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利用高分辨率核磁共振光谱和诱变技术对溶液中与工程化前列环素合酶结合的底物类似物进行表征:对前列环素生物合成分子机制的启示

Characterization of the substrate mimic bound to engineered prostacyclin synthase in solution using high-resolution NMR spectroscopy and mutagenesis: implication of the molecular mechanism in biosynthesis of prostacyclin.

作者信息

Ruan Ke-He, Wu Jiaxin, Cervantes Vanessa

机构信息

The Center for Experimental Therapeutics and PharmacoInformatics and Department of Pharmacological and Pharmaceutical Sciences, College of Pharmacy, University of Houston, Houston, Texas 77204, USA.

出版信息

Biochemistry. 2008 Jan 15;47(2):680-8. doi: 10.1021/bi701671q. Epub 2007 Dec 15.

Abstract

High-resolution NMR spectroscopy was used to determine the docking of a substrate (prostaglandin H2) mimic (U46619) to the engineered prostacyclin (PGI2) synthase (PGIS) in solution. The binding of U46619 to the PGIS protein was demonstrated by 1D NMR titration, and the significant perturbation of the chemical shifts of protons at C-11, H2C, and H20 of U46619 were observed upon U46619 binding to the engineered PGIS in a concentration-dependent manner. The detailed conformational change and 3D structure of the PGIS-bound U46619 were further demonstrated by 2D 1H NMR experiments using the transferred NOE technique. The distances between the protons H20 and H2, H18 and H2, and H18 and H4 are shorter following their binding to the PGIS in solution-down to within 5 A. These shorter distances resulted in a widely open conformation, where the triangle shape of the unbound U46619 changed to a more compact conformation with an oval shape. The bound conformation of U46619 fits the crystal structure of the PGIS substrate binding pocket considerably better than that of the unbound U46619. The residues important to the substrate binding in the active site pocket of PGIS were also predicted. For example, Trp282 could be one of the most important residues and is suspected to play a role in the determination of specific catalytic function, which has been established by the docking studies using the NMR structure of the PGIS-bound form of U46619 and the PGIS crystal structure. These studies have provided the structural information for the interaction of the PGIS with its substrate mimic. The noted conformational changes where the C-6 position is closer to the C-9 position of U46619 provided the first experimental data for understanding the molecular mechanism of the catalytic function of PGIS in the isomerization of PGH2 to prostacyclin.

摘要

高分辨率核磁共振光谱法用于确定底物(前列腺素H2)模拟物(U46619)与溶液中工程化前列环素(PGI2)合酶(PGIS)的对接情况。通过一维核磁共振滴定证明了U46619与PGIS蛋白的结合,并且在U46619以浓度依赖方式与工程化PGIS结合时,观察到U46619在C-11、H2C和H20处质子化学位移的显著扰动。使用转移核Overhauser效应(transferred NOE)技术的二维1H NMR实验进一步证明了与PGIS结合的U46619的详细构象变化和三维结构。质子H20与H2、H18与H2以及H18与H4在溶液中与PGIS结合后距离变短,缩短至5埃以内。这些较短的距离导致了一种广泛开放的构象,其中未结合的U46619的三角形形状变为更紧凑的椭圆形构象。与未结合的U46619相比,U46619的结合构象与PGIS底物结合口袋的晶体结构匹配得更好。还预测了PGIS活性位点口袋中对底物结合重要的残基。例如,Trp282可能是最重要的残基之一,并且怀疑其在特定催化功能的确定中起作用,这已通过使用与PGIS结合形式的U46619的NMR结构和PGIS晶体结构的对接研究得到证实。这些研究提供了PGIS与其底物模拟物相互作用的结构信息。U46619的C-6位置更靠近C-9位置的显著构象变化为理解PGIS在将PGH2异构化为前列环素的催化功能的分子机制提供了首个实验数据。

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