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本文引用的文献

1
Chromatin-specific remodeling by HMGB1 and linker histone H1 silences proinflammatory genes during endotoxin tolerance.在内毒素耐受过程中,HMGB1和连接组蛋白H1介导的染色质特异性重塑使促炎基因沉默。
Mol Cell Biol. 2009 Apr;29(7):1959-71. doi: 10.1128/MCB.01862-08. Epub 2009 Jan 21.
2
Dynamic Histone H1 Isotype 4 Methylation and Demethylation by Histone Lysine Methyltransferase G9a/KMT1C and the Jumonji Domain-containing JMJD2/KDM4 Proteins.组蛋白赖氨酸甲基转移酶G9a/KMT1C和含Jumonji结构域的JMJD2/KDM4蛋白对动态组蛋白H1同种型4的甲基化和去甲基化作用
J Biol Chem. 2009 Mar 27;284(13):8395-405. doi: 10.1074/jbc.M807818200. Epub 2009 Jan 13.
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Methylation and deamination of CpGs generate p53-binding sites on a genomic scale.CpG的甲基化和脱氨基作用在基因组范围内产生p53结合位点。
Trends Genet. 2009 Feb;25(2):63-6. doi: 10.1016/j.tig.2008.11.005. Epub 2008 Dec 26.
4
RelB sustains IkappaBalpha expression during endotoxin tolerance.RelB在内毒素耐受过程中维持IκBα的表达。
Clin Vaccine Immunol. 2009 Jan;16(1):104-10. doi: 10.1128/CVI.00320-08. Epub 2008 Nov 19.
5
Epigenetic mechanisms in mammals.哺乳动物中的表观遗传机制。
Cell Mol Life Sci. 2009 Feb;66(4):596-612. doi: 10.1007/s00018-008-8432-4.
6
Epigenetic regulation in human brain-focus on histone lysine methylation.人类大脑中的表观遗传调控——聚焦于组蛋白赖氨酸甲基化
Biol Psychiatry. 2009 Feb 1;65(3):198-203. doi: 10.1016/j.biopsych.2008.08.015. Epub 2008 Sep 24.
7
G9a and HP1 couple histone and DNA methylation to TNFalpha transcription silencing during endotoxin tolerance.在内毒素耐受过程中,G9a和HP1将组蛋白和DNA甲基化与肿瘤坏死因子α转录沉默联系起来。
J Biol Chem. 2008 Nov 21;283(47):32198-208. doi: 10.1074/jbc.M803446200. Epub 2008 Sep 22.
8
Chromatin remodeling, development and disease.染色质重塑、发育与疾病
Mutat Res. 2008 Dec 1;647(1-2):59-67. doi: 10.1016/j.mrfmmm.2008.08.004. Epub 2008 Aug 20.
9
Stabilization of RelB requires multidomain interactions with p100/p52.RelB的稳定需要与p100/p52进行多结构域相互作用。
J Biol Chem. 2008 May 2;283(18):12324-32. doi: 10.1074/jbc.M707898200. Epub 2008 Mar 4.
10
Epigenetic regulation of dendritic cell-derived interleukin-12 facilitates immunosuppression after a severe innate immune response.树突状细胞衍生的白细胞介素-12的表观遗传调控促进严重天然免疫反应后的免疫抑制。
Blood. 2008 Feb 15;111(4):1797-804. doi: 10.1182/blood-2007-08-106443. Epub 2007 Nov 30.

核因子-κB因子RelB与组蛋白H3赖氨酸甲基转移酶G9a直接相互作用,在内毒素耐受中产生表观遗传沉默。

The NF-kappaB factor RelB and histone H3 lysine methyltransferase G9a directly interact to generate epigenetic silencing in endotoxin tolerance.

作者信息

Chen Xiaoping, El Gazzar Mohamed, Yoza Barbara K, McCall Charles E

机构信息

Department of Internal Medicine, Section of Molecular Medicine, Wake Forest University School of Medicine, Winston-Salem, North Carolina 27157.

Department of Internal Medicine, Section of Molecular Medicine, Wake Forest University School of Medicine, Winston-Salem, North Carolina 27157; Department of General Surgery, Wake Forest University School of Medicine, Winston-Salem, North Carolina 27157.

出版信息

J Biol Chem. 2009 Oct 9;284(41):27857-27865. doi: 10.1074/jbc.M109.000950. Epub 2009 Aug 18.

DOI:10.1074/jbc.M109.000950
PMID:19690169
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2788836/
Abstract

The interplay of transcription factors, histone modifiers, and DNA modification can alter chromatin structure that epigenetically controls gene transcription. During severe systemic inflammatory (SSI), the generation of facultative heterochromatin from euchromatin reversibly silences transcription of a set of acute proinflammatory genes. This gene-specific silencing is a salient feature of the endotoxin tolerant phenotype that is found in blood leukocytes of SSI patients and in a human THP-1 cell model of SSI. We previously reported that de novo induction of the NF-kappaB transcription factor RelB by endotoxin activation is necessary and sufficient for silencing transcription of acute proinflammatory genes in the endotoxin tolerant SSI phenotype. Here, we examined how RelB silences gene expression and found that RelB induces facultative heterochromatin formation by directly interacting with the histone H3 lysine 9 methyltransferase G9a. We found that heterochromatin protein 1 (HP1) and G9a formed a complex at the interleukin-1beta promoter that is dependent on the Rel homology domain (RHD) of RelB. RelB knockdown disassociated the complex and reversed transcription silencing. We also observed that whereas RelB chromatin binding was independent of G9a, RelB transcriptional silencing required G9a accumulation at the silenced promoter. Binding between RelB and G9a was confirmed by glutathione S-transferase pulldown in vitro and coimmunoprecipitation in vivo. These data provide novel insight into how RelB is required to initiate silencing in the phenotype associated with severe systemic inflammation in humans, a disease with major morbidity and mortality.

摘要

转录因子、组蛋白修饰因子和DNA修饰之间的相互作用可改变染色质结构,从而在表观遗传水平上控制基因转录。在严重全身炎症(SSI)期间,常染色质向兼性异染色质的转变会使一组急性促炎基因的转录可逆性沉默。这种基因特异性沉默是内毒素耐受表型的一个显著特征,见于SSI患者的血液白细胞以及SSI的人THP-1细胞模型中。我们之前报道过,内毒素激活从头诱导NF-κB转录因子RelB对于内毒素耐受的SSI表型中急性促炎基因转录的沉默是必要且充分的。在此,我们研究了RelB如何使基因表达沉默,发现RelB通过直接与组蛋白H3赖氨酸9甲基转移酶G9a相互作用来诱导兼性异染色质形成。我们发现异染色质蛋白1(HP1)和G9a在白细胞介素-1β启动子处形成一个复合体,该复合体依赖于RelB的Rel同源结构域(RHD)。敲低RelB会使该复合体解离并逆转转录沉默。我们还观察到,虽然RelB与染色质的结合不依赖于G9a,但RelB的转录沉默需要G9a在沉默的启动子处积累。RelB与G9a之间的结合通过体外谷胱甘肽S-转移酶下拉实验和体内共免疫沉淀实验得以证实。这些数据为RelB如何在与人类严重全身炎症相关的表型中启动沉默提供了新的见解,严重全身炎症是一种具有高发病率和死亡率的疾病。