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Modification of residue 42 of the active site loop with a lysine-mimetic sidechain rescues isochorismate-pyruvate lyase activity in Pseudomonas aeruginosa PchB

机译:的活性位点环具有赖氨酸模拟物侧链救援的残基42修饰异分支酸 - 丙酮酸裂解在绿脓杆菌pchB活性

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摘要

PchB is an isochorismate-pyruvate lyase from Pseudomonas aeruginosa. A positively charged lysine residue is located in a flexible loop that behaves as a lid to the active site, and the lysine residue is required for efficient production of salicylate. A variant of PchB that lacks the lysine at residue 42 has a reduced catalytic free energy of activation of up to 4.4 kcal/mol. Construction of a lysine isosteric residue bearing a positive charge at the appropriate position leads to the recovery of 2.5–2.7 kcal/mol (about 60%) of the 4.4 kcal/mol by chemical rescue. Exogenous addition of ethylamine to the K42A variant leads to a neglible recovery of activity (0.180 kcal/mol, roughly 7% rescue), whereas addition of propylamine caused an additional modest loss in catalytic power (0.056 kcal/mol, or −2% loss). This is consistent with the view that (a) the lysine-42 residue is required in a specific conformation to stabilize the transition state and (b) the correct conformation is achieved for a lysine-mimetic sidechain at site 42 in the course of loop closure, as expected for transition-state stabilization by the side chain ammonio-function. That the positive charge is the main effector of transition state stabilization is shown by the construction of a lysine-isosteric residue capable of exerting steric effects and hydrogen bonding but not electrostatic effects, leading to a modest increase of catalytic power (0.267 – 0.505 kcal/mol of catalytic free energy, or roughly 6 – 11% rescue).
机译:PchB是铜绿假单胞菌的一种等渗丙酮酸丙酮酸裂解酶。带正电荷的赖氨酸残基位于柔性环上,该环充当活性位点的盖子,赖氨酸残基是有效生产水杨酸酯所必需的。在残基42上缺少赖氨酸的PchB的变体具有高达4.4kcal / mol的降低的活化的催化自由能。赖氨酸等位残基在适当位置带有正电荷的构建会导致通过化学拯救回收4.4 kcal / mol的2.5–2.7 kcal / mol(约60%)。向K42A变体中外加乙胺会导致活性恢复缓慢(0.180 kcal / mol,大约7%的拯救),而丙胺的添加会导致催化能力的额外适度损失(0.056 kcal / mol,或-2%损失) )。这与以下观点一致:(a)赖氨酸-42残基需要特定构象以稳定过渡状态,并且(b)在闭环过程中,位点42处的赖氨酸模拟侧链可实现正确的构象如通过侧链氨功能对过渡态稳定所期望的。正电荷是过渡态稳定的主要作用因子,其赖氨酸-等位残基的结构能够发挥立体作用和氢键作用,但不能产生静电作用,从而表明催化能力适度增加(0.267 – 0.505 kcal /摩尔的催化自由能,或约6-11%的救援量)。

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