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Step-Wise Assembly, Maturation and Dynamic Behavior of the Human CENP-P/O/R/Q/U Kinetochore Sub-Complex

Kinetochores are multi-protein megadalton assemblies that are required for attachment of microtubules to centromeres and, in turn, the segregation of chromosomes in mitosis. Kinetochore assembly is a cell cycle regulated multi-step process. The initial step occurs during interphase and involves load...

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Autores principales: Eskat, Anja, Deng, Wen, Hofmeister, Antje, Rudolphi, Sven, Emmerth, Stephan, Hellwig, Daniela, Ulbricht, Tobias, Döring, Volker, Bancroft, James M., McAinsh, Andrew D., Cardoso, M. Cristina, Meraldi, Patrick, Hoischen, Christian, Leonhardt, Heinrich, Diekmann, Stephan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3445539/
https://www.ncbi.nlm.nih.gov/pubmed/23028590
http://dx.doi.org/10.1371/journal.pone.0044717
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author Eskat, Anja
Deng, Wen
Hofmeister, Antje
Rudolphi, Sven
Emmerth, Stephan
Hellwig, Daniela
Ulbricht, Tobias
Döring, Volker
Bancroft, James M.
McAinsh, Andrew D.
Cardoso, M. Cristina
Meraldi, Patrick
Hoischen, Christian
Leonhardt, Heinrich
Diekmann, Stephan
author_facet Eskat, Anja
Deng, Wen
Hofmeister, Antje
Rudolphi, Sven
Emmerth, Stephan
Hellwig, Daniela
Ulbricht, Tobias
Döring, Volker
Bancroft, James M.
McAinsh, Andrew D.
Cardoso, M. Cristina
Meraldi, Patrick
Hoischen, Christian
Leonhardt, Heinrich
Diekmann, Stephan
author_sort Eskat, Anja
collection PubMed
description Kinetochores are multi-protein megadalton assemblies that are required for attachment of microtubules to centromeres and, in turn, the segregation of chromosomes in mitosis. Kinetochore assembly is a cell cycle regulated multi-step process. The initial step occurs during interphase and involves loading of the 15-subunit constitutive centromere associated complex (CCAN), which contains a 5-subunit (CENP-P/O/R/Q/U) sub-complex. Here we show using a fluorescent three-hybrid (F3H) assay and fluorescence resonance energy transfer (FRET) in living mammalian cells that CENP-P/O/R/Q/U subunits exist in a tightly packed arrangement that involves multifold protein-protein interactions. This sub-complex is, however, not pre-assembled in the cytoplasm, but rather assembled on kinetochores through the step-wise recruitment of CENP-O/P heterodimers and the CENP-P, -O, -R, -Q and -U single protein units. SNAP-tag experiments and immuno-staining indicate that these loading events occur during S-phase in a manner similar to the nucleosome binding components of the CCAN, CENP-T/W/N. Furthermore, CENP-P/O/R/Q/U binding to the CCAN is largely mediated through interactions with the CENP-N binding protein CENP-L as well as CENP-K. Once assembled, CENP-P/O/R/Q/U exchanges slowly with the free nucleoplasmic pool indicating a low off-rate for individual CENP-P/O/R/Q/U subunits. Surprisingly, we then find that during late S-phase, following the kinetochore-binding step, both CENP-Q and -U but not -R undergo oligomerization. We propose that CENP-P/O/R/Q/U self-assembles on kinetochores with varying stoichiometry and undergoes a pre-mitotic maturation step that could be important for kinetochores switching into the correct conformation necessary for microtubule-attachment.
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spelling pubmed-34455392012-10-01 Step-Wise Assembly, Maturation and Dynamic Behavior of the Human CENP-P/O/R/Q/U Kinetochore Sub-Complex Eskat, Anja Deng, Wen Hofmeister, Antje Rudolphi, Sven Emmerth, Stephan Hellwig, Daniela Ulbricht, Tobias Döring, Volker Bancroft, James M. McAinsh, Andrew D. Cardoso, M. Cristina Meraldi, Patrick Hoischen, Christian Leonhardt, Heinrich Diekmann, Stephan PLoS One Research Article Kinetochores are multi-protein megadalton assemblies that are required for attachment of microtubules to centromeres and, in turn, the segregation of chromosomes in mitosis. Kinetochore assembly is a cell cycle regulated multi-step process. The initial step occurs during interphase and involves loading of the 15-subunit constitutive centromere associated complex (CCAN), which contains a 5-subunit (CENP-P/O/R/Q/U) sub-complex. Here we show using a fluorescent three-hybrid (F3H) assay and fluorescence resonance energy transfer (FRET) in living mammalian cells that CENP-P/O/R/Q/U subunits exist in a tightly packed arrangement that involves multifold protein-protein interactions. This sub-complex is, however, not pre-assembled in the cytoplasm, but rather assembled on kinetochores through the step-wise recruitment of CENP-O/P heterodimers and the CENP-P, -O, -R, -Q and -U single protein units. SNAP-tag experiments and immuno-staining indicate that these loading events occur during S-phase in a manner similar to the nucleosome binding components of the CCAN, CENP-T/W/N. Furthermore, CENP-P/O/R/Q/U binding to the CCAN is largely mediated through interactions with the CENP-N binding protein CENP-L as well as CENP-K. Once assembled, CENP-P/O/R/Q/U exchanges slowly with the free nucleoplasmic pool indicating a low off-rate for individual CENP-P/O/R/Q/U subunits. Surprisingly, we then find that during late S-phase, following the kinetochore-binding step, both CENP-Q and -U but not -R undergo oligomerization. We propose that CENP-P/O/R/Q/U self-assembles on kinetochores with varying stoichiometry and undergoes a pre-mitotic maturation step that could be important for kinetochores switching into the correct conformation necessary for microtubule-attachment. Public Library of Science 2012-09-18 /pmc/articles/PMC3445539/ /pubmed/23028590 http://dx.doi.org/10.1371/journal.pone.0044717 Text en © 2012 Eskat 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
Eskat, Anja
Deng, Wen
Hofmeister, Antje
Rudolphi, Sven
Emmerth, Stephan
Hellwig, Daniela
Ulbricht, Tobias
Döring, Volker
Bancroft, James M.
McAinsh, Andrew D.
Cardoso, M. Cristina
Meraldi, Patrick
Hoischen, Christian
Leonhardt, Heinrich
Diekmann, Stephan
Step-Wise Assembly, Maturation and Dynamic Behavior of the Human CENP-P/O/R/Q/U Kinetochore Sub-Complex
title Step-Wise Assembly, Maturation and Dynamic Behavior of the Human CENP-P/O/R/Q/U Kinetochore Sub-Complex
title_full Step-Wise Assembly, Maturation and Dynamic Behavior of the Human CENP-P/O/R/Q/U Kinetochore Sub-Complex
title_fullStr Step-Wise Assembly, Maturation and Dynamic Behavior of the Human CENP-P/O/R/Q/U Kinetochore Sub-Complex
title_full_unstemmed Step-Wise Assembly, Maturation and Dynamic Behavior of the Human CENP-P/O/R/Q/U Kinetochore Sub-Complex
title_short Step-Wise Assembly, Maturation and Dynamic Behavior of the Human CENP-P/O/R/Q/U Kinetochore Sub-Complex
title_sort step-wise assembly, maturation and dynamic behavior of the human cenp-p/o/r/q/u kinetochore sub-complex
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3445539/
https://www.ncbi.nlm.nih.gov/pubmed/23028590
http://dx.doi.org/10.1371/journal.pone.0044717
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