首页> 美国卫生研究院文献>Molecular and Cellular Biology >Alternative Mechanisms by Which Mediator Subunit MED1/TRAP220 Regulates Peroxisome Proliferator-Activated Receptor γ-Stimulated Adipogenesis and Target Gene Expression
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Alternative Mechanisms by Which Mediator Subunit MED1/TRAP220 Regulates Peroxisome Proliferator-Activated Receptor γ-Stimulated Adipogenesis and Target Gene Expression

机译:中介子亚基MED1 / TRAP220调节过氧化物酶体增殖物激活的受体γ刺激脂肪形成和靶基因表达的替代机制。

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摘要

Mediator is a general coactivator complex connecting transcription activators and RNA polymerase II. Recent work has shown that the nuclear receptor-interacting MED1/TRAP220 subunit of Mediator is required for peroxisome proliferator-activated receptor γ (PPARγ)-stimulated adipogenesis of mouse embryonic fibroblasts (MEFs). However, the molecular mechanisms remain undefined. Here, we show an intracellular PPARγ-Mediator interaction that requires the two LXXLL nuclear receptor recognition motifs on MED1/TRAP220 and, furthermore, we show that the intact LXXLL motifs are essential for optimal PPARγ function in a reconstituted cell-free transcription system. Surprisingly, a conserved N-terminal region of MED1/TRAP220 that lacks the LXXLL motifs but gets incorporated into Mediator fully supports PPARγ-stimulated adipogenesis. Moreover, in undifferentiated MEFs, MED1/TRAP220 is dispensable both for PPARγ-mediated target gene activation and for recruitment of Mediator to a PPAR response element on the aP2 target gene promoter. However, PPARγ shows significantly reduced transcriptional activity in cells deficient for a subunit (MED24/TRAP100) important for the integrity of the Mediator complex, indicating a general Mediator requirement for PPARγ function. These results indicate that there is a conditional requirement for MED1/TRAP220 and that a direct interaction between PPARγ and Mediator through MED1/TRAP220 is not essential either for PPARγ-stimulated adipogenesis or for PPARγ target gene expression in cultured fibroblasts. As Mediator is apparently essential for PPARγ transcriptional activity, our data indicate the presence of alternative mechanisms for Mediator recruitment, possibly through intermediate cofactors or other cofactors that are functionally redundant with MED1/TRAP220.
机译:介体是连接转录激活因子和RNA聚合酶II的通用共激活因子复合物。最近的工作表明,过氧化物酶体增殖物激活的受体γ(PPARγ)刺激的小鼠胚胎成纤维细胞(MEFs)的脂肪形成需要介体的与核受体相互作用的MED1 / TRAP220亚基。但是,分子机制仍然不确定。在这里,我们显示了细胞内PPARγ-介体相互作用,需要在MED1 / TRAP220上具有两个LXXLL核受体识别基序,此外,我们还显示完整的LXXLL基序对于重构的无细胞转录系统中的最佳PPARγ功能至关重要。出人意料的是,MED1 / TRAP220的一个保守的N端区域缺少LXXLL基序,但被整合到介体中,完全支持PPARγ刺激的脂肪形成。此外,在未分化的MEF中,MED1 / TRAP220对于PPARγ介导的靶基因激活以及在aP2靶基因启动子上将介体募集到PPAR反应元件上都是不可缺少的。然而,PPARγ在缺乏对介体复合物完整性至关重要的亚基(MED24 / TRAP100)的细胞中显示出明显降低的转录活性,表明对PPARγ功能的一般介体需求。这些结果表明对MED1 / TRAP220有条件的要求,并且PPARγ和介质之间通过MED1 / TRAP220的直接相互作用对于培养的成纤维细胞中PPARγ刺激的脂肪形成或PPARγ靶基因表达不是必需的。由于介体显然是PPARγ转录活性所必需的,因此我们的数据表明介导募集其他机制的可能是通过中间辅因子或功能上与MED1 / TRAP220冗余的其他辅因子。

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