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CBP对HMG I(Y)的乙酰化作用通过破坏增强体来关闭IFN-β的表达。

Acetylation of HMG I(Y) by CBP turns off IFN beta expression by disrupting the enhanceosome.

作者信息

Munshi N, Merika M, Yie J, Senger K, Chen G, Thanos D

机构信息

Department of Biochemistry, and Molecular Biophysics, Columbia University, New York, New York 10032, USA.

出版信息

Mol Cell. 1998 Oct;2(4):457-67. doi: 10.1016/s1097-2765(00)80145-8.

Abstract

The transcriptional coactivators CBP and P/CAF are required for activation of transcription from the IFN beta enhanceosome. We show that CBP and P/CAF acetylate HMG I(Y), the essential architectural component required for enhanceosome assembly, at distinct lysine residues, causing distinct effects on transcription. Thus, in the context of the enhanceosome, acetylation of HMG I by CBP, but not by P/CAF, leads to enhanceosome destabilization and disassembly. We demonstrate that acetylation of HMG I(Y) by CBP is essential for turning off IFN beta gene expression. Finally, we show that the acetyltransferase activities of CBP and P/CAF modulate both the strength of the transcriptional response and the kinetics of virus-dependent activation of the IFN beta gene.

摘要

转录共激活因子CBP和P/CAF是激活IFN-β增强体转录所必需的。我们发现CBP和P/CAF可使HMG I(Y)(增强体组装所需的关键结构成分)在不同的赖氨酸残基上发生乙酰化,从而对转录产生不同影响。因此,在增强体的背景下,CBP而非P/CAF介导的HMG I乙酰化会导致增强体不稳定和解聚。我们证明CBP介导的HMG I(Y)乙酰化对于关闭IFN-β基因表达至关重要。最后,我们表明CBP和P/CAF的乙酰转移酶活性可调节转录反应的强度以及病毒依赖性激活IFN-β基因的动力学。

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