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Site-directed alkylation of LacY: effect of the proton electrochemical gradient.

机译:LacY的定点烷基化:质子电化学梯度的影响。

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摘要

Previous N-ethylmaleimide-labeling studies show that ligand binding increases the reactivity of single-Cys mutants located predominantly on the periplasmic side of LacY and decreases reactivity of mutants located for the most part of the cytoplasmic side. Thus, sugar binding appears to induce opening of a periplasmic pathway with closing of the cytoplasmic cavity resulting in alternative access of the sugar-binding site to either side of the membrane. Here we describe the use of a fluorescent alkylating reagent that reproduces the previous observations with respect to sugar binding. We then show that generation of an H(+) electrochemical gradient (Delta(mu (H)+), interior negative) increases the reactivity of single-Cys mutants on the periplasmic side of the sugar-binding site and in the putative hydrophilic pathway. The results suggest that Delta(mu (H)+), like sugar, acts to increase the probability of opening on the periplasmic side of LacY.
机译:以前的N-乙基马来酰亚胺标记研究表明,配体结合增加了主要位于LacY周质侧的单Cys突变体的反应性,并降低了位于大部分细胞质侧的突变体的反应性。因此,糖结合似乎伴随细胞质腔的闭合诱导周质途径的开放,从而导致糖结合位点向膜的任一侧的可替代进入。在这里,我们描述了荧光烷基化试剂的使用,该试剂可重现关于糖结合的先前观察结果。然后,我们表明生成H(+)电化学梯度(Delta(mu(H)+),内部负值)增加了单Cys突变体在糖结合位点的周质侧和推定的亲水途径中的反应性。结果表明,像糖一样,Delta(mu(H)+)起到增加LacY周质侧打开的可能性的作用。

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