Cargando…

Structural insight into how the human helicase subunit MCM2 may act as a histone chaperone together with ASF1 at the replication fork

MCM2 is a subunit of the replicative helicase machinery shown to interact with histones H3 and H4 during the replication process through its N-terminal domain. During replication, this interaction has been proposed to assist disassembly and assembly of nucleosomes on DNA. However, how this interacti...

Descripción completa

Detalles Bibliográficos
Autores principales: Richet, Nicolas, Liu, Danni, Legrand, Pierre, Velours, Christophe, Corpet, Armelle, Gaubert, Albane, Bakail, May, Moal-Raisin, Gwenaelle, Guerois, Raphael, Compper, Christel, Besle, Arthur, Guichard, Berengère, Almouzni, Genevieve, Ochsenbein, Françoise
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4330383/
https://www.ncbi.nlm.nih.gov/pubmed/25618846
http://dx.doi.org/10.1093/nar/gkv021
_version_ 1782357577622880256
author Richet, Nicolas
Liu, Danni
Legrand, Pierre
Velours, Christophe
Corpet, Armelle
Gaubert, Albane
Bakail, May
Moal-Raisin, Gwenaelle
Guerois, Raphael
Compper, Christel
Besle, Arthur
Guichard, Berengère
Almouzni, Genevieve
Ochsenbein, Françoise
author_facet Richet, Nicolas
Liu, Danni
Legrand, Pierre
Velours, Christophe
Corpet, Armelle
Gaubert, Albane
Bakail, May
Moal-Raisin, Gwenaelle
Guerois, Raphael
Compper, Christel
Besle, Arthur
Guichard, Berengère
Almouzni, Genevieve
Ochsenbein, Françoise
author_sort Richet, Nicolas
collection PubMed
description MCM2 is a subunit of the replicative helicase machinery shown to interact with histones H3 and H4 during the replication process through its N-terminal domain. During replication, this interaction has been proposed to assist disassembly and assembly of nucleosomes on DNA. However, how this interaction participates in crosstalk with histone chaperones at the replication fork remains to be elucidated. Here, we solved the crystal structure of the ternary complex between the histone-binding domain of Mcm2 and the histones H3-H4 at 2.9 Å resolution. Histones H3 and H4 assemble as a tetramer in the crystal structure, but MCM2 interacts only with a single molecule of H3-H4. The latter interaction exploits binding surfaces that contact either DNA or H2B when H3-H4 dimers are incorporated in the nucleosome core particle. Upon binding of the ternary complex with the histone chaperone ASF1, the histone tetramer dissociates and both MCM2 and ASF1 interact simultaneously with the histones forming a 1:1:1:1 heteromeric complex. Thermodynamic analysis of the quaternary complex together with structural modeling support that ASF1 and MCM2 could form a chaperoning module for histones H3 and H4 protecting them from promiscuous interactions. This suggests an additional function for MCM2 outside its helicase function as a proper histone chaperone connected to the replication pathway.
format Online
Article
Text
id pubmed-4330383
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-43303832015-03-18 Structural insight into how the human helicase subunit MCM2 may act as a histone chaperone together with ASF1 at the replication fork Richet, Nicolas Liu, Danni Legrand, Pierre Velours, Christophe Corpet, Armelle Gaubert, Albane Bakail, May Moal-Raisin, Gwenaelle Guerois, Raphael Compper, Christel Besle, Arthur Guichard, Berengère Almouzni, Genevieve Ochsenbein, Françoise Nucleic Acids Res Structural Biology MCM2 is a subunit of the replicative helicase machinery shown to interact with histones H3 and H4 during the replication process through its N-terminal domain. During replication, this interaction has been proposed to assist disassembly and assembly of nucleosomes on DNA. However, how this interaction participates in crosstalk with histone chaperones at the replication fork remains to be elucidated. Here, we solved the crystal structure of the ternary complex between the histone-binding domain of Mcm2 and the histones H3-H4 at 2.9 Å resolution. Histones H3 and H4 assemble as a tetramer in the crystal structure, but MCM2 interacts only with a single molecule of H3-H4. The latter interaction exploits binding surfaces that contact either DNA or H2B when H3-H4 dimers are incorporated in