首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Application of photoaffinity labeling with 3H all trans- and 9-cis-retinoic acids for characterization of cellular retinoic acid–binding proteins I and II
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Application of photoaffinity labeling with 3H all trans- and 9-cis-retinoic acids for characterization of cellular retinoic acid–binding proteins I and II

机译:3H所有反式和9-顺式-视黄酸光亲和标记在表征细胞视黄酸结合蛋白I和II中的应用

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摘要

Cellular retinoic acid–binding proteins (CRABPs) are carrier proteins thought to play a crucial role in the transport and metabolism of all-trans-retinoic acid (atRA) and its derivatives within the cell. This report describes a novel photoaffinity-based binding assay involving competition between potential ligands of CRABP and [3H]atRA or [3H]-9-cis-RA for binding to the atRA-binding sites of CRABP I and II. Photoaffinity labeling of purified CRABPs with [3H]atRA was light- and concentration-dependent, saturable, and protected by several retinoids in a concentration-dependent manner, indicating that binding occurred in the CRABP atRA-binding site. Structure–function relationship studies demonstrated that oxidative changes to the atRA β-ionone ring did not affect ligand potency. However, derivatives lacking a terminal carboxyl group and some cis isomers did not bind to CRABPs. These studies also identified two novel ligands for CRABPs: 5,6-epoxy-RA and retinoyl-β-D-glucuronide (RAG). The labeling of both CRABPs with 9-cis-RA occurred with much lower affinity. Experimental evidence excluded nonspecific binding of RAG to CRABPs and UDP-glucuronosyltransferases, the enzymes responsible for RAG synthesis. These results established that RAG is an effective ligand of CRABPs. Therefore, photoaffinity labeling with [3H]atRA can be used to identify new ligands for CRABP and retinoid nuclear receptors and also provide information concerning the identity of amino acid(s) localized in the atRA-binding site of these proteins.
机译:细胞视黄酸结合蛋白(CRABP)是载体蛋白,被认为在细胞内全反式视黄酸(atRA)及其衍生物的运输和代谢中起着至关重要的作用。本报告介绍了一种基于光亲和力的新型结合测定方法,该方法涉及CRABP和[ 3 H] atRA或[ 3 H] -9-cis-RA潜在配体之间的竞争CRABP I和II的atRA结合位点。用[ 3 H] atRA对纯化的CRABPs进行光亲和性标记是光依赖和浓度依赖,可饱和且受几种类视黄醇以浓度依赖的方式保护的,这表明CRABP atRA结合发生了结合现场。结构-功能关系研究表明,atRAβ-紫罗兰酮环的氧化变化不会影响配体的效力。但是,缺少末端羧基的衍生物和一些顺式异构体不与CRABPs结合。这些研究还确定了CRABP的两个新型配体:5,6-环氧-RA和视黄基-β-D-葡糖醛酸苷(RAG)。用9-顺式-RA标记两个CRABP的亲和力都低得多。实验证据排除了RAG与CRABP和负责RAG合成的酶UDP-葡萄糖醛酸转移酶的非特异性结合。这些结果证明RAG是CRABP的有效配体。因此,用[ 3 H] atRA进行光亲和标记可用于鉴定CRABP和类维生素A核受体的新配体,并提供有关位于atRA结合位点的氨基酸身份的信息这些蛋白质。

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