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低分辨率分子模型揭示了 PPAR 的寡聚状态及其在溶液中的结构域构象组织。

Low-resolution molecular models reveal the oligomeric state of the PPAR and the conformational organization of its domains in solution.

机构信息

Institute of Physics of São Carlos, Universidade de São Paulo, São Carlos, São Paulo, Brazil.

出版信息

PLoS One. 2012;7(2):e31852. doi: 10.1371/journal.pone.0031852. Epub 2012 Feb 21.

Abstract

The peroxisome proliferator-activated receptors (PPARs) regulate genes involved in lipid and carbohydrate metabolism, and are targets of drugs approved for human use. Whereas the crystallographic structure of the complex of full length PPARγ and RXRα is known, structural alterations induced by heterodimer formation and DNA contacts are not well understood. Herein, we report a small-angle X-ray scattering analysis of the oligomeric state of hPPARγ alone and in the presence of retinoid X receptor (RXR). The results reveal that, in contrast with other studied nuclear receptors, which predominantly form dimers in solution, hPPARγ remains in the monomeric form by itself but forms heterodimers with hRXRα. The low-resolution models of hPPARγ/RXRα complexes predict significant changes in opening angle between heterodimerization partners (LBD) and extended and asymmetric shape of the dimer (LBD-DBD) as compared with X-ray structure of the full-length receptor bound to DNA. These differences between our SAXS models and the high-resolution crystallographic structure might suggest that there are different conformations of functional heterodimer complex in solution. Accordingly, hydrogen/deuterium exchange experiments reveal that the heterodimer binding to DNA promotes more compact and less solvent-accessible conformation of the receptor complex.

摘要

过氧化物酶体增殖物激活受体 (PPARs) 调节与脂质和碳水化合物代谢相关的基因,是已批准用于人类的药物的作用靶点。虽然全长 PPARγ 和 RXRα 复合物的晶体结构是已知的,但异二聚体形成和 DNA 接触引起的结构改变还不是很清楚。在此,我们报告了 hPPARγ 单体和与视黄醇 X 受体 (RXR) 存在时的寡聚状态的小角度 X 射线散射分析。结果表明,与其他研究的核受体不同,这些核受体在溶液中主要形成二聚体,hPPARγ 本身仍以单体形式存在,但与 hRXRα 形成异二聚体。与全长受体与 DNA 结合的 X 射线结构相比,hPPARγ/RXRα 复合物的低分辨率模型预测异二聚化伴侣 (LBD) 之间的开口角度和二聚体 (LBD-DBD) 的扩展和不对称形状会发生显著变化。与我们的 SAXS 模型和高分辨率晶体结构之间的这些差异可能表明在溶液中存在功能异二聚体复合物的不同构象。因此,氢/氘交换实验表明,异二聚体与 DNA 的结合促进了受体复合物更紧凑和溶剂可及性更低的构象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/175d/3283691/6775e96dbb55/pone.0031852.g001.jpg

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