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Distinctive structural motifs co-ordinate the catalytic nucleophile and the residues of the oxyanion hole in the alpha/beta-hydrolase fold enzymes

机译:独特的结构基序协调催化亲核试剂和α-水解酶折叠酶中氧气孔的残留物

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摘要

The alpha/beta-hydrolases (ABH) are among the largest structural families of proteins that are found in nature. Although they vary in their sequence and function, the ABH enzymes use a similar acid-base-nucleophile catalytic mechanism to catalyze reactions on different substrates. Because ABH enzymes are biocatalysts with a wide range of potential applications, protein engineering has taken advantage of their catalytic versatility to develop enzymes with industrial applications. This study is a comprehensive analysis of 40 ABH enzyme families focusing on two identified substructures: the nucleophile zone and the oxyanion zone, which co-ordinate the catalytic nucleophile and the residues of the oxyanion hole, and independently reported as critical for the enzymatic activity. We also frequently observed an aromatic cluster near the nucleophile and oxyanion zones, and opposite the ligand-binding site. The nucleophile zone, the oxyanion zone and the residue cluster enriched in aromatic side chains comprise a three-dimensional structural organization that shapes the active site of ABH enzymes and plays an important role in the enzymatic function by structurally stabilizing the catalytic nucleophile and the residues of the oxyanion hole. The structural data support the notion that the aromatic cluster can participate in co-ordination of the catalytic histidine loop, and properly place the catalytic histidine next to the catalytic nucleophile.
机译:α/β水解酶(ABH)是本质上发现的最大的蛋白质结构系列中。虽然它们在它们的序列和功能中变化,但ABH酶使用类似的酸碱 - 亲核试剂催化机制来催化在不同底物上的反应。由于ABH酶是具有广泛潜在应用的生物催化剂,因此蛋白质工程利用其催化多功能性,以开发与工业应用的酶。该研究是对聚焦在两个鉴定的子结构上的40 ABH酶系列的综合分析:官僚区和氧气区,其统序催化亲核试剂和氧气孔的残基,并独立地报告对酶活性至关重要。我们还经常观察到亲核试剂和氧气区附近的芳族簇,以及与配体结合位点相对。富含芳族侧链富含芳族侧链的亲核试剂区包括一种三维结构组织,其通过在结构稳定催化亲核试剂和残留物中通过在酶促功能和残留物中塑造ABH酶的活性位点并在酶促功能中起重要作用氧气孔。结构数据支持芳族聚类可以参与催化组氨酸环的协调,并适当地将催化组氨酸置于催化亲核试剂旁边的概念。

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