视黄醇X受体
变构调节
维甲酸
维甲酸受体
辅活化剂
核受体
四级结构
维甲酸受体α
汉普地区
化学
核受体辅活化子1
核受体辅活化子2
DNA结合域
生物物理学
细胞生物学
受体
生物化学
转录因子
绑定域
生物
结合位点
蛋白质亚单位
基因
作者
Vikas Chandra,Dalei Wu,Sheng Li,Nalini Potluri,Youngchang Kim,Fraydoon Rastinejad
标识
DOI:10.1038/s41467-017-00981-y
摘要
Assessing the physical connections and allosteric communications in multi-domain nuclear receptor (NR) polypeptides has remained challenging, with few crystal structures available to show their overall structural organizations. Here we report the quaternary architecture of multi-domain retinoic acid receptor β-retinoic X receptor α (RARβ-RXRα) heterodimer bound to DNA, ligands and coactivator peptides, examined through crystallographic, hydrogen-deuterium exchange mass spectrometry, mutagenesis and functional studies. The RARβ ligand-binding domain (LBD) and DNA-binding domain (DBD) are physically connected to foster allosteric signal transmission between them. Direct comparisons among all the multi-domain NRs studied crystallographically to date show significant variations within their quaternary architectures, rather than a common architecture adhering to strict rules. RXR remains flexible and adaptive by maintaining loosely organized domains, while its heterodimerization partners use a surface patch on their LBDs to form domain-domain interactions with DBDs.Nuclear receptors (NR) are multidomain proteins, which makes their crystallization challenging. Here the authors present the crystal structure of the retinoic acid receptor β-retinoic X receptor α (RARβ-RXRα) heterodimer bound to DNA, ligands and coactivator peptides, which shows that NR quaternary architectures are variable.
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