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COUP-TF介导的转录抑制的分子机制:反式抑制和顺式激活抑制的证据

Molecular mechanisms of COUP-TF-mediated transcriptional repression: evidence for transrepression and active repression.

作者信息

Leng X, Cooney A J, Tsai S Y, Tsai M J

机构信息

Department of Cell Biology, Baylor College of Medicine, Hoston, Texas 77030, USA.

出版信息

Mol Cell Biol. 1996 May;16(5):2332-40. doi: 10.1128/MCB.16.5.2332.

Abstract

COUP-TF, an orphan member of the nuclear receptor superfamily, has been proposed to play a key role in regulating organogenesis, neurogenesis, and cellular differentiation during embryonic development. Since heterodimierization is a common theme within the nuclear receptor superfamily and has been demonstrated to modulate transcriptional properties of heterodimeric partners via allosteric interactions, we have devised a strategy to examine the silencing function of COUP-TF in a heterodimeric context. We find that the intrinsic active repression function of COUP-TF is not affected by heterodimerization. Moreover, COUP-TF can transrepress the ligand-dependent activation of its heterodimeric partners without its own DNA binding site. Using receptor deletion mutants in transfection assays, we show that the region necessary for COUP-TF silencing function is not sufficient for its transrepression activity. Furthermore, our studies indicate that in addition to its active repression function, COUP-TF can repress several different types of activator-dependent transactivation. However, this active repression function of COUP-TF may be differentially regulated by some other activator(s). These studies provide new insights into the molecular mechanism(s) of COUP-TF-mediated repression.

摘要

COUP-TF是核受体超家族中的一个孤儿成员,有人提出它在胚胎发育过程中调节器官发生、神经发生和细胞分化方面发挥关键作用。由于异源二聚化是核受体超家族中的一个常见现象,并且已证明通过变构相互作用调节异源二聚体伙伴的转录特性,我们设计了一种策略来研究COUP-TF在异源二聚体环境中的沉默功能。我们发现COUP-TF的内在活性抑制功能不受异源二聚化的影响。此外,COUP-TF可以在没有自身DNA结合位点的情况下反式抑制其异源二聚体伙伴的配体依赖性激活。在转染实验中使用受体缺失突变体,我们表明COUP-TF沉默功能所需的区域不足以实现其反式抑制活性。此外,我们的研究表明,除了其活性抑制功能外,COUP-TF还可以抑制几种不同类型的激活剂依赖性反式激活。然而,COUP-TF的这种活性抑制功能可能受到其他一些激活剂的差异调节。这些研究为COUP-TF介导的抑制的分子机制提供了新的见解。

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