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Structural basis for regulation of human calcium-sensing receptor by magnesium ions and an unexpected tryptophan derivative co-agonist

机译:镁离子和意料之外的色氨酸衍生物共激动剂调节人钙敏感受体的结构基础

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Ca2+-sensing receptors (CaSRs) modulate calcium and magnesium homeostasis and many (patho)physiological processes by responding to extracellular stimuli, including divalent cations and amino acids. We report the first crystal structure of the extracellular domain (ECD) of human CaSR bound with Mg2+ and a tryptophan derivative ligand at 2.1 ?. The structure reveals key determinants for cooperative activation by metal ions and aromatic amino acids. The unexpected tryptophan derivative was bound in the hinge region between two globular ECD subdomains, and represents a novel high-affinity co-agonist of CaSR. The dissection of structure-function relations by mutagenesis, biochemical, and functional studies provides insights into the molecular basis of human diseases arising from CaSR mutations. The data also provide a novel paradigm for understanding the mechanism of CaSR-mediated signaling that is likely shared by the other family C GPCR [G protein (heterotrimeric guanine nucleotide–binding protein)–coupled receptor] members and can facilitate the development of novel CaSR-based therapeutics.
机译:Ca 2 + 感应受体(CaSRs)通过响应细胞外刺激(包括二价阳离子和氨基酸)来调节钙和镁的体内稳态和许多(病理)生理过程。我们报道了人类CaSR细胞外域(ECD)的第一个晶体结构,该晶体与Mg 2 + 和色氨酸衍生物配体在2.1?处结合。该结构揭示了金属离子和芳香族氨基酸协同激活的关键决定因素。出乎意料的色氨酸衍生物结合在两个球形ECD子域之间的铰链区域,并代表一种新型的CaSR高亲和力共激动剂。通过诱变,生化和功能研究对结构-功能关系进行剖析,可以洞悉由CaSR突变引起的人类疾病的分子基础。数据还为理解CaSR介导的信号传导机制提供了新的范例,该机制可能与其他家族C GPCR [G蛋白(异三聚体鸟嘌呤核苷酸结合蛋白)偶联受体]成员共有,并且可以促进新型CaSR的发展。疗法。

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