假单胞菌菌株wbc -3 γ-羟基黏膜半醛脱氢酶的晶体结构研究

Q3 Biochemistry, Genetics and Molecular Biology BMC Structural Biology Pub Date : 2013-11-19 DOI:10.1186/1472-6807-13-30
Jing Su, Cong Zhang, Jun-Jie Zhang, Tiandi Wei, Deyu Zhu, Ning-Yi Zhou, Li chuan Gu
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引用次数: 4

摘要

对硝基酚(PNP)是一种对哺乳动物健康构成威胁的剧毒化合物。pnpe编码的γ-羟粘连半醛脱氢酶在假单胞菌菌株WBC-3中催化γ-羟粘连半醛还原为马来乙酸酯,在PNP分解代谢为Krebs循环中间体中起关键作用。然而,PnpE的催化机理尚不清楚。本文报道了载脂蛋白和NAD结合的PnpE的晶体结构。在PnpE-NAD复合体结构中,NAD位于PnpE的间隙中。辅因子结合位点由两个口袋组成。腺苷和NAD的第一核糖组在一个口袋中结合,烟酰胺环在另一个口袋中结合。六种氨基酸与辅因子相互作用。它们是C281, E247, Q210, W148, I146和K172。高度保守的残基C281和E247对其催化活性至关重要。此外,还进行了酶-底物体系的柔性对接研究,以预测PnpE与其底物γ-羟基粘液半醛之间的相互作用。确定了与底物广泛相互作用并使底物稳定在适合酶催化的方向上的氨基酸。这些残基对催化活性的重要性被相关的位点定向诱变及其生化表征所证实。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Crystal structure of the γ-hydroxymuconic semialdehyde dehydrogenase from Pseudomonas sp. strainWBC-3, a key enzyme involved in para-Nitrophenol degradation

para-Nitrophenol (PNP) is a highly toxic compound with threats to mammalian health. The pnpE-encoded γ-hydroxymuconic semialdehyde dehydrogenase catalyzes the reduction of γ-hydroxymuconic semialdehyde to maleylacetate in Pseudomonas sp. strain WBC-3, playing a key role in the catabolism of PNP to Krebs cycle intermediates. However, the catalyzing mechanism by PnpE has not been well understood.

Here we report the crystal structures of the apo and NAD bound PnpE. In the PnpE-NAD complex structure, NAD is situated in a cleft of PnpE. The cofactor binding site is composed of two pockets. The adenosine and the first ribose group of NAD bind in one pocket and the nicotinamide ring in the other.

Six amino acids have interactions with the cofactor. They are C281, E247, Q210, W148, I146 and K172. Highly conserved residues C281 and E247 were identified to be critical for its catalytic activity. In addition, flexible docking studies of the enzyme-substrate system were performed to predict the interactions between PnpE and its substrate γ-hydroxymuconic semialdehyde. Amino acids that interact extensively with the substrate and stabilize the substrate in an orientation suitable for enzyme catalysis were identified. The importance of these residues for catalytic activity was confirmed by the relevant site-directed mutagenesis and their biochemical characterization.

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来源期刊
CiteScore
3.60
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: BMC Structural Biology is an open access, peer-reviewed journal that considers articles on investigations into the structure of biological macromolecules, including solving structures, structural and functional analyses, and computational modeling.
期刊最新文献
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