首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >PRDM16 enhances nuclear receptor-dependent transcription of the brown fat- specific Ucp1 gene through interactions with Mediator subunit MED1
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PRDM16 enhances nuclear receptor-dependent transcription of the brown fat- specific Ucp1 gene through interactions with Mediator subunit MED1

机译:PRDM16通过与介体亚基MED1的相互作用增强棕色脂肪特异性Ucp1基因的核受体依赖性转录。

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摘要

PR domain-containing 16 (PRDM16) induces expression of brown fat-specific genes in brown and beige adipocytes, although the underlying transcription-related mechanisms remain largely unknown. Here, in vitro studies show that PRDM16, through its zinc finger domains, directly interacts with the MED1 subunit of the Mediator complex, is recruited to the enhancer of the brown fat-specific uncoupling protein 1 (Ucp1) gene through this interaction, and enhances thyroid hormone receptor (TR)-driven transcription in a biochemically defined system in a Mediator-dependent manner, thus providing a direct link to the general transcription machinery. Complementary cell-based studies show that upon forskolin treatment, PRDM16 induces Ucp1 expression in undifferentiated murine embryonic fibroblasts, that this induction depends on MED1 and TR, and, consistent with a direct effect, that PRDM16 is recruited to the Ucp1 enhancer. Related studies have defined MED1 and PRDM16 interaction domains important for Ucp1 versus Ppargc1a induction by PRDM16. These results reveal novel mechanisms for PRDM16 function through the Mediator complex.
机译:含PR结构域的16(PRDM16)诱导棕色和米色脂肪细胞中棕色脂肪特异性基因的表达,尽管其潜在的转录相关机制仍不清楚。在这里,体外研究表明PRDM16通过其锌指结构域直接与介体复合物的MED1亚基相互作用,并通过这种相互作用被募集为棕色脂肪特异性解偶联蛋白1(Ucp1)基因的增强子,并增强甲状腺激素受体(TR)在生物化学定义的系统中以介体依赖性方式驱动转录,因此提供了与一般转录机制的直接联系。基于细胞的补充研究表明,在福司高林处理后,PRDM16诱导未分化的鼠胚胎成纤维细胞中的Ucp1表达,这种诱导取决于MED1和TR,并且与直接作用一致,PRDM16被募集到Ucp1增强子上。相关研究已经定义了MED1和PRDM16相互作用域,这对PRDM16对Ucp1与Ppargc1a的诱导很重要。这些结果揭示了通过介体复合体实现PRDM16功能的新机制。

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