Functional dissection of Drosophila melanogaster SUUR protein influence on H3K27me3 profile

Abstract Background In eukaryotes, heterochromatin replicates late in S phase of the cell cycle and contains specific covalent modifications of histones. SuUR mutation found in Drosophila makes heterochromatin replicate earlier than in wild type and reduces the level of repressive histone modificati...

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Main Authors: Olga V. Posukh, Daniil A. Maksimov, Petr P. Laktionov, Dmitry E. Koryakov, Stepan N. Belyakin
Format: Article
Language:English
Published: BMC 2017-12-01
Series:Epigenetics & Chromatin
Subjects:
Online Access:http://link.springer.com/article/10.1186/s13072-017-0163-z
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spelling doaj-2d5ef18fbeb9431580fc5df170917d472020-11-25T00:32:57ZengBMCEpigenetics & Chromatin1756-89352017-12-0110111410.1186/s13072-017-0163-zFunctional dissection of Drosophila melanogaster SUUR protein influence on H3K27me3 profileOlga V. Posukh0Daniil A. Maksimov1Petr P. Laktionov2Dmitry E. Koryakov3Stepan N. Belyakin4Genomics Lab, Institute of Molecular and Cellular Biology SB RASGenomics Lab, Institute of Molecular and Cellular Biology SB RASGenomics Lab, Institute of Molecular and Cellular Biology SB RASGenomics Lab, Institute of Molecular and Cellular Biology SB RASGenomics Lab, Institute of Molecular and Cellular Biology SB RASAbstract Background In eukaryotes, heterochromatin replicates late in S phase of the cell cycle and contains specific covalent modifications of histones. SuUR mutation found in Drosophila makes heterochromatin replicate earlier than in wild type and reduces the level of repressive histone modifications. SUUR protein was shown to be associated with moving replication forks, apparently through the interaction with PCNA. The biological process underlying the effects of SUUR on replication and composition of heterochromatin remains unknown. Results Here we performed a functional dissection of SUUR protein effects on H3K27me3 level. Using hidden Markow model-based algorithm we revealed SuUR-sensitive chromosomal regions that demonstrated unusual characteristics: They do not contain Polycomb and require SUUR function to sustain H3K27me3 level. We tested the role of SUUR protein in the mechanisms that could affect H3K27me3 histone levels in these regions. We found that SUUR does not affect the initial H3K27me3 pattern formation in embryogenesis or Polycomb distribution in the chromosomes. We also ruled out the possible effect of SUUR on histone genes expression and its involvement in DSB repair. Conclusions Obtained results support the idea that SUUR protein contributes to the heterochromatin maintenance during the chromosome replication. A model that explains major SUUR-associated phenotypes is proposed.http://link.springer.com/article/10.1186/s13072-017-0163-zHeterochromatinReplicationPolycombH3K27me3Epigenetic inheritanceDrosophila
collection DOAJ
language English
format Article
sources DOAJ
author Olga V. Posukh
Daniil A. Maksimov
Petr P. Laktionov
Dmitry E. Koryakov
Stepan N. Belyakin
spellingShingle Olga V. Posukh
Daniil A. Maksimov
Petr P. Laktionov
Dmitry E. Koryakov
Stepan N. Belyakin
Functional dissection of Drosophila melanogaster SUUR protein influence on H3K27me3 profile
Epigenetics & Chromatin
Heterochromatin
Replication
Polycomb
H3K27me3
Epigenetic inheritance
Drosophila
author_facet Olga V. Posukh
Daniil A. Maksimov
Petr P. Laktionov
Dmitry E. Koryakov
Stepan N. Belyakin
author_sort Olga V. Posukh
title Functional dissection of Drosophila melanogaster SUUR protein influence on H3K27me3 profile
title_short Functional dissection of Drosophila melanogaster SUUR protein influence on H3K27me3 profile
title_full Functional dissection of Drosophila melanogaster SUUR protein influence on H3K27me3 profile
title_fullStr Functional dissection of Drosophila melanogaster SUUR protein influence on H3K27me3 profile
title_full_unstemmed Functional dissection of Drosophila melanogaster SUUR protein influence on H3K27me3 profile
title_sort functional dissection of drosophila melanogaster suur protein influence on h3k27me3 profile
publisher BMC
series Epigenetics & Chromatin
issn 1756-8935
publishDate 2017-12-01
description Abstract Background In eukaryotes, heterochromatin replicates late in S phase of the cell cycle and contains specific covalent modifications of histones. SuUR mutation found in Drosophila makes heterochromatin replicate earlier than in wild type and reduces the level of repressive histone modifications. SUUR protein was shown to be associated with moving replication forks, apparently through the interaction with PCNA. The biological process underlying the effects of SUUR on replication and composition of heterochromatin remains unknown. Results Here we performed a functional dissection of SUUR protein effects on H3K27me3 level. Using hidden Markow model-based algorithm we revealed SuUR-sensitive chromosomal regions that demonstrated unusual characteristics: They do not contain Polycomb and require SUUR function to sustain H3K27me3 level. We tested the role of SUUR protein in the mechanisms that could affect H3K27me3 histone levels in these regions. We found that SUUR does not affect the initial H3K27me3 pattern formation in embryogenesis or Polycomb distribution in the chromosomes. We also ruled out the possible effect of SUUR on histone genes expression and its involvement in DSB repair. Conclusions Obtained results support the idea that SUUR protein contributes to the heterochromatin maintenance during the chromosome replication. A model that explains major SUUR-associated phenotypes is proposed.
topic Heterochromatin
Replication
Polycomb
H3K27me3
Epigenetic inheritance
Drosophila
url http://link.springer.com/article/10.1186/s13072-017-0163-z
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