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一种调控 PPARγ 转录抑制和激活的分子开关。

A molecular switch regulating transcriptional repression and activation of PPARγ.

机构信息

Department of Integrative Structural and Computational Biology, The Scripps Research Institute, Jupiter, FL, 33458, USA.

Skaggs Graduate School of Chemical and Biological Sciences, The Scripps Research Institute, Jupiter, FL, 33458, USA.

出版信息

Nat Commun. 2020 Feb 19;11(1):956. doi: 10.1038/s41467-020-14750-x.

Abstract

Nuclear receptor (NR) transcription factors use a conserved activation function-2 (AF-2) helix 12 mechanism for agonist-induced coactivator interaction and NR transcriptional activation. In contrast, ligand-induced corepressor-dependent NR repression appears to occur through structurally diverse mechanisms. We report two crystal structures of peroxisome proliferator-activated receptor gamma (PPARγ) in an inverse agonist/corepressor-bound transcriptionally repressive conformation. Helix 12 is displaced from the solvent-exposed active conformation and occupies the orthosteric ligand-binding pocket enabled by a conformational change that doubles the pocket volume. Paramagnetic relaxation enhancement (PRE) NMR and chemical crosslinking mass spectrometry confirm the repressive helix 12 conformation. PRE NMR also defines the mechanism of action of the corepressor-selective inverse agonist T0070907, and reveals that apo-helix 12 exchanges between transcriptionally active and repressive conformations-supporting a fundamental hypothesis in the NR field that helix 12 exchanges between transcriptionally active and repressive conformations.

摘要

核受体 (NR) 转录因子利用保守的激活功能-2 (AF-2) 螺旋 12 机制,实现激动剂诱导的共激活因子相互作用和 NR 转录激活。相比之下,配体诱导的依赖于核心抑制剂的 NR 抑制似乎通过结构不同的机制发生。我们报告了两种处于反向激动剂/核心抑制剂结合的转录抑制构象的过氧化物酶体增殖物激活受体γ (PPARγ) 的晶体结构。螺旋 12 从溶剂暴露的活性构象中位移,并占据由构象变化产生的正位配体结合口袋,该构象变化使口袋体积增加一倍。顺磁弛豫增强 (PRE) NMR 和化学交联质谱证实了抑制性螺旋 12 构象。PRE NMR 还确定了核心抑制剂选择性反向激动剂 T0070907 的作用机制,并揭示了无配体的螺旋 12 在转录活性和抑制性构象之间进行交换——支持 NR 领域的一个基本假设,即螺旋 12 在转录活性和抑制性构象之间进行交换。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d627/7031403/366a579742d1/41467_2020_14750_Fig1_HTML.jpg

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