变构调节
G蛋白偶联受体
逮捕
细胞生物学
信号转导
化学
变构调节剂
SH3域
生物
生物化学
受体
生物物理学
原癌基因酪氨酸蛋白激酶Src
作者
Fan Yang,Peng Xiao,Changxiu Qu,Qi Liu,Liuyang Wang,Zhixin Liu,Qing‐tao He,Chuan Liu,Jianye Xu,Rui-rui Li,Mengjing Li,Qing Li,Xuzhen Guo,Zhao-ya Yang,Dongfang He,Fan Yi,Ke Ruan,Yuemao Shen,Xiao Yu,Jin‐Peng Sun
标识
DOI:10.1038/s41589-018-0115-3
摘要
Signals from 800 G-protein-coupled receptors (GPCRs) to many SH3 domain-containing proteins (SH3-CPs) regulate important physiological functions. These GPCRs may share a common pathway by signaling to SH3-CPs via agonist-dependent arrestin recruitment rather than through direct interactions. In the present study, 19F-NMR and cellular studies revealed that downstream of GPCR activation engagement of the receptor-phospho-tail with arrestin allosterically regulates the specific conformational states and functional outcomes of remote β-arrestin 1 proline regions (PRs). The observed NMR chemical shifts of arrestin PRs were consistent with the intrinsic efficacy and specificity of SH3 domain recruitment, which was controlled by defined propagation pathways. Moreover, in vitro reconstitution experiments and biophysical results showed that the receptor-arrestin complex promoted SRC kinase activity through an allosteric mechanism. Thus, allosteric regulation of the conformational states of β-arrestin 1 PRs by GPCRs and the allosteric activation of downstream effectors by arrestin are two important mechanisms underlying GPCR-to-SH3-CP signaling.
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