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Neocentromeres Provide Chromosome Segregation Accuracy and Centromere Clustering to Multiple Loci along a Candida albicans Chromosome

Assembly of kinetochore complexes, involving greater than one hundred proteins, is essential for chromosome segregation and genome stability. Neocentromeres, or new centromeres, occur when kinetochores assemble de novo, at DNA loci not previously associated with kinetochore proteins, and they restor...

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Autores principales: Burrack, Laura S., Hutton, Hannah F., Matter, Kathleen J., Clancey, Shelly Applen, Liachko, Ivan, Plemmons, Alexandra E., Saha, Amrita, Power, Erica A., Turman, Breanna, Thevandavakkam, Mathuravani Aaditiyaa, Ay, Ferhat, Dunham, Maitreya J., Berman, Judith
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5035033/
https://www.ncbi.nlm.nih.gov/pubmed/27662467
http://dx.doi.org/10.1371/journal.pgen.1006317
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author Burrack, Laura S.
Hutton, Hannah F.
Matter, Kathleen J.
Clancey, Shelly Applen
Liachko, Ivan
Plemmons, Alexandra E.
Saha, Amrita
Power, Erica A.
Turman, Breanna
Thevandavakkam, Mathuravani Aaditiyaa
Ay, Ferhat
Dunham, Maitreya J.
Berman, Judith
author_facet Burrack, Laura S.
Hutton, Hannah F.
Matter, Kathleen J.
Clancey, Shelly Applen
Liachko, Ivan
Plemmons, Alexandra E.
Saha, Amrita
Power, Erica A.
Turman, Breanna
Thevandavakkam, Mathuravani Aaditiyaa
Ay, Ferhat
Dunham, Maitreya J.
Berman, Judith
author_sort Burrack, Laura S.
collection PubMed
description Assembly of kinetochore complexes, involving greater than one hundred proteins, is essential for chromosome segregation and genome stability. Neocentromeres, or new centromeres, occur when kinetochores assemble de novo, at DNA loci not previously associated with kinetochore proteins, and they restore chromosome segregation to chromosomes lacking a functional centromere. Neocentromeres have been observed in a number of diseases and may play an evolutionary role in adaptation or speciation. However, the consequences of neocentromere formation on chromosome missegregation rates, gene expression, and three-dimensional (3D) nuclear structure are not well understood. Here, we used Candida albicans, an organism with small, epigenetically-inherited centromeres, as a model system to study the functions of twenty different neocentromere loci along a single chromosome, chromosome 5. Comparison of neocentromere properties relative to native centromere functions revealed that all twenty neocentromeres mediated chromosome segregation, albeit to different degrees. Some neocentromeres also caused reduced levels of transcription from genes found within the neocentromere region. Furthermore, like native centromeres, neocentromeres clustered in 3D with active/functional centromeres, indicating that formation of a new centromere mediates the reorganization of 3D nuclear architecture. This demonstrates that centromere clustering depends on epigenetically defined function and not on the primary DNA sequence, and that neocentromere function is independent of its distance from the native centromere position. Together, the results show that a neocentromere can form at many loci along a chromosome and can support the assembly of a functional kinetochore that exhibits native centromere functions including chromosome segregation accuracy and centromere clustering within the nucleus.
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spelling pubmed-50350332016-10-10 Neocentromeres Provide Chromosome Segregation Accuracy and Centromere Clustering to Multiple Loci along a Candida albicans Chromosome Burrack, Laura S. Hutton, Hannah F. Matter, Kathleen J. Clancey, Shelly Applen Liachko, Ivan Plemmons, Alexandra E. Saha, Amrita Power, Erica A. Turman, Breanna Thevandavakkam, Mathuravani Aaditiyaa Ay, Ferhat Dunham, Maitreya J. Berman, Judith PLoS Genet Research Article Assembly of kinetochore complexes, involving greater than one hundred proteins, is essential for chromosome segregation and genome stability. Neocentromeres, or new centromeres, occur when kinetochores assemble de novo, at DNA loci not previously associated with kinetochore proteins, and they restore chromosome segregation to chromosomes lacking a functional centromere. Neocentromeres have been observed in a number of diseases and may play an evolutionary role in adaptation or speciation. However, the consequences of neocentromere formation on chromosome missegregation rates, gene expression, and three-dimensional (3D) nuclear structure are not well understood. Here, we used Candida albicans, an organism with small, epigenetically-inherited centromeres, as a model system to study the functions of twenty different neocentromere loci along a single chromosome, chromosome 5. Comparison of neocentromere properties relative to native centromere functions revealed that all twenty neocentromeres mediated chromosome segregation, albeit to different degrees. Some neocentromeres also caused reduced levels of transcription from genes found within the neocentromere region. Furthermore, like native centromeres, neocentromeres clustered in 3D with active/functional centromeres, indicating that formation of a new centromere mediates the reorganization of 3D nuclear architecture. This demonstrates that centromere clustering depends on epigenetically defined function and not on the primary DNA sequence, and that neocentromere function is independent of its distance from the native centromere position. Together, the results show that a neocentromere can form at many loci along a chromosome and can support the assembly of a functional kinetochore that exhibits native centromere functions including chromosome segregation accuracy and centromere clustering within the nucleus. Public Library of Science 2016-09-23 /pmc/articles/PMC5035033/ /pubmed/27662467 http://dx.doi.org/10.1371/journal.pgen.1006317 Text en © 2016 Burrack 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
Burrack, Laura S.
Hutton, Hannah F.
Matter, Kathleen J.
Clancey, Shelly Applen
Liachko, Ivan
Plemmons, Alexandra E.
Saha, Amrita
Power, Erica A.
Turman, Breanna
Thevandavakkam, Mathuravani Aaditiyaa
Ay, Ferhat
Dunham, Maitreya J.
Berman, Judith
Neocentromeres Provide Chromosome Segregation Accuracy and Centromere Clustering to Multiple Loci along a Candida albicans Chromosome
title Neocentromeres Provide Chromosome Segregation Accuracy and Centromere Clustering to Multiple Loci along a Candida albicans Chromosome
title_full Neocentromeres Provide Chromosome Segregation Accuracy and Centromere Clustering to Multiple Loci along a Candida albicans Chromosome
title_fullStr Neocentromeres Provide Chromosome Segregation Accuracy and Centromere Clustering to Multiple Loci along a Candida albicans Chromosome
title_full_unstemmed Neocentromeres Provide Chromosome Segregation Accuracy and Centromere Clustering to Multiple Loci along a Candida albicans Chromosome
title_short Neocentromeres Provide Chromosome Segregation Accuracy and Centromere Clustering to Multiple Loci along a Candida albicans Chromosome
title_sort neocentromeres provide chromosome segregation accuracy and centromere clustering to multiple loci along a candida albicans chromosome
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5035033/
https://www.ncbi.nlm.nih.gov/pubmed/27662467
http://dx.doi.org/10.1371/journal.pgen.1006317
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