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通过定点诱变、同源建模和底物对接探究猪氨基酰化酶1的催化中心

Probing the catalytic center of porcine aminoacylase 1 by site-directed mutagenesis, homology modeling and substrate docking.

作者信息

Liu Zhigang, Zhen Zhongliang, Zuo Zhenyu, Wu Yingliang, Liu Aifu, Yi Qingming, Li Wenxin

机构信息

National Key Laboratory of Virology, College of Life Sciences, Wuhan University, Wuhan 430072, PR China.

出版信息

J Biochem. 2006 Mar;139(3):421-30. doi: 10.1093/jb/mvj047.

Abstract

Three-dimensional structural models of porcine aminoacylase 1 (pACY1) were constructed by homology modeling and aligning the structures of members of the M20 peptidase family. After energy minimization and quality evaluation, the best model from the homology modeling was chosen for docking with the best substrate (N-acetyl-L-methionine). The most reasonable binding mode was found among a large number of predicted complexes by using clustering analysis and screening with expert knowledge. Structural analysis revealed that the zinc ion is not likely to bind to the substrate, and that Arg348 and Glu146 play vital roles in binding and catalysis. In the site-directed mutagenesis experiments, mutation of His79, Asp112, Glu147, Arg348, and Glu146, resulted in significant reductions of specific activity, while the wild-type pACY1 overexpressed in Rosetta (DE3) had almost as high a specific activity as the native enzyme. On the basis of these observations, we proposed a revised catalytic mechanism for this metalloenzyme.

摘要

通过同源建模并比对M20肽酶家族成员的结构,构建了猪氨基酰化酶1(pACY1)的三维结构模型。经过能量最小化和质量评估后,从同源建模中选择最佳模型与最佳底物(N - 乙酰 - L - 甲硫氨酸)进行对接。通过聚类分析并结合专业知识筛选,在大量预测的复合物中找到了最合理的结合模式。结构分析表明,锌离子不太可能与底物结合,并且Arg348和Glu146在结合和催化过程中起着至关重要的作用。在定点诱变实验中,His79、Asp112、Glu147、Arg348和Glu146的突变导致比活性显著降低,而在Rosetta(DE3)中过表达的野生型pACY1具有与天然酶几乎一样高的比活性。基于这些观察结果,我们提出了这种金属酶的修正催化机制。

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