首页> 外文OA文献 >The tau 4 activation domain of the thyroid hormone receptor is required for release of a putative corepressor(s) necessary for transcriptional silencing.
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The tau 4 activation domain of the thyroid hormone receptor is required for release of a putative corepressor(s) necessary for transcriptional silencing.

机译:甲状腺激素受体的tau 4激活结构域是释放转录沉默所必需的推定的核心抑制剂所必需的。

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摘要

The C terminus of nuclear hormone receptors is a complex structure that contains multiple functions. We are interested in the mechanism by which thyroid hormone converts its receptor from a transcriptional silencer to an activator of transcription. Both regulatory functions are localized in the ligand binding domain of this receptor superfamily member. In this study, we have identified and characterized several functional domains within the ligand binding domain of the human thyroid hormone receptor (TR beta) conferring transactivation. Interestingly, these domains are localized adjacent to hormone binding sites. One activation domain, designated tau 4, is only 17 amino acids in length and is localized at the extreme C terminus of TR. Deletion of six amino acids of tau 4 resulted in a receptor that could still bind hormone but acted as a constitutive silencer, indicating that tau 4 is required for both transactivation and relief of the silencing functions. In addition, we performed in vivo competition experiments, the results of which suggest that in the absence of tau 4 or hormone, TR is bound by a corepressor protein(s) and that one role of hormone is to release corepressor from the receptor. We propose a general model in which the role of hormone is to induce a conformational change in the receptor that subsequently affects the action of tau 4, leading to both relief of silencing and transcriptional activation.
机译:核激素受体的C端是一个复杂的结构,包含多种功能。我们对甲状腺激素将其受体从转录沉默子转变为转录激活因子的机制感兴趣。两种调节功能均位于该受体超家族成员的配体结合结构域中。在这项研究中,我们已经鉴定和表征了赋予反式激活作用的人甲状腺激素受体(TR beta)的配体结合域内的几个功能域。有趣的是,这些结构域位于激素结合位点附近。一个激活结构域称为tau 4,长度仅为17个氨基酸,位于TR的极端C末端。 tau 4的六个氨基酸的缺失产生了一种受体,该受体仍可以结合激素但充当组成型沉默子,表明tau 4是反式激活和减轻沉默功能所必需的。另外,我们进行了体内竞争实验,其结果表明,在不存在tau 4或激素的情况下,TR被一种共抑制蛋白结合,激素的一种作用是从受体中释放共抑制因子。我们提出了一个通用模型,其中激素的作用是诱导受体的构象变化,继而影响tau 4的作用,从而导致沉默减轻和转录激活。

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