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核受体、其共激活因子与转录调控

Nuclear receptors, their coactivators and modulation of transcription.

作者信息

Manteuffel-Cymborowska M

机构信息

M. Nencki Institute of Experimental Biology, Warszawa, Poland.

出版信息

Acta Biochim Pol. 1999;46(1):77-89.

Abstract

Nuclear receptors are ligand-dependent transcription factors which can also be activated in the absence of their lipophilic ligands by signaling substances acting on cell membrane receptors. This ligand-independent activation indicates the importance of nuclear receptor phosphorylation for their function. Nuclear receptor-mediated transcription of target genes is further increased by interactions with recruited coactivators forming a novel family of nuclear proteins. CBP/p300, a coactivator of different classes of transcription factors, including the tumor suppressor protein p53, plays a special role acting as a bridging protein between inducible transcription factors and the basal transcription apparatus, and as an integrator of diverse signaling pathways. Coactivators of nuclear receptors and associated proteins forming a multicomponent complex have an intrinsic histone acetylase activity in contrast to nuclear receptor and heterodimer Mad-Max corepressors, which recruit histone deacetylase. Similarly the Rb protein interacts with histone deacetylase to repress transcription of cell cycle regulatory genes. Targeted histone acetylation/deacetylation results in remodeling of chromatin structure and correlates with activation/repression of transcription. Recent data point to the important role of coactivator proteins associated with inducible transcription factors in transcription regulation, and in the integration of multiple signal transduction pathways within the nucleus.

摘要

核受体是依赖配体的转录因子,在缺乏亲脂性配体时,作用于细胞膜受体的信号物质也可激活它们。这种不依赖配体的激活表明核受体磷酸化对其功能的重要性。与募集的共激活因子相互作用形成一类新的核蛋白家族,进一步增强了核受体介导的靶基因转录。CBP/p300是不同类型转录因子的共激活因子,包括肿瘤抑制蛋白p53,它作为诱导型转录因子与基础转录装置之间的桥梁蛋白,以及多种信号通路的整合因子发挥特殊作用。与核受体和异源二聚体Mad-Max共抑制因子相反,核受体的共激活因子及相关蛋白形成多组分复合物,具有内在的组蛋白乙酰化酶活性,后者募集组蛋白脱乙酰酶。同样,Rb蛋白与组蛋白脱乙酰酶相互作用以抑制细胞周期调控基因的转录。靶向组蛋白乙酰化/去乙酰化导致染色质结构重塑,并与转录激活/抑制相关。最新数据表明,与诱导型转录因子相关的共激活蛋白在转录调控以及细胞核内多种信号转导通路的整合中发挥重要作用。

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