首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >HEXIM1 forms a transcriptionally abortive complex with glucocorticoid receptor without involving 7SK RNA and positive transcription elongation factor b
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HEXIM1 forms a transcriptionally abortive complex with glucocorticoid receptor without involving 7SK RNA and positive transcription elongation factor b

机译:HEXIM1与糖皮质激素受体形成转录中止复合物,不涉及7SK RNA和正转录延伸因子b

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The HEXIM1 protein has been shown to form a protein-RNA complex composed of 7SK small nuclear RNA and positive transcription elongation factor b (P-TEFb), which is composed of cyclin-dependent kinase 9 (CDK9) and cyclin T1, and to inhibit the kinase activity of CDK9, thereby suppressing RNA polymerase II-dependent transcriptional elongation. Here, we biochemically demonstrate that HEXIM1 forms a distinct complex with glucocorticoid receptor (GR) without RNA, CDK9, or cyclin T1. HEXIM1, through its arginine-rich nuclear localization signal, directly associates with the ligand-binding domain of GR. Introduction of HEXIM1 short interfering RNA and adenovirus-mediated exogenous expression of HEXIM1 positively and negatively modulated glucocorticoid-responsive gene activation, respectively. In the nucleus, HEXIM1 was shown to localize in a distinct compartment from that of the p160 coactivator transcriptional intermediary factor 2. Overexpression of HEXIM1 decreased ligand-dependent association between GR and transcriptional intermediary factor 2. Antisense-mediated disruption of 7SK blunted the negative effect of HEXIM1 on arylhydrocarbon receptor-dependent transcription but not on GR-mediated one, indicating that a class of transcription factors are direct targets of HEXIM1. These results indicate that HEXIM1 has dual roles in transcriptional regulation: inhibition of transcriptional elongation dependent on 7SK RNA and positive transcription elongation factor b and interference with the sequence-specific transcription factor GR via a direct protein-protein interaction. Moreover, the fact that the central nuclear localization signal of HEXIM1 is essential for both of these actions may argue the crosstalk of these functions.
机译:已证明HEXIM1蛋白形成由7SK小核RNA和正转录延伸因子b(P-TEFb)组成的蛋白RNA复合物,该复合物由细胞周期蛋白依赖性激酶9(CDK9)和细胞周期蛋白T1组成,并具有抑制作用CDK9的激酶活性,从而抑制RNA聚合酶II依赖的转录延伸。在这里,我们生化证明,HEXIM1与糖皮质激素受体(GR)形成独特的复合体,而没有RNA,CDK9或细胞周期蛋白T1。 HEXIM1,通过其富含精氨酸的核定位信号,直接与GR的配体结合域缔合。引入HEXIM1短干扰RNA和腺病毒介导的HEXIM1的正向和负向调节的糖皮质激素应答基因激活的外源表达。在细胞核中,HEXIM1与p160共激活因子转录中间因子2位于不同的区域。HEXIM1的过表达降低了GR与转录中间因子2之间的配体依赖性缔合。反义介导的7SK破坏破坏了负面作用。 HEXIM1对芳烃受体依赖性转录的影响,而不是对GR介导的转录的影响,这表明一类转录因子是HEXIM1的直接靶标。这些结果表明,HEXIM1在转录调控中具有双重作用:抑制依赖于7SK RNA和正转录延伸因子b的转录延伸,以及通过直接的蛋白质-蛋白质相互作用干扰序列特异性转录因子GR。此外,HEXIM1的中央核定位信号对于这两种作用都是必不可少的,这可能证明了这些功能的串扰。

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