首页> 外文期刊>Journal of Molecular Biology >Manipulating conformational equilibria in the lactose permease of Escherichia coli.
【24h】

Manipulating conformational equilibria in the lactose permease of Escherichia coli.

机译:操纵大肠杆菌的乳糖通透酶中的构象平衡。

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

A mechanism proposed for lactose/H(+) symport by the lactose permease of Escherichia coli indicates that lactose permease is protonated prior to ligand binding. Moreover, in the ground state, the symported H(+) is shared between His322 (helix X) and Glu269 (helix VIII), while Glu325 (helix X) is charge-paired with Arg302 (helix IX). Substrate binding at the outer surface between helices IV (Glu126) and V (Arg144, Cys148) induces a conformational change that leads to transfer of the H(+) to Glu325 and reorientation of the binding site to the inner surface. After release of substrate, Glu325 is deprotonated on the inside due to re-juxtapositioning with Arg302. The conservative mutation Glu269-->Asp causes a 50-100-fold decrease in substrate binding affinity and markedly reduced active lactose transport, as well as decreased rates of equilibrium exchange and efflux. Gly-scanning mutagenesis of helix VIII was employed systematically with mutant Glu269-->Asp in an attempt to rescue function, and two mutants with increased activity are identified and characterized. Mutant Thr266-->Gly/Met267-->Gly/Glu269-->Asp binds ligand with increased affinity and catalyzes active lactose transport with a marked increase in rate; however, little improvement in efflux or equilibrium exchange is observed. In contrast, mutant Gly262-->Ala/Glu269-->Asp exhibits no improvement in ligand binding but a small increase in the rate of active transport; however, an increase in the steady-state level of accumulation, as well as efflux and equilibrium exchange is observed. Remarkably, when the two sets of mutations are combined, all translocation reactions are rescued to levels approximating those of wild-type permease. The findings support the contention that Glu269 plays a pivotal role in the mechanism of lactose/H(+) symport. Moreover, the results suggest that the two classes of mutants rescue activity by altering the equilibrium between outwardly and inwardly facing conformations of the permease such that impaired protonation and/or H(+) transfer is enhanced from one side of the membrane or the other. When the two sets of mutants are combined, the equilibrium between outwardly and inwardly facing conformations and thus protonation and H(+) transfer are restored.
机译:为大肠杆菌的乳糖通透酶提出的乳糖/ H(+)同步运动提出的机制表明,在配体结合之前,乳糖通透酶是质子化的。此外,在基态下,His322(螺旋X)和Glu269(螺旋VIII)之间共享有被转运的H(+),而Glu325(螺旋X)与Arg302(螺旋IX)电荷配对。底物在螺旋IV(Glu126)和V(Arg144,Cys148)之间的外表面结合,引起构象变化,导致H(+)转移至Glu325,并将结合位点重新定向到内表面。释放底物后,由于与Arg302并置,Glu325在内部被去质子化。保守突变Glu269-> Asp导致底物结合亲和力降低50-100倍,活性乳糖转运显着降低,以及平衡交换和流出速率降低。螺旋VIII的Gly扫描诱变被系统地与突变体Glu269-> Asp结合使用,以试图恢复功能,并鉴定并鉴定了两个活性增强的突变体。 Thr266-> Gly / Met267-> Gly / Glu269-> Asp突变体以更高的亲和力结合配体,并催化活性乳糖转运,速率显着增加。然而,在外排或平衡交换方面几乎没有观察到改善。相比之下,突变体Gly262-> Ala / Glu269-> Asp的配体结合没有改善,但主动转运的速率略有增加。然而,观察到稳态积累水平的增加,以及流出和平衡交换的增加。值得注意的是,当将两组突变组合在一起时,所有易位反应都被恢复到与野生型通透酶近似的水平。这些发现支持了Glu269在乳糖/ H(+)转运的机制中起关键作用的观点。而且,结果表明这两类突变体通过改变通透酶的向外和向内构象之间的平衡来拯救活性,从而从膜的一侧或另一侧增强了质子化和/或H(+)转移的受损。当两组突变体结合在一起时,向外和向内的构象之间的平衡,从而质子化和H(+)转移得以恢复。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号