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The Ec-NhaA antiporter switches from antagonistic to synergistic antiport upon a single point mutation

机译:Ec-NhaA反向转运蛋白在单点突变后从拮抗反向转运变为协同反向转运

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摘要

The Na+, Li+/H+ antiporter of Escherichia coli (Ec-NhaA) maintains pH, Na+ homeostasis in enterobacteria. We used isothermal titration calorimetry to perform a detailed thermodynamic analysis of Li+ binding to Ec-NhaA and several of its mutants. We found that, in line with the canonical alternative access mechanistic model of secondary transporters, Li+/H+ binding to the antiporter is antagonistically coupled. Binding of Li+ displaces 2 H+ from the binding site. The process is enthalpically driven, the enthalpic gain just compensating for an entropic loss and the buffer-associated enthalpic changes dominate the overall free-energy change. Li+ binding, H+ release and antiporter activity were all affected to the same extent by mutations in the Li+ binding site (D163E, D163N, D164N, D164E), while D133C changed the H+/Li+ stoichiometry to 4. Most striking, however, was the mutation, A167P, which converted the Ec-NhaA antagonistic binding into synergistic binding which is only known to occur in Cl/H+ antiporter.
机译:大肠杆菌(Ec-NhaA)的Na + ,Li + / H + 反向转运蛋白可维持pH值,Na + 肠道细菌体内的稳态。我们用等温滴定热法对Li + 与Ec-NhaA及其几个突变体的结合进行了详细的热力学分析。我们发现,根据二级转运蛋白的规范化替代访问机制模型,Li + / H + 与反向转运蛋白的结合是拮抗偶联的。 Li + 的结合从结合位点置换了2 H + 。该过程是由焓驱动的,焓的增加只是补偿熵的损失,而与缓冲液相关的焓的变化主导了整个自由能的变化。 Li + 的结合,H + 的释放和反转运蛋白活性均受到Li + 结合位点突变的影响(D163E,D163N ,D164N,D164E),而D133C将H + / Li + 化学计量更改为4。然而,最引人注目的是突变A167P,该突变将Ec-NhaA转化为拮抗结合为协同结合,仅在Cl - / H + 反转运蛋白中发生。

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