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II型人细胞视黄酸结合蛋白的核磁共振溶液结构:对配体结合的影响

NMR solution structure of type II human cellular retinoic acid binding protein: implications for ligand binding.

作者信息

Wang L, Li Y, Abildgaard F, Markley J L, Yan H

机构信息

Department of Biochemistry, Michigan State University, East Lansing 48824, USA.

出版信息

Biochemistry. 1998 Sep 15;37(37):12727-36. doi: 10.1021/bi9808924.

Abstract

The structure of human apo-cellular retinoic acid binding protein II (apo-CRABPII) in solution at pH 7.3 has been determined by NMR spectroscopy. The sequential assignments of the 1H, 13C, and 15N resonances of apo-CRABPII were established by multinuclear, multidimensional NMR spectroscopy. The solution structure of apo-CRABPII was derived from 2382 experimental NMR restraints using a hybrid distance geometry-simulated annealing protocol. The root-mean-square deviation of the ensemble of 25 refined conformers that represent the structure from the mean coordinate set derived from them was 0.54 +/- 0.18 and 0.92 +/- 0.20 A for the backbone atoms and all heavy atoms, respectively, of all residues except Ala32-Pro39 and Thr57-Glu62, which are in disordered regions. The solution structure of apo-CRABPII is similar to the crystal structure of holo-CRABPII [Kleywegt, G. J., Bergfors, T., Senn, H., Le Motte, P., Gsell, B., Shudo, K., and Jones, T. A. (1994) Structure 2, 1241-1258] except the ligand entrance, which is sufficiently enlarged in the apoprotein to be readily accessible to retinoic acid. The enlargement of the ligand entrance of apo-CRABPII relative to that of holo-CRABPII is due mainly to a concerted conformational change in three structural elements, namely, the second helix, the betaC-betaD loop, and the betaE-betaF loop. Furthermore, the ligand-binding pocket of apo-CRABPII showed evidence of dynamic disorder; among the 21 residues that constitute this pocket, 16 residues had weak or no detectable cross-peaks in the two-dimensional 1H-15N HSQC spectrum recorded under conditions of minimal water saturation or dephasing. Apo-CRABPII is largely monomeric in solution, with no evidence for the dimeric structure shown in the crystal structure of apo-CRABPI which was suggested to be a prerequisite for ligand entry [Thompson, J. R., Bratt, J. M., and Banaszak, L. J. (1995) J. Mol. Biol. 252, 433-446]. Thus, the widening of the ligand entrance required for entry of retinoic acid appears to be a property of monomeric apo-CRABPII.

摘要

已通过核磁共振光谱法测定了人脱辅基细胞视黄酸结合蛋白II(apo-CRABPII)在pH 7.3溶液中的结构。通过多核、多维核磁共振光谱法确定了apo-CRABPII的1H、13C和15N共振的序列归属。apo-CRABPII的溶液结构是使用混合距离几何模拟退火协议从2382个实验核磁共振约束条件推导出来的。对于除Ala32 - Pro39和Thr57 - Glu62(它们处于无序区域)之外的所有残基,代表该结构的25个精修构象体的集合相对于由它们推导的平均坐标集,主链原子和所有重原子的均方根偏差分别为0.54 +/- 0.18 Å和0.92 +/- 0.20 Å。apo-CRABPII的溶液结构与全反式CRABPII的晶体结构相似[Kleywegt, G. J., Bergfors, T., Senn, H., Le Motte, P., Gsell, B., Shudo, K., and Jones, T. A. (1994) Structure 2, 1241 - 1258],除了配体入口,在脱辅基蛋白中该入口充分扩大,使得视黄酸易于进入。apo-CRABPII相对于全反式CRABPII配体入口的扩大主要归因于三个结构元件的协同构象变化,即第二螺旋、βC - βD环和βE - βF环。此外,apo-CRABPII的配体结合口袋显示出动态无序的迹象;在构成该口袋的21个残基中,16个残基在最小水饱和度或去相位条件下记录的二维1H - 15N HSQC谱中具有微弱或不可检测的交叉峰。apo-CRABPII在溶液中主要是单体形式,没有证据表明apo-CRABPI晶体结构中所示的二聚体结构(该结构被认为是配体进入的先决条件)[Thompson, J. R., Bratt, J. M., and Banaszak, L. J. (1995) J. Mol. Biol. 252, 433 - 446]。因此,视黄酸进入所需的配体入口变宽似乎是单体apo-CRABPII的一个特性。

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