Likić V A, Juranić N, Macura S, Prendergast F G
Department of Pharmacology Research, Mayo Clinic and Foundation, Rochester, Minnesota 55905, USA.
Protein Sci. 2000 Mar;9(3):497-504. doi: 10.1110/ps.9.3.497.
A single water molecule (w135), buried within the structure of rat intestinal fatty acid binding protein (I-FABP), is investigated by NMR, molecular dynamics simulations, and analysis of known crystal structures. An ordered water molecule was found in structurally analogous position in 24 crystal structures of nine different members of the family of fatty acid binding proteins. There is a remarkable conservation of the local structure near the w135 binding site among different proteins from this family. NMR cross-relaxation measurements imply that w135 is present in the I-FABP:ANS (1-sulfonato-8-(1')anilinonaphthalene) complex in solution with the residence time of >300 ps. Mean-square positional fluctuations of w135 oxygen observed in MD simulations (0.18 and 0.13 A2) are comparable in magnitude to fluctuations exhibited by the backbone atoms and result from highly constrained binding pocket as revealed by Voronoi volumes (averages of 27.0 +/- 1.8 A3 and 24.7 +/- 2.2 A3 for the two simulations). Escape of w135 from its binding pocket was observed only in one MD simulation. The escape process was initiated by interactions with external water molecules and was accompanied by large deformations in beta-strands D and E. Immediately before the release, w135 assumed three distinct states that differ in hydrogen bonding topology and persisted for about 15 ps each. Computer simulations suggest that escape of w135 from the I-FABP matrix is primarily determined by conformational fluctuations of the protein backbone and interactions with external water molecules.
通过核磁共振(NMR)、分子动力学模拟以及对已知晶体结构的分析,对埋藏在大鼠肠脂肪酸结合蛋白(I-FABP)结构中的单个水分子(w135)进行了研究。在脂肪酸结合蛋白家族九个不同成员的24个晶体结构中,在结构类似的位置发现了一个有序水分子。该家族不同蛋白质中,w135结合位点附近的局部结构具有显著的保守性。NMR交叉弛豫测量表明,w135存在于溶液中的I-FABP:ANS(1-磺基-8-(1')苯胺基萘)复合物中,停留时间大于300皮秒。在分子动力学模拟中观察到的w135氧的均方位移波动(0.18和0.13 Ų),其大小与主链原子表现出的波动相当,这是由Voronoi体积揭示的高度受限的结合口袋导致的(两次模拟的平均值分别为27.0±1.8 ų和24.7±2.2 ų)。仅在一次分子动力学模拟中观察到w135从其结合口袋中逸出。逸出过程由与外部水分子的相互作用引发,并伴随着β链D和E的大变形。在释放前,w135呈现出三种不同的状态,它们的氢键拓扑结构不同,每种状态持续约15皮秒。计算机模拟表明,w135从I-FABP基质中的逸出主要由蛋白质主链的构象波动以及与外部水分子的相互作用决定。