首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >X-ray crystallographic identification of a protein-binding site for both all-trans- and 9-cis-retinoic acid.
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X-ray crystallographic identification of a protein-binding site for both all-trans- and 9-cis-retinoic acid.

机译:X-射线晶体学鉴定全反式和9-顺式-视黄酸的蛋白质结合位点。

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摘要

The elucidation of how a protein-binding site might specifically recognize both the all-trans and 9-cis isomers of retinoic acid is of particular interest because of the recently discovered binding specificities of the nuclear receptors for retinoic acid. Two families of nuclear receptors for retinoic acid have been described, which are designated RAR (for retinoic acid receptor) and RXR (for retinoid-X receptor). The RXR family of receptors is specific for 9-cis-retinoic acid, whereas the RAR-type receptor is activated by either 9-cis- or all-trans-retinoic acid. During the x-ray structure determination of a secreted epididymal retinoic acid-binding protein, with and without retinoic acid, we observed an electron density for the bound all-trans-retinoic acid that indicates the protein-bound all-trans form of the vitamin/hormone adopts a horseshoe-like conformation that resembles the structure of the 9-cis isomer of the ligand. We detail here the experiments that indicate the electron density is indeed due to all-trans-retinoic acid and that protein can also bind the 9-cis isomer. This observation and the fact that the same protein also binds the synthetic retinoid (E)-4-[2-(5,6,7,8-tetrahydro-5,5,8,8-tetramethyl-2-naphthalenyl)-1- propenyl]-benzoic acid (TTNPB), a retinoic acid analog that activates RAR but does not activate RXR, suggest that the mechanism by which this protein recognizes both 9-cis- and all-trans-retinoic acids may be analogous to the mechanism used by RAR. Three crystallographic structures of retinol-binding proteins have been described. In each of these structures the retinol binds with the isoprene tail fully extended. This report represents an x-ray crystallographic description of a protein-bound retinoid conformer that adopts a nonextended conformation, and we believe this observation is relevant to the ligand specificities described for the retinoic acid receptors.
机译:由于最近发现了视黄酸核受体的结合特异性,因此阐明蛋白质结合位点如何特异性识别视黄酸的全反式和9-顺式异构体的方法特别引起人们的兴趣。已经描述了视黄酸的两个核受体家族,称为RAR(视黄酸受体)和RXR(视黄醇-X受体)。 RXR受体家族对9-顺式视黄酸具有特异性,而RAR型受体则由9-顺式或全反式视黄酸激活。在分泌的附睾视黄酸结合蛋白(有或没有视黄酸)的X射线结构测定过程中,我们观察到结合的全反式视黄酸的电子密度,表明维生素与蛋白质结合的全反式/激素采用类似于配体的9-顺式异构体结构的马蹄样构象。我们在这里详细说明了表明电子密度确实是由于全反式维甲酸造成的,并且蛋白质也可以结合9-顺式异构体。该观察结果以及相同蛋白质也结合合成类维生素A(E)-4- [2-(5,6,7,8-四氢-5,5,8,8-四甲基-2-萘基)-1的事实-丙烯基]-苯甲酸(TTNPB),一种激活RAR但不激活RXR的视黄酸类似物,表明该蛋白质识别9-顺式和全反式视黄酸的机制可能与该机制相似由RAR使用。已经描述了视黄醇结合蛋白的三种晶体学结构。在这些结构的每一个中,视黄醇与完全延伸的异戊二烯尾巴结合。该报告代表采用未扩展构象的蛋白结合类视黄醇构象异构体的X射线晶体学描述,我们相信该观察结果与针对视黄酸受体描述的配体特异性有关。

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