and the non-SMC subunits, RAD21 and SA1, occurs in different steps throughout prophase I grasshopper meiosis. These results strongly suggest the participation of SMC3 in the initial cohesin axis formation as early as preleptotene, thus contributing to sister chromatid cohesion, with a later association of both RAD21 and SA1 subunits at zygotene to reinforce and stabilize the bivalent structure. Therefore, we speculate that more than one cohesin complex participates in the sister chromatid cohesion at prophase I.
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spelling pubmed-18028272007-02-22 Sequential Loading of Cohesin Subunits during the First Meiotic Prophase of Grasshoppers Valdeolmillos, Ana M Viera, Alberto Page, Jesús Prieto, Ignacio Santos, Juan L Parra, María Teresa Heck, Margarete M. S Martínez-A, Carlos Barbero, José L Suja, José A Rufas, Julio S PLoS Genet Research Article The cohesin complexes play a key role in chromosome segregation during both mitosis and meiosis. They establish sister chromatid cohesion between duplicating DNA molecules during S-phase, but they also have an important role during postreplicative double-strand break repair in mitosis, as well as during recombination between homologous chromosomes in meiosis. An additional function in meiosis is related to the sister kinetochore cohesion, so they can be pulled by microtubules to the same pole at anaphase I. Data about the dynamics of cohesin subunits during meiosis are scarce; therefore, it is of great interest to characterize how the formation of the cohesin complexes is achieved in order to understand the roles of the different subunits within them. We have investigated the spatio-temporal distribution of three different cohesin subunits in prophase I grasshopper spermatocytes. We found that structural maintenance of chromosome protein 3 (SMC3) appears as early as preleptotene, and its localization resembles the location of the unsynapsed axial elements, whereas radiation-sensitive mutant 21 (RAD21) (sister chromatid cohesion protein 1, SCC1) and stromal antigen protein 1 (SA1) (sister chromatid cohesion protein 3, SCC3) are not visualized until zygotene, since they are located in the synapsed regions of the bivalents. During pachytene, the distribution of the three cohesin subunits is very similar and all appear along the trajectories of the lateral elements of the autosomal synaptonemal complexes. However, whereas SMC3 also appears over the single and unsynapsed X chromosome, RAD21 and SA1 do not. We conclude that the loading of SMC3 and the non-SMC subunits, RAD21 and SA1, occurs in different steps throughout prophase I grasshopper meiosis. These results strongly suggest the participation of SMC3 in the initial cohesin axis formation as early as preleptotene, thus contributing to sister chromatid cohesion, with a later association of both RAD21 and SA1 subunits at zygotene to reinforce and stabilize the bivalent structure. Therefore, we speculate that more than one cohesin complex participates in the sister chromatid cohesion at prophase I. Public Library of Science 2007-02 2007-02-23 /pmc/articles/PMC1802827/ /pubmed/17319746 http://dx.doi.org/10.1371/journal.pgen.0030028 Text en © 2007 Valdeolmillos 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
Valdeolmillos, Ana M
Viera, Alberto
Page, Jesús
Prieto, Ignacio
Santos, Juan L
Parra, María Teresa
Heck, Margarete M. S
Martínez-A, Carlos
Barbero, José L
Suja, José A
Rufas, Julio S
Sequential Loading of Cohesin Subunits during the First Meiotic Prophase of Grasshoppers
title Sequential Loading of Cohesin Subunits during the First Meiotic Prophase of Grasshoppers
title_full Sequential Loading of Cohesin Subunits during the First Meiotic Prophase of Grasshoppers
title_fullStr Sequential Loading of Cohesin Subunits during the First Meiotic Prophase of Grasshoppers
title_full_unstemmed Sequential Loading of Cohesin Subunits during the First Meiotic Prophase of Grasshoppers
title_short Sequential Loading of Cohesin Subunits during the First Meiotic Prophase of Grasshoppers
title_sort sequential loading of cohesin subunits during the first meiotic prophase of grasshoppers
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1802827/
https://www.ncbi.nlm.nih.gov/pubmed/17319746
http://dx.doi.org/10.1371/journal.pgen.0030028
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