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PPAR beta/delta recruits NCOR and regulates transcription reinitiation of ANGPTL4

机译:PPAR Beta / Delta recrewors Ncor并调节Angptl4的转录重新增压

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摘要

In the absence of ligands, the nuclear receptor PPAR beta/delta recruits the NCOR and SMRT corepressors, which form complexes with HDAC3, to canonical target genes. Agonistic ligands cause dissociation of corepressors and enable enhanced transcription. Vice versa, synthetic inverse agonists augment corepressor recruitment and repression. Both basal repression of the target gene ANGPTL4 and reinforced repression elicited by inverse agonists are partially insensitive to HDAC inhibition. This raises the question how PPAR beta/delta represses transcription mechanistically. We show that the PPAR beta/delta inverse agonist PT-S264 impairs transcription initiation by decreasing recruitment of activating Mediator subunits, RNA polymerase II, and TFIIB, but not of TFIIA, to the ANGPTL4 promoter. Mass spectrometry identifies NCOR as the main PT-S264-dependent interactor of PPAR beta/delta. Reconstitution of knockout cells with PPAR beta/delta mutants deficient in basal repression results in diminished recruitment of NCOR, SMRT, and HDAC3 to PPAR target genes, while occupancy by RNA polymerase II is increased. PT-S264 restores binding of NCOR, SMRT, and HDAC3 to the mutants, resulting in reduced polymerase II occupancy. Our findings corroborate deacetylase-dependent and -independent repressive functions of HDAC3-containing complexes, which act in parallel to downregulate transcription.
机译:在没有配体的情况下,核受体PPARβ/ delta促进NCOR和SMRT核心压力,其与HDAC3形成复合物,对典范靶基因。激动性配体导致核心压缩机的解离并实现增强的转录。反之亦然,综合反向激动学家增强了内核投票机的招募和镇压。通过反向激动剂引发的靶基因Angptl4的基础抑制和由反向激动剂引发的增强抑制对HDAC抑制部分不敏感。这提出了PPAR Beta / Delta如何机械地压制转录的问题。我们表明,PPARβ/ DELTA反向激动剂PT-S264通过降低激活介质亚基,RNA聚合酶II和TFIIB,但不含TFIIa,对ANGPTL4启动子来损害转录开始。质谱仪将Ncor识别为PPARβ/ delta的主要PT-S264依赖性交互式。敲除细胞用PPAR的β重构/△缺陷型突变体中NCOR,SMRT的减少招募基底压制的结果,和对HDAC3 PPAR靶基因,而占用由RNA聚合酶II增加。 PT-S264将Ncor,SMRT和HDAC3的结合恢复到突变体,导致聚合酶II占用减少。我们的研究结果证实了含HDAC3的配合物的脱乙酰酶依赖性和依赖性抑制功能,其与下调转录平行起作用。

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  • 来源
    《Nucleic Acids Research》 |2019年第18期|共19页
  • 作者单位

    Philipps Univ Inst Mol Biol &

    Tumour Res Dept Med Ctr Tumour Biol &

    Immunol Hans Meerwein Str 3 D-35043 Marburg Germany;

    Philipps Univ Inst Mol Biol &

    Tumour Res Dept Med Ctr Tumour Biol &

    Immunol Hans Meerwein Str 3 D-35043 Marburg Germany;

    Philipps Univ Inst Mol Biol &

    Tumour Res Dept Med Ctr Tumour Biol &

    Immunol Hans Meerwein Str 3 D-35043 Marburg Germany;

    Philipps Univ Inst Mol Biol &

    Tumour Res Dept Med Ctr Tumour Biol &

    Immunol Hans Meerwein Str 3 D-35043 Marburg Germany;

    Philipps Univ Ctr Tumour Biol &

    Immunol Core Facil Med Chem Hans Meerwein Str 3 D-35043 Marburg Germany;

    Univ Klinikum Giessen &

    Marburg GmbH Ctr Human Genet Baldingerstr D-35043 Marburg Germany;

    Philipps Univ Ctr Tumour Biol &

    Immunol Core Facil Med Chem Hans Meerwein Str 3 D-35043 Marburg Germany;

    Philipps Univ Inst Mol Biol &

    Tumour Res Dept Med Ctr Tumour Biol &

    Immunol Hans Meerwein Str 3 D-35043 Marburg Germany;

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  • 正文语种 eng
  • 中图分类 生物化学;
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