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激素结合型心钠素受体胞外域的晶体结构:跨膜信号转导的旋转机制

Crystal structure of hormone-bound atrial natriuretic peptide receptor extracellular domain: rotation mechanism for transmembrane signal transduction.

作者信息

Ogawa Haruo, Qiu Yue, Ogata Craig M, Misono Kunio S

机构信息

Lerner Research Institute, Cleveland Clinic Foundation, Cleveland, OH 44195, USA.

出版信息

J Biol Chem. 2004 Jul 2;279(27):28625-31. doi: 10.1074/jbc.M313222200. Epub 2004 Apr 26.

Abstract

A cardiac hormone, atrial natriuretic peptide (ANP), plays a major role in blood pressure and volume regulation. ANP activities are mediated by a single span transmembrane receptor carrying intrinsic guanylate cyclase activity. ANP binding to its extracellular domain stimulates guanylate cyclase activity by an as yet unknown mechanism. Here we report the crystal structure of dimerized extracellular hormone-binding domain in complex with ANP. The structural comparison with the unliganded receptor reveals that hormone binding causes the two receptor monomers to undergo an intermolecular twist with little intramolecular conformational change. This motion produces a Ferris wheel-like translocation of two juxtamembrane domains in the dimer with essentially no change in the interdomain distance. This movement alters the relative orientation of the two domains by a shift equivalent to counterclockwise rotation of each by 24 degrees. These results suggest that transmembrane signaling by the ANP receptor is initiated via a hormone-induced rotation mechanism.

摘要

一种心脏激素,即心房利钠肽(ANP),在血压和血容量调节中起主要作用。ANP的活性由一种具有内在鸟苷酸环化酶活性的单跨膜受体介导。ANP与其细胞外结构域的结合通过一种尚不清楚的机制刺激鸟苷酸环化酶活性。在此,我们报道了与ANP结合的二聚化细胞外激素结合结构域的晶体结构。与未结合配体的受体的结构比较表明,激素结合导致两个受体单体发生分子间扭曲,而分子内构象变化很小。这种运动在二聚体中产生两个近膜结构域的类似摩天轮的移位,结构域间距离基本不变。这种移动通过相当于每个结构域逆时针旋转24度的移位改变了两个结构域的相对取向。这些结果表明,ANP受体的跨膜信号传导是通过激素诱导的旋转机制启动的。

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