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An SMC-like protein binds and regulates Caenorhabditis elegans condensins

Structural Maintenance of Chromosomes (SMC) family proteins participate in multisubunit complexes that govern chromosome structure and dynamics. SMC-containing condensin complexes create chromosome topologies essential for mitosis/meiosis, gene expression, recombination, and repair. Many eukaryotes...

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Autores principales: Chao, Lucy Fang-I, Singh, Meha, Thompson, James, Yates, John R., Hagstrom, Kirsten A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5373644/
https://www.ncbi.nlm.nih.gov/pubmed/28301465
http://dx.doi.org/10.1371/journal.pgen.1006614
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author Chao, Lucy Fang-I
Singh, Meha
Thompson, James
Yates, John R.
Hagstrom, Kirsten A.
author_facet Chao, Lucy Fang-I
Singh, Meha
Thompson, James
Yates, John R.
Hagstrom, Kirsten A.
author_sort Chao, Lucy Fang-I
collection PubMed
description Structural Maintenance of Chromosomes (SMC) family proteins participate in multisubunit complexes that govern chromosome structure and dynamics. SMC-containing condensin complexes create chromosome topologies essential for mitosis/meiosis, gene expression, recombination, and repair. Many eukaryotes have two condensin complexes (I and II); C. elegans has three (I, II, and the X-chromosome specialized condensin I(DC)) and their regulation is poorly understood. Here we identify a novel SMC-like protein, SMCL-1, that binds to C. elegans condensin SMC subunits, and modulates condensin functions. Consistent with a possible role as a negative regulator, loss of SMCL-1 partially rescued the lethal and sterile phenotypes of a hypomorphic condensin mutant, while over-expression of SMCL-1 caused lethality, chromosome mis-segregation, and disruption of condensin I(DC) localization on X chromosomes. Unlike canonical SMC proteins, SMCL-1 lacks hinge and coil domains, and its ATPase domain lacks conserved amino acids required for ATP hydrolysis, leading to the speculation that it may inhibit condensin ATPase activity. SMCL-1 homologs are apparent only in the subset of Caenorhabditis species in which the condensin I and II subunit SMC-4 duplicated to create the condensin I(DC)- specific subunit DPY-27, suggesting that SMCL-1 helps this lineage cope with the regulatory challenges imposed by evolution of a third condensin complex. Our findings uncover a new regulator of condensins and highlight how the duplication and divergence of SMC complex components in various lineages has created new proteins with diverse functions in chromosome dynamics.
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spelling pubmed-53736442017-04-06 An SMC-like protein binds and regulates Caenorhabditis elegans condensins Chao, Lucy Fang-I Singh, Meha Thompson, James Yates, John R. Hagstrom, Kirsten A. PLoS Genet Research Article Structural Maintenance of Chromosomes (SMC) family proteins participate in multisubunit complexes that govern chromosome structure and dynamics. SMC-containing condensin complexes create chromosome topologies essential for mitosis/meiosis, gene expression, recombination, and repair. Many eukaryotes have two condensin complexes (I and II); C. elegans has three (I, II, and the X-chromosome specialized condensin I(DC)) and their regulation is poorly understood. Here we identify a novel SMC-like protein, SMCL-1, that binds to C. elegans condensin SMC subunits, and modulates condensin functions. Consistent with a possible role as a negative regulator, loss of SMCL-1 partially rescued the lethal and sterile phenotypes of a hypomorphic condensin mutant, while over-expression of SMCL-1 caused lethality, chromosome mis-segregation, and disruption of condensin I(DC) localization on X chromosomes. Unlike canonical SMC proteins, SMCL-1 lacks hinge and coil domains, and its ATPase domain lacks conserved amino acids required for ATP hydrolysis, leading to the speculation that it may inhibit condensin ATPase activity. SMCL-1 homologs are apparent only in the subset of Caenorhabditis species in which the condensin I and II subunit SMC-4 duplicated to create the condensin I(DC)- specific subunit DPY-27, suggesting that SMCL-1 helps this lineage cope with the regulatory challenges imposed by evolution of a third condensin complex. Our findings uncover a new regulator of condensins and highlight how the duplication and divergence of SMC complex components in various lineages has created new proteins with diverse functions in chromosome dynamics. Public Library of Science 2017-03-16 /pmc/articles/PMC5373644/ /pubmed/28301465 http://dx.doi.org/10.1371/journal.pgen.1006614 Text en © 2017 Chao 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 (http://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
Chao, Lucy Fang-I
Singh, Meha
Thompson, James
Yates, John R.
Hagstrom, Kirsten A.
An SMC-like protein binds and regulates Caenorhabditis elegans condensins
title An SMC-like protein binds and regulates Caenorhabditis elegans condensins
title_full An SMC-like protein binds and regulates Caenorhabditis elegans condensins
title_fullStr An SMC-like protein binds and regulates Caenorhabditis elegans condensins
title_full_unstemmed An SMC-like protein binds and regulates Caenorhabditis elegans condensins
title_short An SMC-like protein binds and regulates Caenorhabditis elegans condensins
title_sort smc-like protein binds and regulates caenorhabditis elegans condensins
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5373644/
https://www.ncbi.nlm.nih.gov/pubmed/28301465
http://dx.doi.org/10.1371/journal.pgen.1006614
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