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首页> 外文期刊>Journal of Molecular Biology >The Cys154-- Gly mutation in LacY causes constitutive opening of the hydrophilic periplasmic pathway.
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The Cys154-- Gly mutation in LacY causes constitutive opening of the hydrophilic periplasmic pathway.

机译:LacY中的Cys154-> Gly突变导致亲水性周质途径的组成性开放。

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摘要

The lactose permease of Escherichia coli (LacY) is a highly dynamic membrane transport protein, while the Cys154-->Gly mutant is crippled conformationally. The mutant binds sugar with high affinity, but catalyzes very little translocation across the membrane. In order to further investigate the defect in the mutant, fluorescent maleimides were used to examine the accessibility/reactivity of single-Cys LacY in right-side-out membrane vesicles. As shown previously, sugar binding induces an increase in reactivity of single-Cys replacements in the tightly packed periplasmic domain of wild-type LacY, while decreased reactivity is observed on the cytoplasmic side. Thus, the predominant population of wild-type LacY in the membrane is in an inward-facing conformation in the absence of sugar, sugar binding induces opening of a hydrophilic pathway on the periplasmic side, and the sugar-binding site is alternatively accessible to either side of the membrane. In striking contrast, the accessibility/reactivity of periplasmic Cys replacements in the Cys154-->Gly background is very high in the absence of sugar, and sugar binding has little or no effect. The observations indicate that an open hydrophilic pathway is present on the periplasmic side of the Cys154-->Gly mutant and that this pathway is unaffected by ligand binding, a conclusion consistent with findings obtained from single-molecule fluorescence and double electron-electron resonance.
机译:大肠杆菌(LacY)的乳糖通透酶是一种高度动态的膜转运蛋白,而Cys154-> Gly突变体的构象则受到破坏。突变体以高亲和力结合糖,但催化跨膜的转运极少。为了进一步研究该突变体中的缺陷,使用荧光马来酰亚胺来检查单Cys LacY在右侧出膜囊中的可及性/反应性。如前所示,糖结合诱导野生型LacY紧密堆积的周质结构域中单Cys替代物的反应性增加,而在细胞质侧观察到反应性降低。因此,在没有糖的情况下,膜中的主要野生型LacY群体呈向内构型,糖结合诱导了周质侧亲水途径的开放,并且糖结合位点可替代地通过任一途径进入膜的侧面。与之形成鲜明对比的是,在没有糖的情况下,Cys154-> Gly背景中周质Cys置换的可及性/反应性非常高,并且糖结合几乎没有或没有影响。观察结果表明,Cys154-> Gly突变体的周质侧存在开放的亲水性途径,并且该途径不受配体结合的影响,这一结论与从单分子荧光和双电子电子共振得到的结果一致。

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