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结核分枝杆菌莽草酸激酶的晶体结构揭示了LID结构域在催化过程中的动态作用。

Crystal structure of shikimate kinase from Mycobacterium tuberculosis reveals the dynamic role of the LID domain in catalysis.

作者信息

Gu Yijun, Reshetnikova Ludmila, Li Yue, Wu Yan, Yan Honggao, Singh Shivendra, Ji Xinhua

机构信息

Macromolecular Crystallography Laboratory, National Cancer Institute, Frederick, MD 21702, USA.

出版信息

J Mol Biol. 2002 Jun 7;319(3):779-89. doi: 10.1016/S0022-2836(02)00339-X.

Abstract

Shikimate kinase (SK) and other enzymes in the shikimate pathway are potential targets for developing non-toxic antimicrobial agents, herbicides, and anti-parasite drugs, because the pathway is essential in the above species but is absent from mammals. The crystal structure of Mycobacterium tuberculosis SK (MtSK) in complex with MgADP has been determined at 1.8 A resolution, revealing critical information for the structure-based design of novel anti-M. tuberculosis agents. MtSK, with a five-stranded parallel beta-sheet flanked by eight alpha-helices, has three domains: the CORE domain, the shikimate-binding domain (SB), and the LID domain. The ADP molecule is bound with its adenine moiety sandwiched between the side-chains of Arg110 and Pro155, its beta-phosphate group in the P-loop, and the alpha and beta-phosphate groups hydrogen bonded to the guanidinium group of Arg117. Arg117 is located in the LID domain, is strictly conserved in SK sequences, is observed for the first time to interact with any bound nucleotide, and appears to be important in both substrate binding and catalysis. The crystal structure of MtSK (this work) and that of Erwinia chrysanthemi SK suggest a concerted conformational change of the LID and SB domains upon nucleotide binding.

摘要

莽草酸激酶(SK)以及莽草酸途径中的其他酶是开发无毒抗菌剂、除草剂和抗寄生虫药物的潜在靶点,因为该途径在上述物种中至关重要,但在哺乳动物中不存在。结核分枝杆菌SK(MtSK)与MgADP复合物的晶体结构已在1.8埃分辨率下确定,为新型抗结核药物的基于结构的设计提供了关键信息。MtSK具有一个由八条α螺旋包围的五链平行β折叠,有三个结构域:CORE结构域、莽草酸结合结构域(SB)和LID结构域。ADP分子的腺嘌呤部分夹在Arg110和Pro155的侧链之间,其β磷酸基团位于P环中,α和β磷酸基团与Arg117的胍基形成氢键。Arg117位于LID结构域,在SK序列中严格保守,首次观察到它与任何结合的核苷酸相互作用,并且似乎在底物结合和催化中都很重要。MtSK的晶体结构(本研究)和菊欧文氏菌SK的晶体结构表明,核苷酸结合后LID和SB结构域会发生协同构象变化。

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