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A natural histone H2A variant lacking the Bub1 phosphorylation site and regulated depletion of centromeric histone CENP-A foster evolvability in Candida albicans

Eukaryotes have evolved elaborate mechanisms to ensure that chromosomes segregate with high fidelity during mitosis and meiosis, and yet specific aneuploidies can be adaptive during environmental stress. Here, we identify a chromatin-based system required for inducible aneuploidy in a human pathogen...

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Autores principales: Brimacombe, Cedric A., Burke, Jordan E., Parsa, Jahan-Yar, Catania, Sandra, O’Meara, Teresa R., Witchley, Jessica N., Burrack, Laura S., Madhani, Hiten D., Noble, Suzanne M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6613695/
https://www.ncbi.nlm.nih.gov/pubmed/31226107
http://dx.doi.org/10.1371/journal.pbio.3000331
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author Brimacombe, Cedric A.
Burke, Jordan E.
Parsa, Jahan-Yar
Catania, Sandra
O’Meara, Teresa R.
Witchley, Jessica N.
Burrack, Laura S.
Madhani, Hiten D.
Noble, Suzanne M.
author_facet Brimacombe, Cedric A.
Burke, Jordan E.
Parsa, Jahan-Yar
Catania, Sandra
O’Meara, Teresa R.
Witchley, Jessica N.
Burrack, Laura S.
Madhani, Hiten D.
Noble, Suzanne M.
author_sort Brimacombe, Cedric A.
collection PubMed
description Eukaryotes have evolved elaborate mechanisms to ensure that chromosomes segregate with high fidelity during mitosis and meiosis, and yet specific aneuploidies can be adaptive during environmental stress. Here, we identify a chromatin-based system required for inducible aneuploidy in a human pathogen. Candida albicans utilizes chromosome missegregation to acquire tolerance to antifungal drugs and for nonmeiotic ploidy reduction after mating. We discovered that the ancestor of C. albicans and 2 related pathogens evolved a variant of histone 2A (H2A) that lacks the conserved phosphorylation site for kinetochore-associated Bub1 kinase, a key regulator of chromosome segregation. Using engineered strains, we show that the relative gene dosage of this variant versus canonical H2A controls the fidelity of chromosome segregation and the rate of acquisition of tolerance to antifungal drugs via aneuploidy. Furthermore, whole-genome chromatin precipitation analysis reveals that Centromere Protein A/ Centromeric Histone H3-like Protein (CENP-A/Cse4), a centromeric histone H3 variant that forms the platform of the eukaryotic kinetochore, is depleted from tetraploid-mating products relative to diploid parents and is virtually eliminated from cells exposed to aneuploidy-promoting cues. We conclude that genetically programmed and environmentally induced changes in chromatin can confer the capacity for enhanced evolvability via chromosome missegregation.
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spelling pubmed-66136952019-07-23 A natural histone H2A variant lacking the Bub1 phosphorylation site and regulated depletion of centromeric histone CENP-A foster evolvability in Candida albicans Brimacombe, Cedric A. Burke, Jordan E. Parsa, Jahan-Yar Catania, Sandra O’Meara, Teresa R. Witchley, Jessica N. Burrack, Laura S. Madhani, Hiten D. Noble, Suzanne M. PLoS Biol Short Reports Eukaryotes have evolved elaborate mechanisms to ensure that chromosomes segregate with high fidelity during mitosis and meiosis, and yet specific aneuploidies can be adaptive during environmental stress. Here, we identify a chromatin-based system required for inducible aneuploidy in a human pathogen. Candida albicans utilizes chromosome missegregation to acquire tolerance to antifungal drugs and for nonmeiotic ploidy reduction after mating. We discovered that the ancestor of C. albicans and 2 related pathogens evolved a variant of histone 2A (H2A) that lacks the conserved phosphorylation site for kinetochore-associated Bub1 kinase, a key regulator of chromosome segregation. Using engineered strains, we show that the relative gene dosage of this variant versus canonical H2A controls the fidelity of chromosome segregation and the rate of acquisition of tolerance to antifungal drugs via aneuploidy. Furthermore, whole-genome chromatin precipitation analysis reveals that Centromere Protein A/ Centromeric Histone H3-like Protein (CENP-A/Cse4), a centromeric histone H3 variant that forms the platform of the eukaryotic kinetochore, is depleted from tetraploid-mating products relative to diploid parents and is virtually eliminated from cells exposed to aneuploidy-promoting cues. We conclude that genetically programmed and environmentally induced changes in chromatin can confer the capacity for enhanced evolvability via chromosome missegregation. Public Library of Science 2019-06-21 /pmc/articles/PMC6613695/ /pubmed/31226107 http://dx.doi.org/10.1371/journal.pbio.3000331 Text en © 2019 Brimacombe 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 Short Reports
Brimacombe, Cedric A.
Burke, Jordan E.
Parsa, Jahan-Yar
Catania, Sandra
O’Meara, Teresa R.
Witchley, Jessica N.
Burrack, Laura S.
Madhani, Hiten D.
Noble, Suzanne M.
A natural histone H2A variant lacking the Bub1 phosphorylation site and regulated depletion of centromeric histone CENP-A foster evolvability in Candida albicans
title A natural histone H2A variant lacking the Bub1 phosphorylation site and regulated depletion of centromeric histone CENP-A foster evolvability in Candida albicans
title_full A natural histone H2A variant lacking the Bub1 phosphorylation site and regulated depletion of centromeric histone CENP-A foster evolvability in Candida albicans
title_fullStr A natural histone H2A variant lacking the Bub1 phosphorylation site and regulated depletion of centromeric histone CENP-A foster evolvability in Candida albicans
title_full_unstemmed A natural histone H2A variant lacking the Bub1 phosphorylation site and regulated depletion of centromeric histone CENP-A foster evolvability in Candida albicans
title_short A natural histone H2A variant lacking the Bub1 phosphorylation site and regulated depletion of centromeric histone CENP-A foster evolvability in Candida albicans
title_sort natural histone h2a variant lacking the bub1 phosphorylation site and regulated depletion of centromeric histone cenp-a foster evolvability in candida albicans
topic Short Reports
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6613695/
https://www.ncbi.nlm.nih.gov/pubmed/31226107
http://dx.doi.org/10.1371/journal.pbio.3000331
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