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底物扭曲有助于乳清酸 5′-单磷酸脱羧酶的催化。

Substrate distortion contributes to the catalysis of orotidine 5'-monophosphate decarboxylase.

机构信息

Department of Chemistry, Graduate School of Science, Kyoto University , Sakyo-ku, Kyoto 606-8502, Japan.

出版信息

J Am Chem Soc. 2013 Nov 20;135(46):17432-43. doi: 10.1021/ja408197k. Epub 2013 Nov 11.

Abstract

Orotidine 5'-monophosphate decarboxylase (ODCase) accelerates the decarboxylation of orotidine 5'-monophosphate (OMP) to uridine 5'-monophosphate (UMP) by 17 orders of magnitude. Eight new crystal structures with ligand analogues combined with computational analyses of the enzyme's short-lived intermediates and the intrinsic electronic energies to distort the substrate and other ligands improve our understanding of the still controversially discussed reaction mechanism. In their respective complexes, 6-methyl-UMP displays significant distortion of its methyl substituent bond, 6-amino-UMP shows the competition between the K72 and C6 substituents for a position close to D70, and the methyl and ethyl esters of OMP both induce rotation of the carboxylate group substituent out of the plane of the pyrimidine ring. Molecular dynamics and quantum mechanics/molecular mechanics computations of the enzyme-substrate complex also show the bond between the carboxylate group and the pyrimidine ring to be distorted, with the distortion contributing a 10-15% decrease of the ΔΔG(⧧) value. These results are consistent with ODCase using both substrate distortion and transition-state stabilization, primarily exerted by K72, in its catalysis of the OMP decarboxylation reaction.

摘要

乳清酸 5'-单磷酸脱羧酶 (ODCase) 通过 17 个数量级加速乳清酸 5'-单磷酸 (OMP) 的脱羧作用生成尿嘧啶 5'-单磷酸 (UMP)。结合酶的短寿命中间体的计算分析以及固有电子能量对底物和其他配体的扭曲,与配体类似物的 8 个新晶体结构提高了我们对仍有争议的反应机制的理解。在各自的复合物中,6-甲基-UMP 显示出其甲基取代基键的明显扭曲,6-氨基-UMP 显示出 K72 和 C6 取代基之间争夺接近 D70 的位置的竞争,以及 OMP 的甲基和乙基酯都诱导羧酸盐取代基绕嘧啶环的平面旋转。酶-底物复合物的分子动力学和量子力学/分子力学计算也表明,羧酸盐基团和嘧啶环之间的键被扭曲,这种扭曲导致 ΔΔG(⧧) 值降低 10-15%。这些结果与 ODCase 利用底物扭曲和过渡态稳定化,主要由 K72 施加,在其 OMP 脱羧反应的催化中一致。

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