The functions of SET domain bifurcated histone lysine methyltransferase 1 (SETDB1) in biological process and disease.

IF 4.2 2区 生物学 Q1 GENETICS & HEREDITY
Hanshen Luo, Xingliang Wu, Xue-Hai Zhu, Xin Yi, Dunfeng Du, Ding-Sheng Jiang
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引用次数: 0

Abstract

Histone methyltransferase SETDB1 (SET domain bifurcated histone lysine methyltransferase 1, also known as ESET or KMT1E) is known to be involved in the deposition of the di- and tri-methyl marks on H3K9 (H3K9me2 and H3K9me3), which are associated with transcription repression. SETDB1 exerts an essential role in the silencing of endogenous retroviruses (ERVs) in embryonic stem cells (mESCs) by tri-methylating H3K9 (H3K9me3) and interacting with DNA methyltransferases (DNMTs). Additionally, SETDB1 is engaged in regulating multiple biological processes and diseases, such as ageing, tumors, and inflammatory bowel disease (IBD), by methylating both histones and non-histone proteins. In this review, we provide an overview of the complex biology of SETDB1, review the upstream regulatory mechanisms of SETDB1 and its partners, discuss the functions and molecular mechanisms of SETDB1 in cell fate determination and stem cell, as well as in tumors and other diseases. Finally, we discuss the current challenges and prospects of targeting SETDB1 for the treatment of different diseases, and we also suggest some future research directions in the field of SETDB1 research.

SET结构域分叉组蛋白赖氨酸甲基转移酶1 (SETDB1)在生物过程和疾病中的作用。
组蛋白甲基转移酶SETDB1 (SET结构域分叉组蛋白赖氨酸甲基转移酶1,也称为ESET或KMT1E)参与H3K9 (H3K9me2和H3K9me3)上二甲基和三甲基标记的沉积,这与转录抑制有关。SETDB1通过三甲基化H3K9 (H3K9me3)并与DNA甲基转移酶(dnmt)相互作用,在胚胎干细胞(mESCs)内源性逆转录病毒(ERVs)的沉默中发挥重要作用。此外,SETDB1通过甲基化组蛋白和非组蛋白,参与调节多种生物过程和疾病,如衰老、肿瘤和炎症性肠病(IBD)。本文综述了SETDB1的复杂生物学特性,综述了SETDB1及其伙伴的上游调控机制,讨论了SETDB1在细胞命运决定、干细胞以及肿瘤和其他疾病中的功能和分子机制。最后,我们讨论了目前SETDB1靶向治疗不同疾病的挑战和前景,并提出了未来SETDB1研究领域的一些研究方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Epigenetics & Chromatin
Epigenetics & Chromatin GENETICS & HEREDITY-
CiteScore
7.00
自引率
0.00%
发文量
35
审稿时长
1 months
期刊介绍: Epigenetics & Chromatin is a peer-reviewed, open access, online journal that publishes research, and reviews, providing novel insights into epigenetic inheritance and chromatin-based interactions. The journal aims to understand how gene and chromosomal elements are regulated and their activities maintained during processes such as cell division, differentiation and environmental alteration.
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