Cargando…

CENP-B creates alternative epigenetic chromatin states permissive for CENP-A or heterochromatin assembly

CENP-B binds to CENP-B boxes on centromeric satellite DNAs (known as alphoid DNA in humans). CENP-B maintains kinetochore function through interactions with CENP-A nucleosomes and CENP-C. CENP-B binding to transfected alphoid DNA can induce de novo CENP-A assembly, functional centromere and kinetoch...

Descripción completa

Detalles Bibliográficos
Autores principales: Otake, Koichiro, Ohzeki, Jun-ichirou, Shono, Nobuaki, Kugou, Kazuto, Okazaki, Koei, Nagase, Takahiro, Yamakawa, Hisashi, Kouprina, Natalay, Larionov, Vladimir, Kimura, Hiroshi, Earnshaw, William C., Masumoto, Hiroshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Ltd 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7438015/
https://www.ncbi.nlm.nih.gov/pubmed/32661090
http://dx.doi.org/10.1242/jcs.243303
_version_ 1783572727606542336
author Otake, Koichiro
Ohzeki, Jun-ichirou
Shono, Nobuaki
Kugou, Kazuto
Okazaki, Koei
Nagase, Takahiro
Yamakawa, Hisashi
Kouprina, Natalay
Larionov, Vladimir
Kimura, Hiroshi
Earnshaw, William C.
Masumoto, Hiroshi
author_facet Otake, Koichiro
Ohzeki, Jun-ichirou
Shono, Nobuaki
Kugou, Kazuto
Okazaki, Koei
Nagase, Takahiro
Yamakawa, Hisashi
Kouprina, Natalay
Larionov, Vladimir
Kimura, Hiroshi
Earnshaw, William C.
Masumoto, Hiroshi
author_sort Otake, Koichiro
collection PubMed
description CENP-B binds to CENP-B boxes on centromeric satellite DNAs (known as alphoid DNA in humans). CENP-B maintains kinetochore function through interactions with CENP-A nucleosomes and CENP-C. CENP-B binding to transfected alphoid DNA can induce de novo CENP-A assembly, functional centromere and kinetochore formation, and subsequent human artificial chromosome (HAC) formation. Furthermore, CENP-B also facilitates H3K9 (histone H3 lysine 9) trimethylation on alphoid DNA, mediated by Suv39h1, at ectopic alphoid DNA integration sites. Excessive heterochromatin invasion into centromere chromatin suppresses CENP-A assembly. It is unclear how CENP-B controls such different chromatin states. Here, we show that the CENP-B acidic domain recruits histone chaperones and many chromatin modifiers, including the H3K36 methylase ASH1L, as well as the heterochromatin components Suv39h1 and HP1 (HP1α, β and γ, also known as CBX5, CBX1 and CBX3, respectively). ASH1L facilitates the formation of open chromatin competent for CENP-A assembly on alphoid DNA. These results indicate that CENP-B is a nexus for histone modifiers that alternatively promote or suppress CENP-A assembly by mutually exclusive mechanisms. Besides the DNA-binding domain, the CENP-B acidic domain also facilitates CENP-A assembly de novo on transfected alphoid DNA. CENP-B therefore balances CENP-A assembly and heterochromatin formation on satellite DNA.
format Online
Article
Text
id pubmed-7438015
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher The Company of Biologists Ltd
record_format MEDLINE/PubMed
spelling pubmed-74380152020-08-25 CENP-B creates alternative epigenetic chromatin states permissive for CENP-A or heterochromatin assembly Otake, Koichiro Ohzeki, Jun-ichirou Shono, Nobuaki Kugou, Kazuto Okazaki, Koei Nagase, Takahiro Yamakawa, Hisashi Kouprina, Natalay Larionov, Vladimir Kimura, Hiroshi Earnshaw, William C. Masumoto, Hiroshi J Cell Sci Research Article CENP-B binds to CENP-B boxes on centromeric satellite DNAs (known as alphoid DNA in humans). CENP-B maintains kinetochore function through interactions with CENP-A nucleosomes and CENP-C. CENP-B binding to transfected alphoid DNA can induce de novo CENP-A assembly, functional centromere and kinetochore formation, and subsequent human artificial chromosome (HAC) formation. Furthermore, CENP-B