Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, 2333 CC, Leiden, The Netherlands.
Commun Biol. 2024 Feb 17;7(1):197. doi: 10.1038/s42003-024-05868-5.
Phenotypic effects of mutations are highly dependent on the genetic backgrounds in which they occur, due to epistatic effects. To test how easily the loss of enzyme activity can be compensated for, we screen mutant libraries of BlaC, a β-lactamase from Mycobacterium tuberculosis, for fitness in the presence of carbenicillin and the inhibitor clavulanic acid. Using a semi-rational approach and deep sequencing, we prepare four double-site saturation libraries and determine the relative fitness effect for 1534/1540 (99.6%) of the unique library members at two temperatures. Each library comprises variants of a residue known to be relevant for clavulanic acid resistance as well as residue 105, which regulates access to the active site. Variants with greatly improved fitness were identified within each library, demonstrating that compensatory mutations for loss of activity can be readily found. In most cases, the fittest variants are a result of positive epistasis, indicating strong synergistic effects between the chosen residue pairs. Our study sheds light on a role of epistasis in the evolution of functional residues and underlines the highly adaptive potential of BlaC.
由于上位效应的影响,突变的表型效应高度依赖于它们发生的遗传背景。为了测试酶活性丧失的补偿难度,我们筛选了来自结核分枝杆菌的β-内酰胺酶 BlaC 的突变文库,以检测它们在卡那西林和抑制剂克拉维酸存在下的适应性。通过半理性方法和深度测序,我们制备了四个双位点饱和文库,并在两个温度下确定了 1534/1540(99.6%)独特文库成员的相对适应性效应。每个文库都包含已知与克拉维酸耐药相关的残基以及调节进入活性位点的残基 105 的变体。在每个文库中都鉴定出了适应性大大提高的变体,证明可以很容易地找到补偿活性丧失的突变。在大多数情况下,适应性最强的变体是正上位效应的结果,表明所选残基对之间存在强烈的协同效应。我们的研究揭示了上位效应对功能残基进化的作用,并强调了 BlaC 的高度适应性潜力。