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Combined Approach to Engineer a Highly Active Mutant of Processive Chitinase Hydrolyzing Crystalline Chitin

机译:工程师综合途径,加工依赖胰蛋白酶水解晶壳的高活性突变体

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Serratia marcescens chitinase A (Sm ChiA) processively hydrolyzes recalcitrant biomass crystalline chitin under mild conditions. Here, we combined multiple sequence alignment, site-saturation mutagenesis, and automated protein purification and activity measurement with liquid-handling robot to reduce the number of mutation trials and shorten the screening time for hydrolytic activity improvement of Sm ChiA. The amino acid residues, which are not conserved in the alignment and are close to the aromatic residues along the substrate-binding sites in the crystal structure, were selected for site-saturation mutagenesis. Using the previously identified highly active F232W/F396W mutant as a template, we identified the F232W/F396W/S538V mutant, which shows further improved hydrolytic activity just by trying eight different sites. Importantly, valine was not found in the multiple sequence alignment at Ser538 site of Sm ChiA. Our combined approach allows engineering of highly active enzyme mutants, which cannot be identified only by the introduction of predominant amino acid residues in the multiple sequence alignment.
机译:Serratia marcescens Chitinase a( sm chia)在温和条件下处理顽固的生物质结晶丁蛋白。这里,我们将多个序列取向,位点饱和诱变和自动蛋白质纯化和活性测量组合,与液体处理机器人进行突变试验的数量,并缩短水解活性改善的筛选时间为S> Sm Chia。选择氨基酸残基,其在对准中并不保守并靠近沿晶体结构中的衬底结合位点靠近芳族残留物,用于饱和诱变。使用先前鉴定的高活性F232W / F396W突变体作为模板,我们鉴定了F232W / F396W / S538V突变体,其仅通过尝试八种不同的位点来进一步改善水解活性。重要的是,在SER538 SM Chia的Ser538位点的多序列比上未发现缬氨酸。我们的组合方法允许高活性酶突变体的工程,其不能仅通过引入多序列对准中的主要氨基酸残基来鉴定。

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