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C-C键水解酶MhpC的结构为其催化机制提供了见解。

The structure of the C-C bond hydrolase MhpC provides insights into its catalytic mechanism.

作者信息

Dunn G, Montgomery M G, Mohammed F, Coker A, Cooper J B, Robertson T, Garcia J-L, Bugg T D H, Wood S P

机构信息

Department of Biomolecular Science, University of Southampton, Bassett Crescent East, Southampton, SO16 7PX, UK.

出版信息

J Mol Biol. 2005 Feb 11;346(1):253-65. doi: 10.1016/j.jmb.2004.11.033. Epub 2004 Dec 15.

Abstract

2-Hydroxy-6-ketonona-2,4-diene-1,9-dioic acid 5,6-hydrolase (MhpC) is a 62 kDa homodimeric enzyme of the phenylpropionate degradation pathway of Escherichia coli. The 2.1 A resolution X-ray structure of the native enzyme determined from orthorhombic crystals confirms that it is a member of the alpha/beta hydrolase fold family, comprising eight beta-strands interconnected by loops and helices. The 2.8 A resolution structure of the enzyme co-crystallised with the non-hydrolysable substrate analogue 2,6-diketo-nona-1,9-dioic acid (DKNDA) confirms the location of the active site in a buried channel including Ser110, His263 and Asp235, postulated contributors to a serine protease-like catalytic triad in homologous enzymes. It appears that the ligand binds in two separate orientations. In the first, the C6 keto group of the inhibitor forms a hemi-ketal adduct with the Ser110 side-chain, the C9 carboxylate group interacts, via the intermediacy of a water molecule, with Arg188 at one end of the active site, while the C1 carboxylate group of the inhibitor comes close to His114 at the other end. In the second orientation, the C1 carboxylate group binds at the Arg188 end of the active site and the C9 carboxylate group at the His114 end. These arrangements implicated His114 or His263 as plausible contributors to catalysis of the initial enol/keto tautomerisation of the substrate but lack of conservation of His114 amongst related enzymes and mutagenesis results suggest that His263 is the residue involved. Variability in the quality of the electron density for the inhibitor amongst the eight molecules of the crystal asymmetric unit appears to correlate with alternative positions for the side-chain of His114. This might arise from half-site occupation of the dimeric enzyme and reflect the apparent dissociation of approximately 50% of the keto intermediate from the enzyme during the catalytic cycle.

摘要

2-羟基-6-氧代壬-2,4-二烯-1,9-二酸5,6-水解酶(MhpC)是大肠杆菌苯丙酸降解途径中的一种62 kDa同二聚体酶。从正交晶体确定的天然酶的2.1 Å分辨率X射线结构证实它是α/β水解酶折叠家族的成员,由八个β链通过环和螺旋相互连接组成。与不可水解的底物类似物2,6-二氧代壬-1,9-二酸(DKNDA)共结晶的酶的2.8 Å分辨率结构证实了活性位点位于一个埋藏通道中,包括Ser110、His263和Asp235,推测它们是同源酶中类似丝氨酸蛋白酶催化三联体的贡献者。似乎配体以两种不同的方向结合。第一种情况下,抑制剂的C6酮基与Ser110侧链形成半缩酮加合物,C9羧基通过水分子与活性位点一端的Arg188相互作用,而抑制剂的C1羧基靠近另一端的His114。在第二种方向中,C1羧基在活性位点的Arg188端结合,C9羧基在His114端结合。这些排列表明His114或His263可能是底物初始烯醇/酮互变异构化催化的贡献者,但相关酶中His114缺乏保守性以及诱变结果表明His263是参与的残基。晶体不对称单元的八个分子中抑制剂电子密度质量的变化似乎与His114侧链的替代位置相关。这可能源于二聚体酶的半位点占据,并反映了催化循环中约50%的酮中间体从酶上的明显解离。

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