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High-throughput screening for enhanced protein stability

机译:高通量筛选可增强蛋白质稳定性

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摘要

High thermostability of proteins is a prerequisite for their implementation in biocatalytic processes and in the evolution of new functions. Various protein engineering methods have been applied to the evolution of increased thermostability, including the use of combinatorial design where a diverse library of proteins is generated and screened for variants with increased stability. Current trends are toward the use of data-driven methods that reduce the library size by using available data to choose areas of the protein to target, without specifying the precise changes. For example, the half-lives of subtilisin and a Bacillus subtilis lipase were increased 1500-fold and 300-fold, respectively, using a crystal structure to guide mutagenesis choices. Sequence homology based methods have also produced libraries where 50% of the variants have improved thermostability. Moreover, advances in the high-throughput measurement of denaturation curves and the application of selection methods to thermostability evolution have enabled the screening of larger libraries. The combination of these methods will lead to the rapid improvement of protein stability for biotechnological purposes.
机译:蛋白质的高热稳定性是其在生物催化过程中以及在新功能演变中的先决条件。各种蛋白质工程方法已应用于提高热稳定性的进化,包括使用组合设计,其中生成了多种蛋白质文库,并筛选了稳定性提高的变体。当前的趋势是使用数据驱动的方法来减少文库大小,方法是使用可用的数据来选择要靶向的蛋白质区域,而不指定精确的变化。例如,使用晶体结构指导诱变选择,枯草杆菌蛋白酶和枯草芽孢杆菌脂肪酶的半衰期分别增加了1500倍和300倍。基于序列同源性的方法还产生了文库,其中50%的变体具有改善的热稳定性。此外,变性曲线的高通量测量和选择方法在热稳定性进化中的应用进展使得能够筛选更大的文库。这些方法的组合将导致用于生物技术目的的蛋白质稳定性快速提高。

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