the nucleosome core particle. Upon binding of the ternary complex with the histone chaperone ASF1, the histone tetramer dissociates and both MCM2 and ASF1 interact simultaneously with the histones forming a 1:1:1:1 heteromeric complex. Thermodynamic analysis of the quaternary complex together with structural modeling support that ASF1 and MCM2 could form a chaperoning module for histones H3 and H4 protecting them from promiscuous interactions. This suggests an additional function for MCM2 outside its helicase function as a proper histone chaperone connected to the replication pathway. Oxford University Press 2015-02-18 2015-01-23 /pmc/articles/PMC4330383/ /pubmed/25618846 http://dx.doi.org/10.1093/nar/gkv021 Text en © The Author(s) 2015. Published by Oxford University Press on behalf of Nucleic Acids Research. 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 reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Structural Biology
Richet, Nicolas
Liu, Danni
Legrand, Pierre
Velours, Christophe
Corpet, Armelle
Gaubert, Albane
Bakail, May
Moal-Raisin, Gwenaelle
Guerois, Raphael
Compper, Christel
Besle, Arthur
Guichard, Berengère
Almouzni, Genevieve
Ochsenbein, Françoise
Structural insight into how the human helicase subunit MCM2 may act as a histone chaperone together with ASF1 at the replication fork
title Structural insight into how the human helicase subunit MCM2 may act as a histone chaperone together with ASF1 at the replication fork
title_full Structural insight into how the human helicase subunit MCM2 may act as a histone chaperone together with ASF1 at the replication fork
title_fullStr Structural insight into how the human helicase subunit MCM2 may act as a histone chaperone together with ASF1 at the replication fork
title_full_unstemmed Structural insight into how the human helicase subunit MCM2 may act as a histone chaperone together with ASF1 at the replication fork
title_short Structural insight into how the human helicase subunit MCM2 may act as a histone chaperone together with ASF1 at the replication fork
title_sort structural insight into how the human helicase subunit mcm2 may act as a histone chaperone together with asf1 at the replication fork
topic Structural Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4330383/
https://www.ncbi.nlm.nih.gov/pubmed/25618846
http://dx.doi.org/10.1093/nar/gkv021
work_keys_str_mv AT richetnicolas structuralinsightintohowthehumanhelicasesubunitmcm2mayactasahistonechaperonetogetherwithasf1atthereplicationfork
AT liudanni structuralinsightintohowthehumanhelicasesubunitmcm2mayactasahistonechaperonetogetherwithasf1atthereplicationfork
AT legrandpierre structuralinsightintohowthehumanhelicasesubunitmcm2mayactasahistonechaperonetogetherwithasf1atthereplicationfork
AT velourschristophe structuralinsightintohowthehumanhelicasesubunitmcm2mayactasahistonechaperonetogetherwithasf1atthereplicationfork
AT corpetarmelle structuralinsightintohowthehumanhelicasesubunitmcm2mayactasahistonechaperonetogetherwithasf1atthereplicationfork
AT gaubertalbane structuralinsightintohowthehumanhelicasesubunitmcm2mayactasahistonechaperonetogetherwithasf1atthereplicationfork
AT bakailmay structuralinsightintohowthehumanhelicasesubunitmcm2mayactasahistonechaperonetogetherwithasf1atthereplicationfork
AT moalraisingwenaelle structuralinsightintohowthehumanhelicasesubunitmcm2mayactasahistonechaperonetogetherwithasf1atthereplicationfork
AT gueroisraphael structuralinsightintohowthehumanhelicasesubunitmcm2mayactasahistonechaperonetogetherwithasf1atthereplicationfork
AT compperchristel structuralinsightintohowthehumanhelicasesubunitmcm2mayactasahistonechaperonetogetherwithasf1atthereplicationfork
AT beslearthur structuralinsightintohowthehumanhelicasesubunitmcm2mayactasahistonechaperonetogetherwithasf1atthereplicationfork
AT guichardberengere structuralinsightintohowthehumanhelicasesubunitmcm2mayactasahistonechaperonetogetherwithasf1atthereplicationfork
AT almouznigenevieve structuralinsightintohowthehumanhelicasesubunitmcm2mayactasahistonechaperonetogetherwithasf1atthereplicationfork
AT ochsenbeinfrancoise structuralinsightintohowthehumanhelicasesubunitmcm2mayactasahistonechaperonetogetherwithasf1atthereplicationfork