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新型生物发光配体-受体结合测定法在松弛素-RXFP1系统相互作用研究中的应用。

Application of the novel bioluminescent ligand-receptor binding assay to relaxin-RXFP1 system for interaction studies.

作者信息

Wu Qing-Ping, Zhang Lei, Shao Xiao-Xia, Wang Jia-Hui, Gao Yu, Xu Zeng-Guang, Liu Ya-Li, Guo Zhan-Yun

机构信息

Research Center for Translational Medicine at East Hospital, College of Life Sciences and Technology, Tongji University, Shanghai, China.

出版信息

Amino Acids. 2016 Apr;48(4):1099-1107. doi: 10.1007/s00726-015-2146-3. Epub 2016 Jan 14.

Abstract

Relaxin is a prototype of the relaxin family peptide hormones and plays important biological functions by binding and activating the G protein-coupled receptor RXFP1. To study their interactions, in the present work, we applied the newly developed bioluminescent ligand-receptor binding assay to the relaxin-RXFP1 system. First, a fully active easily labeled relaxin, in which three Lys residues of human relaxin-2 were replaced by Arg, was prepared through overexpression of a single-chain precursor in Pichia pastoris and in vitro enzymatic maturation. Thereafter, the B-chain N-terminus of the easily labeled relaxin was chemically cross-linked with a C-terminal cysteine residue of an engineered NanoLuc through a disulfide linkage. Receptor-binding assays demonstrated that the NanoLuc-conjugated relaxin retained high binding affinity with the receptor RXFP1 (K d = 1.11 ± 0.08 nM, n = 3) and was able to sensitively monitor binding of a variety of ligands with RXFP1. Using the novel bioluminescent binding assay, we demonstrated that three highly conserved B-chain Arg residues of relaxin-3 had distinct contributions to binding of the receptor RXFP1. In summary, our present work provides a novel bioluminescent ligand-receptor binding assay for the relaxin-RXFP1 system to facilitate their interaction studies, such as characterization of relaxin analogues or screening novel agonists or antagonists of RXFP1.

摘要

松弛素是松弛素家族肽类激素的原型,通过结合并激活G蛋白偶联受体RXFP1发挥重要的生物学功能。为了研究它们之间的相互作用,在本研究中,我们将新开发的生物发光配体-受体结合测定法应用于松弛素-RXFP1系统。首先,通过在毕赤酵母中过表达单链前体并进行体外酶促成熟,制备了一种完全活性且易于标记的松弛素,其中人松弛素-2的三个赖氨酸残基被精氨酸取代。此后,通过二硫键将易于标记的松弛素的B链N端与工程化纳米荧光素酶的C端半胱氨酸残基进行化学交联。受体结合测定表明,纳米荧光素酶偶联的松弛素与受体RXFP1保持高结合亲和力(Kd = 1.11 ± 0.08 nM,n = 3),并且能够灵敏地监测各种配体与RXFP1的结合。使用新型生物发光结合测定法,我们证明了松弛素-3的三个高度保守的B链精氨酸残基对受体RXFP1的结合有不同贡献。总之,我们目前的工作为松弛素-RXFP1系统提供了一种新型生物发光配体-受体结合测定法,以促进它们的相互作用研究,如松弛素类似物的表征或RXFP1新型激动剂或拮抗剂的筛选。

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