also facilitates H3K9 (histone H3 lysine 9) trimethylation on alphoid DNA, mediated by Suv39h1, at ectopic alphoid DNA integration sites. Excessive heterochromatin invasion into centromere chromatin suppresses CENP-A assembly. It is unclear how CENP-B controls such different chromatin states. Here, we show that the CENP-B acidic domain recruits histone chaperones and many chromatin modifiers, including the H3K36 methylase ASH1L, as well as the heterochromatin components Suv39h1 and HP1 (HP1α, β and γ, also known as CBX5, CBX1 and CBX3, respectively). ASH1L facilitates the formation of open chromatin competent for CENP-A assembly on alphoid DNA. These results indicate that CENP-B is a nexus for histone modifiers that alternatively promote or suppress CENP-A assembly by mutually exclusive mechanisms. Besides the DNA-binding domain, the CENP-B acidic domain also facilitates CENP-A assembly de novo on transfected alphoid DNA. CENP-B therefore balances CENP-A assembly and heterochromatin formation on satellite DNA. The Company of Biologists Ltd 2020-08-11 /pmc/articles/PMC7438015/ /pubmed/32661090 http://dx.doi.org/10.1242/jcs.243303 Text en © 2020. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/4.0This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Otake, Koichiro
Ohzeki, Jun-ichirou
Shono, Nobuaki
Kugou, Kazuto
Okazaki, Koei
Nagase, Takahiro
Yamakawa, Hisashi
Kouprina, Natalay
Larionov, Vladimir
Kimura, Hiroshi
Earnshaw, William C.
Masumoto, Hiroshi
CENP-B creates alternative epigenetic chromatin states permissive for CENP-A or heterochromatin assembly
title CENP-B creates alternative epigenetic chromatin states permissive for CENP-A or heterochromatin assembly
title_full CENP-B creates alternative epigenetic chromatin states permissive for CENP-A or heterochromatin assembly
title_fullStr CENP-B creates alternative epigenetic chromatin states permissive for CENP-A or heterochromatin assembly
title_full_unstemmed CENP-B creates alternative epigenetic chromatin states permissive for CENP-A or heterochromatin assembly
title_short CENP-B creates alternative epigenetic chromatin states permissive for CENP-A or heterochromatin assembly
title_sort cenp-b creates alternative epigenetic chromatin states permissive for cenp-a or heterochromatin assembly
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7438015/
https://www.ncbi.nlm.nih.gov/pubmed/32661090
http://dx.doi.org/10.1242/jcs.243303
work_keys_str_mv AT otakekoichiro cenpbcreatesalternativeepigeneticchromatinstatespermissiveforcenpaorheterochromatinassembly
AT ohzekijunichirou cenpbcreatesalternativeepigeneticchromatinstatespermissiveforcenpaorheterochromatinassembly
AT shononobuaki cenpbcreatesalternativeepigeneticchromatinstatespermissiveforcenpaorheterochromatinassembly
AT kugoukazuto cenpbcreatesalternativeepigeneticchromatinstatespermissiveforcenpaorheterochromatinassembly
AT okazakikoei cenpbcreatesalternativeepigeneticchromatinstatespermissiveforcenpaorheterochromatinassembly
AT nagasetakahiro cenpbcreatesalternativeepigeneticchromatinstatespermissiveforcenpaorheterochromatinassembly
AT yamakawahisashi cenpbcreatesalternativeepigeneticchromatinstatespermissiveforcenpaorheterochromatinassembly
AT kouprinanatalay cenpbcreatesalternativeepigeneticchromatinstatespermissiveforcenpaorheterochromatinassembly
AT larionovvladimir cenpbcreatesalternativeepigeneticchromatinstatespermissiveforcenpaorheterochromatinassembly
AT kimurahiroshi cenpbcreatesalternativeepigeneticchromatinstatespermissiveforcenpaorheterochromatinassembly
AT earnshawwilliamc cenpbcreatesalternativeepigeneticchromatinstatespermissiveforcenpaorheterochromatinassembly
AT masumotohiroshi cenpbcreatesalternativeepigeneticchromatinstatespermissiveforcenpaorheterochromatinassembly