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通过插入/缺失诱变在定向酶进化中访问序列空间的未探索区域。

Accessing unexplored regions of sequence space in directed enzyme evolution via insertion/deletion mutagenesis.

机构信息

Department of Biochemistry, University of Cambridge, Cambridge, CB2 1GA, UK.

Evonetix Ltd, Coldhams Business Park, Norman Way, Cambridge, CB1 3LH, UK.

出版信息

Nat Commun. 2020 Jul 10;11(1):3469. doi: 10.1038/s41467-020-17061-3.

Abstract

Insertions and deletions (InDels) are frequently observed in natural protein evolution, yet their potential remains untapped in laboratory evolution. Here we introduce a transposon-based mutagenesis approach (TRIAD) to generate libraries of random variants with short in-frame InDels, and screen TRIAD libraries to evolve a promiscuous arylesterase activity in a phosphotriesterase. The evolution exhibits features that differ from previous point mutagenesis campaigns: while the average activity of TRIAD variants is more compromised, a larger proportion has successfully adapted for the activity. Different functional profiles emerge: (i) both strong and weak trade-off between activities are observed; (ii) trade-off is more severe (20- to 35-fold increased k/K in arylesterase with 60-400-fold decreases in phosphotriesterase activity) and (iii) improvements are present in k rather than just in K, suggesting adaptive solutions. These distinct features make TRIAD an alternative to widely used point mutagenesis, accessing functional innovations and traversing unexplored fitness landscape regions.

摘要

插入和缺失(InDels)在自然蛋白质进化中经常观察到,但它们在实验室进化中的潜力尚未被开发。在这里,我们引入了一种基于转座子的诱变方法(TRIAD),用于生成具有短框架内 InDels 的随机变体文库,并筛选 TRIAD 文库以在磷酸三酯酶中进化出一种混杂的芳基酯酶活性。该进化表现出与以前的点突变实验不同的特征:虽然 TRIAD 变体的平均活性受到更大的影响,但更多的变体成功地适应了该活性。出现了不同的功能特征:(i)在活性之间观察到强和弱的权衡;(ii)权衡更严重(芳基酯酶的 k/K 增加了 20-35 倍,而磷酸三酯酶的活性降低了 60-400 倍);(iii)改进存在于 k 中,而不仅仅是 K 中,表明适应性解决方案。这些不同的特征使得 TRIAD 成为广泛使用的点突变的替代方法,可用于获取功能创新并探索未开发的适应性景观区域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df6c/7351745/9f60d39afd95/41467_2020_17061_Fig1_HTML.jpg

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