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Cryptic genetic variation shapes the adaptive evolutionary potential of enzymes

机译:隐性遗传变异塑造酶的适应性进化潜力

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摘要

Genetic variation among orthologous proteins can cause cryptic phenotypic properties that only manifest in changing environments. Such variation may impact the evolvability of proteins, but the underlying molecular basis remains unclear. Here, we performed comparative directed evolution of four orthologous metallo-β-lactamases toward a new function and found that different starting genotypes evolved to distinct evolutionary outcomes. Despite a low initial fitness, one ortholog reached a significantly higher fitness plateau than its counterparts, via increasing catalytic activity. By contrast, the ortholog with the highest initial activity evolved to a less-optimal and phenotypically distinct outcome through changes in expression, oligomerization and activity. We show how cryptic molecular properties and conformational variation of active site residues in the initial genotypes cause epistasis, that could lead to distinct evolutionary outcomes. Our work highlights the importance of understanding the molecular details that connect genetic variation to protein function to improve the prediction of protein evolution.
机译:直系同源蛋白质之间的遗传变异会导致隐性表型特性,仅在不断变化的环境中才会表现出来。这种变化可能会影响蛋白质的进化能力,但尚不清楚潜在的分子基础。在这里,我们进行了四个直系同源金属β-内酰胺酶向新功能的定向比较进化,发现不同的起始基因型进化为不同的进化结果。尽管初始适应性较低,但直链同源物通过增加催化活性达到了比其直立同源物明显更高的适应水平。相比之下,具有最高初始活性的直向同源物通过表达,寡聚化和活性的变化演变为最不理想的且在表型上不同的结果。我们展示了原始基因型中的活性位点残基的隐秘分子特性和构象变化如何导致上位性,这可能导致明显的进化结果。我们的工作凸显了理解将遗传变异与蛋白质功能联系起来的分子细节以改善蛋白质进化预测的重要性。

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