Chen X, Tordova M, Gilliland G L, Wang L, Li Y, Yan H, Ji X
ABL-Basic Research Program, National Cancer Institute-Frederick Cancer Research and Development Center, Frederick, MD 21702, USA.
J Mol Biol. 1998 May 8;278(3):641-53. doi: 10.1006/jmbi.1998.1734.
The crystal structure of unliganded mutant R111M of human cellular retinoic acid-binding protein type II (apo-CRABPII (R111M)) has been determined at 2.3 A and refined to a crystallographic R-factor of 0. 18. Although the mutant protein has lower affinity for all-trans-retinoic acid (RA) than the wild-type, it is properly folded, and its conformation is very similar to the wild-type. apo-CRABPII (R111M) crystallizes in space group P1 with two molecules in the unit cell. The two molecules have high structural similarity except that their alpha2 helices differ strikingly. Analyses of the molecular conformation and crystal packing environment suggest that one of the two molecules assumes a conformation compatible with RA entry. Three structural elements encompassing the opening of the binding pocket exhibit large conformational changes, when compared with holo-CRABPII, which include the alpha2 helix and the betaC-betaD and betaE-betaF hairpin loops. The alpha2 helix is unwound at its N terminus, which appears to be essential for the opening of the RA-binding pocket. Three arginine side-chains (29, 59, and 132) are found with their guanidino groups pointing into the RA-binding pocket. A three-step mechanism of RA entry has been proposed, addressing the opening of the RA entrance, the electrostatic potential that directs entry of RA into the binding pocket, and the intramolecular interactions that stabilize the RA.CRABPII complex via locking the three flexible structural elements when RA is bound.
已测定人细胞视黄酸结合蛋白II型(脱辅基CRABPII(R111M))的未配体突变体R111M的晶体结构,分辨率为2.3 Å,并精修至晶体学R因子为0.18。尽管该突变蛋白对全反式视黄酸(RA)的亲和力低于野生型,但它折叠正确,其构象与野生型非常相似。脱辅基CRABPII(R111M)在空间群P1中结晶,晶胞中有两个分子。这两个分子具有高度的结构相似性,只是它们的α2螺旋有显著差异。对分子构象和晶体堆积环境的分析表明,两个分子中的一个呈现出与RA进入相容的构象。与全反式视黄酸结合的CRABPII相比,围绕结合口袋开口的三个结构元件表现出较大的构象变化,其中包括α2螺旋以及βC-βD和βE-βF发夹环。α2螺旋在其N端解旋,这似乎对RA结合口袋的打开至关重要。发现三个精氨酸侧链(29、59和132)的胍基指向RA结合口袋。已提出一种三步RA进入机制,涉及RA入口的打开、引导RA进入结合口袋的静电势,以及当RA结合时通过锁定三个柔性结构元件来稳定RA-CRABPII复合物的分子内相互作用。