H3K36me3, message from chromatin to DNA damage repair

Abstract Histone marks control many cellular processes including DNA damage repair. This review will focus primarily on the active histone mark H3K36me3 in the regulation of DNA damage repair and the maintenance of genomic stability after DNA damage. There are diverse clues showing H3K36me3 particip...

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Main Authors: Zhongxing Sun, Yanjun Zhang, Junqi Jia, Yuan Fang, Yin Tang, Hongfei Wu, Dong Fang
Format: Article
Language:English
Published: BMC 2020-01-01
Series:Cell & Bioscience
Subjects:
Online Access:https://doi.org/10.1186/s13578-020-0374-z
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author Zhongxing Sun
Yanjun Zhang
Junqi Jia
Yuan Fang
Yin Tang
Hongfei Wu
Dong Fang
author_facet Zhongxing Sun
Yanjun Zhang
Junqi Jia
Yuan Fang
Yin Tang
Hongfei Wu
Dong Fang
author_sort Zhongxing Sun
collection DOAJ
description Abstract Histone marks control many cellular processes including DNA damage repair. This review will focus primarily on the active histone mark H3K36me3 in the regulation of DNA damage repair and the maintenance of genomic stability after DNA damage. There are diverse clues showing H3K36me3 participates in DNA damage response by directly recruiting DNA repair machinery to set the chromatin at a “ready” status, leading to a quick response upon damage. Reduced H3K36me3 is associated with low DNA repair efficiency. This review will also place a main emphasis on the H3K36me3-mediated DNA damage repair in the tumorigenesis of the newly found oncohistone mutant tumors. Gaining an understanding of different aspects of H3K36me3 in DNA damage repair, especially in cancers, would share the knowledge of chromatin and DNA repair to serve to the drug discovery and patient care.
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spelling doaj.art-03e379bb1a1747da8c3c80d58dd135212022-12-21T22:09:06ZengBMCCell & Bioscience2045-37012020-01-011011910.1186/s13578-020-0374-zH3K36me3, message from chromatin to DNA damage repairZhongxing Sun0Yanjun Zhang1Junqi Jia2Yuan Fang3Yin Tang4Hongfei Wu5Dong Fang6Life Sciences Institute, Zhejiang UniversityLife Sciences Institute, Zhejiang UniversityLife Sciences Institute, Zhejiang UniversityLife Sciences Institute, Zhejiang UniversityLife Sciences Institute, Zhejiang UniversityLife Sciences Institute, Zhejiang UniversityLife Sciences Institute, Zhejiang UniversityAbstract Histone marks control many cellular processes including DNA damage repair. This review will focus primarily on the active histone mark H3K36me3 in the regulation of DNA damage repair and the maintenance of genomic stability after DNA damage. There are diverse clues showing H3K36me3 participates in DNA damage response by directly recruiting DNA repair machinery to set the chromatin at a “ready” status, leading to a quick response upon damage. Reduced H3K36me3 is associated with low DNA repair efficiency. This review will also place a main emphasis on the H3K36me3-mediated DNA damage repair in the tumorigenesis of the newly found oncohistone mutant tumors. Gaining an understanding of different aspects of H3K36me3 in DNA damage repair, especially in cancers, would share the knowledge of chromatin and DNA repair to serve to the drug discovery and patient care.https://doi.org/10.1186/s13578-020-0374-zH3K36me3DNA damageOncohistonesHomologous recombinationNonhomologous end-joiningDNA mismatch repair
spellingShingle Zhongxing Sun
Yanjun Zhang
Junqi Jia
Yuan Fang
Yin Tang
Hongfei Wu
Dong Fang
H3K36me3, message from chromatin to DNA damage repair
Cell & Bioscience
H3K36me3
DNA damage
Oncohistones
Homologous recombination
Nonhomologous end-joining
DNA mismatch repair
title H3K36me3, message from chromatin to DNA damage repair
title_full H3K36me3, message from chromatin to DNA damage repair
title_fullStr H3K36me3, message from chromatin to DNA damage repair
title_full_unstemmed H3K36me3, message from chromatin to DNA damage repair
title_short H3K36me3, message from chromatin to DNA damage repair
title_sort h3k36me3 message from chromatin to dna damage repair
topic H3K36me3
DNA damage
Oncohistones
Homologous recombination
Nonhomologous end-joining
DNA mismatch repair
url https://doi.org/10.1186/s13578-020-0374-z
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