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激素对弹簧加载型利钠肽受体二聚体的变构激活。

Allosteric activation of a spring-loaded natriuretic peptide receptor dimer by hormone.

作者信息

Martick M M, Garcia K C

机构信息

Departments of Microbiology and Immunology and Structural Biology, Stanford University School of Medicine, Fairchild D319, 299 Campus Drive, Stanford, CA 93405-5124, USA.

出版信息

Science. 2001 Aug 31;293(5535):1657-62. doi: 10.1126/science.1062246.

Abstract

Natriuretic peptides (NPs) are vasoactive cyclic-peptide hormones important in blood pressure regulation through interaction with natriuretic cell-surface receptors. We report the hormone-binding thermodynamics and crystal structures at 2.9 and 2.0 angstroms, respectively, of the extracellular domain of the unliganded human NP receptor (NPR-C) and its complex with CNP, a 22-amino acid NP. A single CNP molecule is bound in the interface of an NPR-C dimer, resulting in asymmetric interactions between the hormone and the symmetrically related receptors. Hormone binding induces a 20 angstrom closure between the membrane-proximal domains of the dimer. In each monomer, the opening of an interdomain cleft, which is tethered together by a linker peptide acting as a molecular spring, is likely a conserved allosteric trigger for intracellular signaling by the natriuretic receptor family.

摘要

利钠肽(NPs)是血管活性环肽激素,通过与利钠细胞表面受体相互作用在血压调节中起重要作用。我们分别报道了未结合配体的人NP受体(NPR-C)细胞外结构域及其与22个氨基酸的NP——C型利钠肽(CNP)复合物在2.9埃和2.0埃分辨率下的激素结合热力学和晶体结构。单个CNP分子结合在NPR-C二聚体的界面中,导致激素与对称相关受体之间的不对称相互作用。激素结合导致二聚体膜近端结构域之间发生20埃的闭合。在每个单体中,由充当分子弹簧的连接肽拴在一起的结构域间裂隙的打开,可能是利钠肽受体家族细胞内信号传导的保守变构触发因素。

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