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Tripartite efflux pumps: energy is required for dissociation but not assembly or opening of the outer membrane channel of the pump

机译:三方外排泵:解离需要能量但不需要组装或打开泵的外膜通道

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摘要

The MtrCDE multidrug pump, from Neisseria gonorrhoeae, is assembled from the inner and outer membrane proteins MtrD and MtrE, which are connected by the periplasmic membrane fusion protein MtrC. Although it is clear that MtrD delivers drugs to the channel of MtrE, it remains unclear how drug delivery and channel opening are connected. We used a vancomycin sensitivity assay to test for opening of the MtrE channel. Cells expressing MtrE or MtrE-E434K were insensitive to vancomycin; but became moderately and highly sensitive to vancomycin respectively, when coexpressed with MtrC, suggesting that the MtrE channel opening requires MtrC binding and is energy-independent. Cells expressing wild-type MtrD, in an MtrCE background, were vancomycin-insensitive, but moderately sensitive in an MtrCE-E434K background. The mutation of residues involved in proton translocation inactivated MtrD and abolished drug efflux, rendered both MtrE and MtrE-E434K vancomycin-insensitive; imply that the pump–component interactions are preserved, and that the complex is stable in the absence of proton flux, thus sealing the open end of MtrE. Following the energy-dependent dissociation of the tripartite complex, the MtrE channel is able to reseal, while MtrE-E434K is unable to do so, resulting in the vancomycin-sensitive phenotype. Thus, our findings suggest that opening of the OMP via interaction with the MFP is energy-independent, while both drug export and complex dissociation require active proton flux.
机译:来自淋病奈瑟氏球菌的MtrCDE多药泵由内膜蛋白MtrD和外膜蛋白MtrE组装而成,后者通过周质膜融合蛋白MtrC连接。尽管很明显MtrD将药物输送到MtrE通道,但仍不清楚如何将药物输送与通道打开联系起来。我们使用万古霉素敏感性测定法来测试MtrE通道的开放。表达MtrE或MtrE-E434K的细胞对万古霉素不敏感。但当与MtrC共表达时,它们分别对万古霉素适度和高度敏感,这表明MtrE通道开放需要MtrC结合并且与能量无关。在MtrCE背景下表达野生型MtrD的细胞对万古霉素不敏感,但在MtrCE-E434K背景下中等敏感。质子易位的残基突变使MtrD失活并消除了药物外排,使MtrE和MtrE-E434K对万古霉素不敏感。这意味着泵-组分之间的相互作用得以保留,并且该复合物在没有质子通量的情况下是稳定的,从而密封了MtrE的开口端。三方复合物的能量依赖性解离后,MtrE通道能够重新密封,而MtrE-E434K无法重新密封,从而导致对万古霉素敏感的表型。因此,我们的研究结果表明,通过与MFP相互作用打开OMP是与能量无关的,而药物输出和复杂的离解都需要活性质子通量。

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