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Protein evolution analysis of S-hydroxynitrile lyase by complete sequence design utilizing the INTMSAlign software

机译:使用INTMSAlign软件通过完整序列设计对S-羟腈裂解酶进行蛋白质进化分析

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摘要

Development of software and methods for design of complete sequences of functional proteins could contribute to studies of protein engineering and protein evolution. To this end, we developed the INTMSAlign software, and used it to design functional proteins and evaluate their usefulness. The software could assign both consensus and correlation residues of target proteins. We generated three protein sequences with S-selective hydroxynitrile lyase (S-HNL) activity, which we call designed S-HNLs; these proteins folded as efficiently as the native S-HNL. Sequence and biochemical analysis of the designed S-HNLs suggested that accumulation of neutral mutations occurs during the process of S-HNLs evolution from a low-activity form to a high-activity (native) form. Taken together, our results demonstrate that our software and the associated methods could be applied not only to design of complete sequences, but also to predictions of protein evolution, especially within families such as esterases and S-HNLs.
机译:用于设计功能蛋白完整序列的软件和方法的开发可能有助于蛋白质工程和蛋白质进化的研究。为此,我们开发了INTMSAlign软件,并将其用于设计功能蛋白并评估其实用性。该软件可以分配目标蛋白的共有残基和相关残基。我们产生了具有S选择性羟腈裂解酶(S-HNL)活性的三个蛋白质序列,我们将其称为设计的S-HNL。这些蛋白质的折叠效率与天然S-HNL相同。对设计的S-HNL进行序列和生化分析表明,中性突变的积累发生在S-HNL从低活性形式向高活性(天然)形式演变的过程中。综上所述,我们的结果表明,我们的软件和相关方法不仅可以应用于完整序列的设计,而且可以应用于蛋白质进化的预测,尤其是在酯酶和S-HNLs等家族中。

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