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Hydroxyl groups in the ββ sandwich of metallo-β-lactamases favor enzyme activity: a computational protein design study

机译:金属β-内酰胺酶ββ三明治中的羟基有利于酶的活性:计算蛋白质设计研究

摘要

Metallo-β-lactamases challenge antimicrobial therapies by their ability to hydrolyze and inactivate a broad spectrum of β-lactam antibiotics. The potential of these enzymes to acquire enhanced catalytic efficiency through mutation is of great concern. Here, we explore the potential of computational protein design to predict mutants of the imipenemase IMP-1 that modulate the catalytic efficiency of the enzyme against a range of substrates. Focusing on the four amino acid positions 69, 121, 218, and 262, we carried out a number of design calculations. Two mutant enzymes were predicted: the single mutant S262A and the double mutant F218Y-S262A. Compared to IMP-1, the single mutant (S262A) results in the loss of a hydroxyl group and the double mutant (F218Y-S262A) results in a hydroxyl transfer from position 262 to position 218. The presence of both hydroxyl groups at positions 218 and 262 was tested by examining the mutant F218Y. Kinetic constants of IMP-1, the two computationally designed mutants (S262A and F218Y-S262A), and the hydroxyl addition mutant (F218Y) were determined with seven substrates. Catalytic efficiencies are highest for the enzyme with both hydroxyl groups (F218Y) and lowest for the enzyme lacking both hydroxyl groups (S262A). The catalytic efficiencies of the two enzymes with one hydroxyl group each are intermediate, with the F218Y-S262A double mutant exhibiting enhanced hydrolysis of nitrocefin, cephalothin, and cefotaxime relative to IMP-1.
机译:金属β-内酰胺酶通过水解和灭活各种β-内酰胺抗生素的能力来挑战抗菌疗法。这些酶通过突变获得增强的催化效率的潜力备受关注。在这里,我们探索了计算蛋白设计的潜力,以预测亚胺培南酶IMP-1的突变体,该突变体可调节酶对一系列底物的催化效率。着眼于四个氨基酸位置69、121、218和262,我们进行了许多设计计算。预测了两种突变酶:单突变S262A和双突变F218Y-S262A。与IMP-1相比,单突变体(S262A)导致羟基丢失,而双突变体(F218Y-S262A)导致羟基从262转移到218。在218处均存在两个羟基通过检查突变体F218Y测试了262。用七个底物测定IMP-1的动力学常数,两个计算设计的突变体(S262A和F218Y-S262A)和羟基加成突变体(F218Y)。带有两个羟基的酶的催化效率最高(F218Y),而没有两个羟基的酶的催化效率最低(S262A)。两种具有一个羟基的酶的催化效率处于中间水平,相对于IMP-1,F218Y-S262A双突变体的硝化甘油,头孢菌素和头孢噻肟的水解增强。

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