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首页> 外文期刊>Protein Engineering Design and Selection >Bioinformatic analysis of alpha/beta-hydrolase fold enzymes reveals subfamily-specific positions responsible for discrimination of amidase and lipase activities†
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Bioinformatic analysis of alpha/beta-hydrolase fold enzymes reveals subfamily-specific positions responsible for discrimination of amidase and lipase activities†

机译:对α/β-水解酶折叠酶的生物信息学分析揭示了亚家族特异性位置,这些氨基酸负责区分酰胺酶和脂肪酶活性†

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摘要

Superfamily of alpha-beta hydrolases is one of the largest groups of structurally related enzymes with diverse catalytic functions. Bioinformatic analysis was used to study how lipase and amidase catalytic activities are implemented into the same structural framework. Subfamily-specific positions—conserved within lipases and peptidases but different between them—that were supposed to be responsible for functional discrimination have been identified. Mutations at subfamily-specific positions were used to introduce amidase activity into Candida antarctica lipase B (CALB). Molecular modeling was implemented to evaluate influence of selected residues on binding and catalytic conversion of amide substrate by corresponding library of mutants. In silico screening was applied to select reactive enzyme-substrate complexes that satisfy knowledge-based criteria of amidase catalytic activity. Selected CALB variants with substitutions at subfamily-specific positions Gly39, Thr103, Trp104, and Leu278 were produced and showed significant improvement of experimentally measured amidase activity. Based on these results, we suggest that value of subfamily-specific positions should be further explored in order to develop a systematic tool to study structure-function relationship in enzymes and to use this information for rational enzyme engineering.
机译:α-β水解酶的超家族是具有各种催化功能的结构相关酶的最大组之一。使用生物信息学分析来研究脂肪酶和酰胺酶的催化活性如何在同一结构框架中实现。已经确定了脂族和肽酶中保守的亚家族特异性位置,但它们之间存在差异,这些位置被认为是造成功能歧视的原因。使用亚家族特异性位置的突变将酰胺酶活性引入南极假丝酵母脂肪酶B(CALB)。进行分子建模以评估所选残基对相应突变体文库对酰胺底物结合和催化转化的影响。在计算机筛选中应用筛选来选择满足基于知识的酰胺酶催化活性标准的反应性酶-底物复合物。产生了在亚家族特异性位置Gly39,Thr103,Trp104和Leu278上具有取代的选定CALB变体,并显示出实验测量的酰胺酶活性的显着改善。基于这些结果,我们建议应该进一步探索亚家族特异性位置的价值,以便开发一种系统的工具来研究酶的结构-功能关系并将此信息用于合理的酶工程。

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