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Disorder-to-order transition underlies the structural basis for the assembly of a transcriptionally active PGC-1α/ERRγ complex

机译:无序转换是转录活性PGC-1α/ERRγ复合物装配的结构基础

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摘要

Peroxisome proliferator activated receptor (PPAR) γ coactivator-1α (PGC-1α) is a potent transcriptional coactivator of oxidative metabolism and is induced in response to a variety of environmental cues. It regulates a broad array of target genes by coactivating a whole host of transcription factors. The estrogen-related receptor (ERR) family of nuclear receptors are key PGC-1α partners in the regulation of mitochondrial and tissue-specific oxidative metabolic pathways; these receptors also demonstrate strong physical and functional interactions with this coactivator. Here we perform comprehensive biochemical, biophysical, and structural analyses of the complex formed between PGC-1α and ERRγ. PGC-1α activation domain (PGC-1α2–220) is intrinsically disordered with limited secondary and no defined tertiary structure. Complex formation with ERRγ induces significant changes in the conformational mobility of both partners, highlighted by significant stabilization of the ligand binding domain (ERRγLBD) as determined by HDX (hydrogen/deuterium exchange) and an observed disorder-to-order transition in PGC-1α2–220. Small-angle X-ray scattering studies allow for modeling of the solution structure of the activation domain in the absence and presence of ERRγLBD, revealing a stable and compact binary complex. These data show that PGC-1α2–220 undergoes a large-scale conformational change when binding to the ERRγLBD, leading to substantial compaction of the activation domain. This change results in stable positioning of the N-terminal part of the activation domain of PGC-1α, favorable for assembly of an active transcriptional complex. These data also provide structural insight into the versatile coactivation profile of PGC-1α and can readily be extended to understand other transcriptional coregulators.
机译:过氧化物酶体增殖物激活受体(PPAR)γ共激活因子1α(PGC-1α)是氧化代谢的有效转录共激活因子,可根据各种环境提示而被诱导。它通过共激活大量转录因子来调节广泛的靶基因。核受体的雌激素相关受体(ERR)家族是线粒体和组织特异性氧化代谢途径调控中的关键PGC-1α伙伴。这些受体还显示出与该共活化剂的强烈的物理和功能相互作用。在这里,我们对PGC-1α和ERRγ之间形成的复合物进行了全面的生化,生物物理和结构分析。 PGC-1α激活结构域(PGC-1α 2-220 )本质上是无序的,二级结构有限,三级结构不明确。与ERRγ形成复合物会诱导两个配偶体的构象迁移率发生重大变化,尤其是通过HDX(氢/氘交换)确定的配体结合域(ERRγLBD)的显着稳定以及PGC-1α中观察到的无序转变 2-220 。小角度X射线散射研究允许在不存在和存在ERRγLBD的情况下对激活域的溶液结构进行建模,从而揭示出稳定而紧凑的二元复合物。这些数据表明,PGC-1α 2-220 在与ERRγLBD结合时经历了大规模的构象变化,从而导致了激活域的显着压缩。该改变导致PGC-1α的激活结构域的N-末端部分的稳定定位,这有利于活性转录复合物的组装。这些数据还提供了对PGC-1α通用共激活概况的结构见解,可以很容易地扩展以了解其他转录共调节因子。

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