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人钙敏感受体胞外结构域固定于硅胶珠作为生物材料:一种从复杂基质“双丹”中识别配体的快速色谱方法。

Extracellular domain of human calcium sensing receptor immobilized to silica beads as biomaterial: A rapid chromatographic method for recognizing ligands from complex matrix 'Shuangdan'.

机构信息

Key Laboratory of Resource Biology and Biotechnology in Western China, Ministry of Education, College of Life Sciences, Northwest University, Xi'an 710069, PR China.

Key Laboratory of Resource Biology and Biotechnology in Western China, Ministry of Education, College of Life Sciences, Northwest University, Xi'an 710069, PR China.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2022 Oct 1;1208:123409. doi: 10.1016/j.jchromb.2022.123409. Epub 2022 Aug 6.

Abstract

Human calcium-sensing receptor (CaSR), a member of the G-protein-coupled receptor superfamily (GPCR), has been a therapeutic target for developing new drugs against calciotropic disorders and non-calciotropic diseases. The highly efficient methodologies for pursuing novel ligands/drugs remained a challenge due to the redundant purification processes of membrane protein in some widely-used methods including NMR, X-ray crystallography, Fluorescence Titration Spectroscopy, and Circular Dichroism. Herein, extracellular domain (ECD) of CaSR as its functional fragment was used to develop a rapid chromatographic method, which involved the synthesis of stationary phase material based on the site-specific covalent reaction of Halogenated alkane dehalogenase (Halo)-tagged ECD of CaSR in cell lysate with 6-chlorocaproic acid modified silica beads, the use of the immobilized CaSR column for revealing the interaction of three known agonists with CaSR and further screening ligands from complex matrix like Chinese herb medicine 'Shuangdan'. The immobilized CaSR column was prepared rapidly without the protein purification and retained a good stability and specificity for at least 35 days. It was revealed that one type of binding sites occurred on CaSR with the binding affinity of neomycin > gentamicin-C / kanamycin, presumably which related to the number of structural amino groups attached. This method allowed for recognizing specifically novel ligands from 'Shuangdan', demonstrating one type of binding sites on CaSR with the binding affinity of gallic acid > caffeic acid > paeonol. These results indicated that, the immobilization of a representative extracellular domain of CaSR to silica beads as biomaterial is feasible to develop a new rapid method, which can be successfully applied in screening novel ligands efficiently from complex matrices.

摘要

人钙敏感受体(CaSR)是 G 蛋白偶联受体超家族(GPCR)的成员,已成为开发治疗钙调节紊乱和非钙调节疾病新药的治疗靶点。由于一些广泛使用的方法(包括 NMR、X 射线晶体学、荧光滴定光谱法和圆二色性)中膜蛋白的冗余纯化过程,用于寻找新配体/药物的高效方法仍然是一个挑战。在此,使用 CaSR 的细胞外结构域(ECD)作为其功能片段来开发一种快速色谱方法,该方法涉及基于半胱氨酸脱卤酶(Halo)标记的 CaSR 的 ECD 与 6-氯己酸修饰的硅胶珠之间的特异性共价反应来合成固定相材料,使用固定化 CaSR 柱来揭示三种已知激动剂与 CaSR 的相互作用,然后从中药“双丹”等复杂基质中进一步筛选配体。固定化 CaSR 柱可以快速制备,无需进行蛋白质纯化,并且至少在 35 天内保持良好的稳定性和特异性。结果表明,CaSR 上存在一种结合位点,其结合亲和力为新霉素>庆大霉素 C/卡那霉素,推测这与附着的结构氨基数量有关。该方法允许从“双丹”中特异性识别新型配体,表明 CaSR 上存在一种结合位点,其结合亲和力为没食子酸>咖啡酸>丹皮酚。这些结果表明,将 CaSR 的代表性细胞外结构域固定到硅胶珠作为生物材料是可行的,可以开发一种新的快速方法,该方法可以有效地从复杂基质中筛选新型配体。

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