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High-Order Epistasis in Catalytic Power of Dihydrofolate Reductase Gives Rise to a Rugged Fitness Landscape in the Presence of Trimethoprim Selection

机译:二氢叶酸还原酶催化能力的高阶上位性在甲氧苄啶选择存在下使崎to的健身环境上升

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摘要

Evolutionary fitness landscapes of several antibiotic target proteins have been comprehensively mapped showing strong high-order epistasis between mutations, but understanding these effects at the biochemical and structural levels remained open. Here, we carried out an extensive experimental and computational study to quantitatively understand the evolutionary dynamics of Escherichia coli dihydrofolate reductase (DHFR) enzyme in the presence of trimethoprim-induced selection. To facilitate this, we developed a new in vitro assay for rapidly characterizing DHFR steady-state kinetics. Biochemical and structural characterization of resistance-conferring mutations targeting a total of ten residues spanning the substrate binding pocket of DHFR revealed distinct changes in the catalytic efficiencies of mutated DHFR enzymes. Next, we measured biochemical parameters (Km, Ki, and kcat) for a mutant library carrying all possible combinations of six resistance-conferring DHFR mutations and quantified epistatic interactions between them. We found that the high-order epistasis in catalytic power of DHFR (kcat and Km) creates a rugged fitness landscape under trimethoprim selection. Taken together, our data provide a concrete illustration of how epistatic coupling at the level of biochemical parameters can give rise to complex fitness landscapes, and suggest new strategies for developing mutant specific inhibitors.
机译:已经对几种抗生素靶蛋白的进化适应性景观进行了全面的定位,显示了突变之间强烈的高阶上位性,但在生化和结构水平上了解这些作用的方法仍未解决。在这里,我们进行了广泛的实验和计算研究,以定量了解在甲氧苄啶诱导的选择下大肠杆菌二氢叶酸还原酶(DHFR)酶的进化动力学。为了促进这一点,我们开发了一种新的体外测定法,用于快速表征DHFR稳态动力学。靶向抗性的突变的生化和结构特征,这些突变靶向跨越DHFR底物结合口袋的总共十个残基,揭示了突变的DHFR酶催化效率的明显变化。接下来,我们测量了一个突变文库的生化参数(Km,Ki和kcat),该文库携带了六种赋予抗性的DHFR突变的所有可能组合,并定量了它们之间的上位相互作用。我们发现,在甲氧苄啶选择下,DHFR(kcat和Km)的催化能力的高位上位创造了崎fitness的健身环境。综上所述,我们的数据为生化参数水平上的上位偶联如何产生复杂的适应环境提供了具体例证,并提出了开发突变体特异性抑制剂的新策略。

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