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Distinct organization and regulation of the outer kinetochore KMN network downstream of CENP-C and CENP-T

The kinetochore provides a vital connection between chromosomes and spindle microtubules [1, 2]. Defining the molecular architecture of the core kinetochore components is critical for understanding the mechanisms by which the kinetochore directs chromosome segregation. The KNL1/Mis12 complex/Ndc80 c...

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Autores principales: Rago, Florencia, Gascoigne, Karen E., Cheeseman, Iain M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4348146/
https://www.ncbi.nlm.nih.gov/pubmed/25660545
http://dx.doi.org/10.1016/j.cub.2015.01.059
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author Rago, Florencia
Gascoigne, Karen E.
Cheeseman, Iain M.
author_facet Rago, Florencia
Gascoigne, Karen E.
Cheeseman, Iain M.
author_sort Rago, Florencia
collection PubMed
description The kinetochore provides a vital connection between chromosomes and spindle microtubules [1, 2]. Defining the molecular architecture of the core kinetochore components is critical for understanding the mechanisms by which the kinetochore directs chromosome segregation. The KNL1/Mis12 complex/Ndc80 complex (KMN) network acts as the primary microtubule binding interface at kinetochores [3], and provides a platform to recruit regulatory proteins [4]. Recent work found that the inner kinetochore components CENP-C and CENP-T act in parallel to recruit the KMN network to kinetochores [5-8]. However, due to the presence of these dual pathways, it has not been possible to distinguish differences in the nature of kinetochore assembly downstream of CENP-C or CENP-T. Here, we separated these pathways by targeting CENP-C and CENP-T independently to an ectopic chromosomal locus in human cells. Our work reveals that the organization of the KMN network components downstream of CENP-C and CENP-T is distinct. CENP-C recruits the Ndc80 complex through its interactions with KNL1 and the Mis12 complex. In contrast, CENP-T directly interacts with Ndc80, which in turn promotes KNL1/Mis12 complex recruitment through a separate region on CENP-T, resulting in functional relationships for KMN network localization that are inverted relative to the CENP-C pathway. We also find that distinct regulatory paradigms control the assembly of these pathways, with Aurora B kinase promoting KMN network recruitment to CENP-C, and cyclin-dependent kinase (CDK) regulating KMN network recruitment to CENP-T. This work reveals unexpected complexity for the architecture and regulation of the core components of the kinetochore-microtubule interface.
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spelling pubmed-43481462016-03-02 Distinct organization and regulation of the outer kinetochore KMN network downstream of CENP-C and CENP-T Rago, Florencia Gascoigne, Karen E. Cheeseman, Iain M. Curr Biol Article The kinetochore provides a vital connection between chromosomes and spindle microtubules [1, 2]. Defining the molecular architecture of the core kinetochore components is critical for understanding the mechanisms by which the kinetochore directs chromosome segregation. The KNL1/Mis12 complex/Ndc80 complex (KMN) network acts as the primary microtubule binding interface at kinetochores [3], and provides a platform to recruit regulatory proteins [4]. Recent work found that the inner kinetochore components CENP-C and CENP-T act in parallel to recruit the KMN network to kinetochores [5-8]. However, due to the presence of these dual pathways, it has not been possible to distinguish differences in the nature of kinetochore assembly downstream of CENP-C or CENP-T. Here, we separated these pathways by targeting CENP-C and CENP-T independently to an ectopic chromosomal locus in human cells. Our work reveals that the organization of the KMN network components downstream of CENP-C and CENP-T is distinct. CENP-C recruits the Ndc80 complex through its interactions with KNL1 and the Mis12 complex. In contrast, CENP-T directly interacts with Ndc80, which in turn promotes KNL1/Mis12 complex recruitment through a separate region on CENP-T, resulting in functional relationships for KMN network localization that are inverted relative to the CENP-C pathway. We also find that distinct regulatory paradigms control the assembly of these pathways, with Aurora B kinase promoting KMN network recruitment to CENP-C, and cyclin-dependent kinase (CDK) regulating KMN network recruitment to CENP-T. This work reveals unexpected complexity for the architecture and regulation of the core components of the kinetochore-microtubule interface. 2015-02-05 2015-03-02 /pmc/articles/PMC4348146/ /pubmed/25660545 http://dx.doi.org/10.1016/j.cub.2015.01.059 Text en © 2015 Published by Elsevier Ltd. http://creativecommons.org/licenses/by-nc/4.0/ This manuscript version is made available under the CC BY-NC-ND 4.0 license.
spellingShingle Article
Rago, Florencia
Gascoigne, Karen E.
Cheeseman, Iain M.
Distinct organization and regulation of the outer kinetochore KMN network downstream of CENP-C and CENP-T
title Distinct organization and regulation of the outer kinetochore KMN network downstream of CENP-C and CENP-T
title_full Distinct organization and regulation of the outer kinetochore KMN network downstream of CENP-C and CENP-T
title_fullStr Distinct organization and regulation of the outer kinetochore KMN network downstream of CENP-C and CENP-T
title_full_unstemmed Distinct organization and regulation of the outer kinetochore KMN network downstream of CENP-C and CENP-T
title_short Distinct organization and regulation of the outer kinetochore KMN network downstream of CENP-C and CENP-T
title_sort distinct organization and regulation of the outer kinetochore kmn network downstream of cenp-c and cenp-t
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4348146/
https://www.ncbi.nlm.nih.gov/pubmed/25660545
http://dx.doi.org/10.1016/j.cub.2015.01.059
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