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Drosophila SUMM4 complex couples insulator function and DNA replication control

Asynchronous replication of chromosome domains during S phase is essential for eukaryotic genome function, but the mechanisms establishing which domains replicate early versus late in different cell types remain incompletely understood. Intercalary heterochromatin domains replicate very late in both...

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Autores principales: Andreyeva, Evgeniya N, Emelyanov, Alexander V, Nevil, Markus, Sun, Lu, Vershilova, Elena, Hill, Christina A, Keogh, Michael-C, Duronio, Robert J, Skoultchi, Arthur I, Fyodorov, Dmitry V
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9917439/
https://www.ncbi.nlm.nih.gov/pubmed/36458689
http://dx.doi.org/10.7554/eLife.81828
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author Andreyeva, Evgeniya N
Emelyanov, Alexander V
Nevil, Markus
Sun, Lu
Vershilova, Elena
Hill, Christina A
Keogh, Michael-C
Duronio, Robert J
Skoultchi, Arthur I
Fyodorov, Dmitry V
author_facet Andreyeva, Evgeniya N
Emelyanov, Alexander V
Nevil, Markus
Sun, Lu
Vershilova, Elena
Hill, Christina A
Keogh, Michael-C
Duronio, Robert J
Skoultchi, Arthur I
Fyodorov, Dmitry V
author_sort Andreyeva, Evgeniya N
collection PubMed
description Asynchronous replication of chromosome domains during S phase is essential for eukaryotic genome function, but the mechanisms establishing which domains replicate early versus late in different cell types remain incompletely understood. Intercalary heterochromatin domains replicate very late in both diploid chromosomes of dividing cells and in endoreplicating polytene chromosomes where they are also underreplicated. Drosophila SNF2-related factor SUUR imparts locus-specific underreplication of polytene chromosomes. SUUR negatively regulates DNA replication fork progression; however, its mechanism of action remains obscure. Here, we developed a novel method termed MS-Enabled Rapid protein Complex Identification (MERCI) to isolate a stable stoichiometric native complex SUMM4 that comprises SUUR and a chromatin boundary protein Mod(Mdg4)-67.2. Mod(Mdg4) stimulates SUUR ATPase activity and is required for a normal spatiotemporal distribution of SUUR in vivo. SUUR and Mod(Mdg4)-67.2 together mediate the activities of gypsy insulator that prevent certain enhancer–promoter interactions and establish euchromatin–heterochromatin barriers in the genome. Furthermore, SuUR or mod(mdg4) mutations reverse underreplication of intercalary heterochromatin. Thus, SUMM4 can impart late replication of intercalary heterochromatin by attenuating the progression of replication forks through euchromatin/heterochromatin boundaries. Our findings implicate a SNF2 family ATP-dependent motor protein SUUR in the insulator function, reveal that DNA replication can be delayed by a chromatin barrier, and uncover a critical role for architectural proteins in replication control. They suggest a mechanism for the establishment of late replication that does not depend on an asynchronous firing of late replication origins.
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spelling pubmed-99174392023-02-11 Drosophila SUMM4 complex couples insulator function and DNA replication control Andreyeva, Evgeniya N Emelyanov, Alexander V Nevil, Markus Sun, Lu Vershilova, Elena Hill, Christina A Keogh, Michael-C Duronio, Robert J Skoultchi, Arthur I Fyodorov, Dmitry V eLife Chromosomes and Gene Expression Asynchronous replication of chromosome domains during S phase is essential for eukaryotic genome function, but the mechanisms establishing which domains replicate early versus late in different cell types remain incompletely understood. Intercalary heterochromatin domains replicate very late in both diploid chromosomes of dividing cells and in endoreplicating polytene chromosomes where they are also underreplicated. Drosophila SNF2-related factor SUUR imparts locus-specific underreplication of polytene chromosomes. SUUR negatively regulates DNA replication fork progression; however, its mechanism of action remains obscure. Here, we developed a novel method termed MS-Enabled Rapid protein Complex Identification (MERCI) to isolate a stable stoichiometric native complex SUMM4 that comprises SUUR and a chromatin boundary protein Mod(Mdg4)-67.2. Mod(Mdg4) stimulates SUUR ATPase activity and is required for a normal spatiotemporal distribution of SUUR in vivo. SUUR and Mod(Mdg4)-67.2 together mediate the activities of gypsy insulator that prevent certain enhancer–promoter interactions and establish euchromatin–heterochromatin barriers in the genome. Furthermore, SuUR or mod(mdg4) mutations reverse underreplication of intercalary heterochromatin. Thus, SUMM4 can impart late replication of intercalary heterochromatin by attenuating the progression of replication forks through euchromatin/heterochromatin boundaries. Our findings implicate a SNF2 family ATP-dependent motor protein SUUR in the insulator function, reveal that DNA replication can be delayed by a chromatin barrier, and uncover a critical role for architectural proteins in replication control. They suggest a mechanism for the establishment of late replication that does not depend on an asynchronous firing of late replication origins. eLife Sciences Publications, Ltd 2022-12-02 /pmc/articles/PMC9917439/ /pubmed/36458689 http://dx.doi.org/10.7554/eLife.81828 Text en © 2022, Andreyeva, Emelyanov et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Chromosomes and Gene Expression
Andreyeva, Evgeniya N
Emelyanov, Alexander V
Nevil, Markus
Sun, Lu
Vershilova, Elena
Hill, Christina A
Keogh, Michael-C
Duronio, Robert J
Skoultchi, Arthur I
Fyodorov, Dmitry V
Drosophila SUMM4 complex couples insulator function and DNA replication control
title Drosophila SUMM4 complex couples insulator function and DNA replication control
title_full Drosophila SUMM4 complex couples insulator function and DNA replication control
title_fullStr Drosophila SUMM4 complex couples insulator function and DNA replication control
title_full_unstemmed Drosophila SUMM4 complex couples insulator function and DNA replication control
title_short Drosophila SUMM4 complex couples insulator function and DNA replication control
title_sort drosophila summ4 complex couples insulator function and dna replication control
topic Chromosomes and Gene Expression
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9917439/
https://www.ncbi.nlm.nih.gov/pubmed/36458689
http://dx.doi.org/10.7554/eLife.81828
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