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牛细胞视黄醇结合蛋白与视黄醇和类视黄醇的相互作用。

Interactions with retinol and retinoids of bovine cellular retinol-binding protein.

作者信息

Malpeli G, Stoppini M, Zapponi M C, Folli C, Berni R

机构信息

Institute of Biochemical Sciences, University of Parma, Italy.

出版信息

Eur J Biochem. 1995 Apr 15;229(2):486-93.

PMID:7744071
Abstract

The interactions with retinol and retinol analogs of bovine cellular retinol-binding protein (CRBP) have been investigated, by means of fluorescence titrations, to obtain more information on the structural features of retinoid that may be required for their interaction with the binding protein. An approximately stoichiometric binding of retinol to bovine CRBP (K'd approximately 2 nM) has been found in direct binding assays. Although retinal exhibited relatively high binding affinity to bovine CRBP (K'd approximately 30 nM), a large excess of the retinoid could not compete with retinol for the carrier protein. On the assumption that retinol and retinal interact with the same binding site, this result indicates that the above-mentioned apparent dissociation constant for retinol.CRBP may be an overestimate and that its value may be as low as 0.1 nM. The finding of an exceedingly tight binding of retinol to CRBP provides further support for the possible role of CRBP-bound retinol, rather than its uncomplexed labile form, as substrate of enzymes involved in the metabolism of the vitamin. The results of these and previous studies indicate that CRBP is particularly sensitive to modifications of the retinol hydroxyl end group. Axerophthene, a retinol analog bearing a hydrogen atom in place of the hydroxyl end group, and beta-ionone exhibit rather low binding affinities for CRBP (K'd approximately 0.2 microM and approximately 4 microM, respectively), suggesting that the hydroxyl group and isoprene tail moieties contribute substantially to the retinol-binding affinity and specificity. These findings are consistent with the indications emerging from the three-dimensional structure determination of retinol.CRBP [Cowan, S. W., Newcomer, M. E. & Jones, T. A. (1993) J. Mol. Biol. 230, 1225-1246]. Additionally, the bulky end groups of fenretinide and N-ethyl retinamide replacing the retinol hydroxyl group have been found to prevent retinoid binding to CRBP. The primary structure of bovine CRBP has been determined and is highly similar to the structures of both human and rat CRBP (97% and 95% identical, respectively).

摘要

通过荧光滴定法研究了牛细胞视黄醇结合蛋白(CRBP)与视黄醇及视黄醇类似物的相互作用,以获取更多关于类视黄醇结构特征的信息,这些结构特征可能是其与结合蛋白相互作用所必需的。在直接结合试验中发现视黄醇与牛CRBP的结合近似化学计量比(K'd约为2 nM)。虽然视黄醛对牛CRBP表现出相对较高的结合亲和力(K'd约为30 nM),但大量过量的类视黄醇不能与视黄醇竞争载体蛋白。假设视黄醇和视黄醛与同一结合位点相互作用,该结果表明上述视黄醇-CRBP的表观解离常数可能被高估,其值可能低至0.1 nM。视黄醇与CRBP结合极其紧密这一发现,进一步支持了与CRBP结合的视黄醇而非其未复合的不稳定形式,可能作为参与维生素代谢的酶的底物这一观点。这些研究及先前研究的结果表明,CRBP对视黄醇羟基端基的修饰特别敏感。阿西罗芬(一种在羟基端基处带有氢原子的视黄醇类似物)和β-紫罗兰酮对CRBP的结合亲和力相当低(K'd分别约为0.2 μM和约4 μM),这表明羟基和异戊二烯尾部基团对视黄醇结合亲和力和特异性有很大贡献。这些发现与视黄醇-CRBP三维结构测定的结果一致[考恩,S.W.,纽科默,M.E. & 琼斯,T.A.(1993年)《分子生物学杂志》230卷,1225 - 1246页]。此外,已发现取代视黄醇羟基的芬维A胺和N - 乙基视黄酰胺的庞大端基会阻止类视黄醇与CRBP结合。已确定牛CRBP的一级结构,它与人及大鼠CRBP的结构高度相似(分别有97%和95%相同)。

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