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胎儿三毛滴虫肌苷单磷酸脱氢酶与底物、辅因子及类似物复合物的晶体结构:随机-有序-无序动力学机制的结构基础

Crystal structures of Tritrichomonasfoetus inosine monophosphate dehydrogenase in complex with substrate, cofactor and analogs: a structural basis for the random-in ordered-out kinetic mechanism.

作者信息

Prosise Glen L, Luecke Hartmut

机构信息

Department of Molecular Biology and Biochemistry University of California, Irvine, CA 92697-3900 USA.

出版信息

J Mol Biol. 2003 Feb 14;326(2):517-27. doi: 10.1016/s0022-2836(02)01383-9.

Abstract

The enzyme inosine monophosphate dehydrogenase (IMPDH) is responsible for the rate-limiting step in guanine nucleotide biosynthesis. Because it is up-regulated in rapidly proliferating cells, human type II IMPDH is actively targeted for immunosuppressive, anticancer, and antiviral chemotherapy. The enzyme employs a random-in ordered-out kinetic mechanism where substrate or cofactor can bind first but product is only released after the cofactor leaves. Due to structural and kinetic differences between mammalian and microbial enzymes, most drugs that are successful in the inhibition of mammalian IMPDH are far less effective against the microbial forms of the enzyme. It is possible that with greater knowledge of the structural mechanism of the microbial enzymes, an effective and selective inhibitor of microbial IMPDH will be developed for use as a drug against multi-drug resistant bacteria and protists. The high-resolution crystal structures of four different complexes of IMPDH from the protozoan parasite Tritrichomonas foetus have been solved: with its substrate IMP, IMP and the inhibitor mycophenolic acid (MPA), the product XMP with MPA, and XMP with the cofactor NAD(+). In addition, a potassium ion has been located at the dimer interface. A structural model for the kinetic mechanism is proposed.

摘要

肌苷单磷酸脱氢酶(IMPDH)是鸟嘌呤核苷酸生物合成限速步骤的关键酶。由于其在快速增殖细胞中上调,人II型IMPDH成为免疫抑制、抗癌和抗病毒化疗的重要靶点。该酶采用随机结合-有序释放的动力学机制,底物或辅因子可先结合,但只有在辅因子离开后产物才会释放。由于哺乳动物和微生物酶在结构和动力学上存在差异,大多数成功抑制哺乳动物IMPDH的药物对微生物形式的该酶效果要差得多。随着对微生物酶结构机制的深入了解,有可能开发出一种有效且选择性的微生物IMPDH抑制剂,用作抗多药耐药细菌和原生生物的药物。已解析了原生动物寄生虫胎儿三毛滴虫IMPDH四种不同复合物的高分辨率晶体结构:与底物肌苷单磷酸(IMP)、IMP和抑制剂霉酚酸(MPA)、产物黄苷单磷酸(XMP)与MPA以及XMP与辅因子烟酰胺腺嘌呤二核苷酸(NAD(+))的复合物。此外,在二聚体界面发现了一个钾离子。提出了动力学机制的结构模型。

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