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铕标记的人胰岛素样肽3的固相合成作为研究配体-受体相互作用的新型探针。

Solid-phase synthesis of europium-labeled human INSL3 as a novel probe for the study of ligand-receptor interactions.

作者信息

Shabanpoor Fazel, Hughes Richard A, Bathgate Ross A D, Zhang Suode, Scanlon Denis B, Lin Feng, Hossain Mohammed Akhter, Separovic Frances, Wade John D

机构信息

Howard Florey Institute, School of Chemistry, Department of Pharmacology, The University of Melbourne, Victoria 3010, Australia.

出版信息

Bioconjug Chem. 2008 Jul;19(7):1456-63. doi: 10.1021/bc800127p. Epub 2008 Jun 5.

Abstract

An efficient solid-phase synthesis protocol has been developed which, together with regioselective sequential formation of the three disulfide bonds, enabled the preparation of specifically monolanthanide (europium)-labeled human insulin-like peptide 3 (INSL3) for the study of its interaction with its G-protein-coupled receptor, RXFP2, via time-resolved fluorometry. A commercially available chelator, diethylene triamine pentaacetic acid (DTPA), was coupled to the N-terminus of the INSL3 A-chain on the solid phase, and then a coordination complex between europium ion and DTPA was formed using EuCl 3 to protect the chelator from production of an unidentified adduct during subsequent combination of the A- and B-chains. The labeled peptide was purified in high yield using high-performance liquid chromatography with nearly neutral pH buffers to prevent the liberation of Eu (3+) from the chelator. Using time-resolved fluorometry, saturation binding assays were undertaken to determine the binding affinity (p K d) of labeled INSL3 for RXFP2 in HEK-293T cells stably expressing RXFP2. The dissociation constant of DTPA-labeled INSL3 (9.05 +/- 0.03, n = 3) that was obtained from saturation binding experiments was comparable to that of (125)I-labeled INSL3 (9.59 +/- 0.09, n = 3). The receptor binding affinity (p K i) of human INSL3 was determined to be 9.27 +/- 0.06, n = 3, using Eu-DTPA-INSL3 as a labeled ligand, which again is similar to that obtained when (125)I-INSL3 was used as labeled ligand (9.34 +/- 0.02, n = 4). This novel lanthanide-coordinated, DTPA-labeled INSL3 has excellent sensitivity, stability, and high specific activity, properties that will be particularly beneficial in high-throughput screening of INSL3 analogues in structure-activity studies.

摘要

已开发出一种高效的固相合成方案,该方案与三个二硫键的区域选择性顺序形成相结合,能够制备出特异性单镧系元素(铕)标记的人胰岛素样肽3(INSL3),用于通过时间分辨荧光法研究其与G蛋白偶联受体RXFP2的相互作用。一种市售螯合剂二亚乙基三胺五乙酸(DTPA)在固相上与INSL3 A链的N端偶联,然后用EuCl 3形成铕离子与DTPA之间的配位络合物,以保护螯合剂在随后A链和B链结合过程中不产生未鉴定的加合物。使用近中性pH缓冲液的高效液相色谱法以高收率纯化标记的肽,以防止Eu(3+)从螯合剂中释放出来。使用时间分辨荧光法,进行饱和结合试验以确定标记的INSL3对稳定表达RXFP2的HEK-293T细胞中RXFP2的结合亲和力(pKd)。从饱和结合实验中获得的DTPA标记的INSL3的解离常数(9.05±0.03,n = 3)与(125)I标记的INSL3的解离常数(9.59±0.09,n = 3)相当。使用Eu-DTPA-INSL3作为标记配体,测定人INSL3的受体结合亲和力(pKi)为9.27±0.06,n = 3,这再次与使用(125)I-INSL3作为标记配体时获得的结果相似(9.34±0.02,n = 4)。这种新型的镧系元素配位、DTPA标记的INSL3具有出色的灵敏度、稳定性和高比活性,这些特性在INSL3类似物的结构活性研究中的高通量筛选中将特别有益。

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