Witter Raiker, Seyfart Lydia, Greiner Georg, Reissmann Siegmund, Weston Jennie, Anders Ernst, Sternberg Ulrich
PAF/IOQ/HF, Friedrich-Schiller-Universität Jena, Max Wien Platz 1, 07743 Jena, Germany.
J Biomol NMR. 2002 Dec;24(4):277-89. doi: 10.1023/a:1021625231147.
A His-X-His pseudotripeptide zinc complex (X is a N-alkyl glycine derivative) similar to the catalytic center of the carbonic anhydrase was computer designed and experimentally synthesized. Using 2D-NMR techniques, all proton, carbon chemical shifts and nuclear overhauser effect signals were assigned. The three-dimensional structure of the complex was determined with the COSMOS (computer simulation of molecular structures) force field by applying 13C bond polarization theory chemical shift pseudo forces and restrictions for NOE distances. From molecular dynamics, simulated annealing simulations and geometry optimizations, the three best force field structures were taken for a final investigation by density functional theory calculations.
设计并合成了一种类似于碳酸酐酶催化中心的His-X-His假三肽锌配合物(X为N-烷基甘氨酸衍生物)。采用二维核磁共振技术,对所有质子、碳化学位移和核Overhauser效应信号进行了归属。利用COSMOS(分子结构计算机模拟)力场,应用13C键极化理论化学位移伪力和NOE距离限制,确定了该配合物的三维结构。通过分子动力学、模拟退火模拟和几何优化,选取了三个最佳力场结构,进行密度泛函理论计算的最终研究。