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Protein stability promotes evolvability

机译:蛋白质稳定性促进进化

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摘要

The biophysical properties that enable proteins to so readily evolve to perform diverse biochemical tasks are largely unknown. Here, we show that a protein's capacity to evolve is enhanced by the mutational robustness conferred by extra stability. We use simulations with model lattice proteins to demonstrate how extra stability increases evolvability by allowing a protein to accept a wider range of beneficial mutations while still folding to its native structure. We confirm this view experimentally by mutating marginally stable and thermostable variants of cytochrome P450 BM3. Mutants of the stabilized parent were more likely to exhibit new or improved functions. Only the stabilized P450 parent could tolerate the highly destabilizing mutations needed to confer novel activities such as hydroxylating the antiinflammatory drug naproxen. Our work establishes a crucial link between protein stability and evolution. We show that we can exploit this link to discover protein functions, and we suggest how natural evolution might do the same.
机译:使蛋白质如此容易地进化以执行各种生化任务的生物物理特性在很大程度上尚不清楚。在这里,我们显示出蛋白质的进化能力通过额外稳定性赋予的突变鲁棒性得到增强。我们使用模型晶格蛋白质进行仿真,以展示额外的稳定性如何通过允许蛋白质接受更广泛的有益突变同时仍折叠成其天然结构来增加可进化性。我们通过突变细胞色素P450 BM3的边缘稳定和热稳定变异体,从实验上证实了这一观点。稳定亲本的突变体更有可能表现出新的或改良的功能。只有稳定的P450亲本才能耐受赋予新活性(例如使抗炎药萘普生羟基化)所需的高度不稳定的突变。我们的工作在蛋白质稳定性和进化之间建立了至关重要的联系。我们证明了我们可以利用这种联系来发现蛋白质的功能,并且我们建议自然进化如何做到这一点。

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