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首页> 外文期刊>Protein engineering design & selection: PEDS >Biased mutation-assembling: an efficient method for rapid directed evolution through simultaneous mutation accumulation
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Biased mutation-assembling: an efficient method for rapid directed evolution through simultaneous mutation accumulation

机译:偏向突变组装:通过同时突变积累来快速定向进化的有效方法

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摘要

We have developed an efficient optimization technique, 'biased mutation-assembling', for improving protein properties such as thermostability. In this strategy, a mutant library is constructed using the overlap extension polymerase chain reaction technique with DNA fragments from wild-type and phenotypically advantageous mutant genes, in which the number of mutations assembled in the wild-type gene is stochastically controlled by the mixing ratio of the mutant DNA fragments to wild-type fragments. A high mixing ratio results in a mutant composition biased to favor multiple-point mutants. We applied this strategy to improve the thermostability of prolyl endopeptidase from Flavobacterium meningosepticum as a case study and found that the proportion of thermostable mutants in a library increased as the mixing ratio was increased. If the proportion of thermostable mutants increases, the screening effort needed to find them should be reduced. Indeed, we isolated a mutant with a 1200-fold longer activity half-life at 60 degrees C than that of wild-type prolyl endopeptidase after screening only 2000 mutants from a library prepared with a high mixing ratio. Our results indicate that an aggressive accumulation of advantageous mutations leads to an increase in the quality of the mutant library and a reduction in the screening effort required to rind superior mutants.
机译:我们已经开发了一种有效的优化技术,即“有偏突变组装”,用于改善蛋白质特性(如热稳定性)。在这种策略中,使用重叠延伸聚合酶链反应技术构建了一个突变文库,其中包含来自野生型和表型上有利的突变基因的DNA片段,其中野生型基因中组装的突变数受混合比随机控制突变DNA片段变成野生型片段。高混合比导致突变体组成偏向于有利于多点突变体。我们应用这种策略来改善脑膜炎黄杆菌中脯氨酰内肽酶的热稳定性,作为一个案例研究,发现随着混合比例的增加,文库中热稳定突变体的比例也会增加。如果热稳定突变体的比例增加,则应减少寻找它们所需的筛选工作。实际上,在从以高混合比制备的文库中仅筛选了2000个突变体之后,我们分离出了一个突变体,其在60摄氏度时的活性半衰期比野生型脯氨酰内肽酶长了1200倍。我们的结果表明,有利突变的积极积累导致突变体文库质量的提高,并降低了冲洗优良突变体所需的筛选工作。

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