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Flexible-to-rigid transition is central for substrate transport in the ABC transporter BmrA from Bacillus subtilis

机译:柔性到刚性的过渡是枯草芽孢杆菌ABC转运蛋白BmrA中底物转运的中心

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摘要

ATP-binding-cassette (ABC) transporters are molecular pumps that translocate molecules across the cell membrane by switching between inward-facing and outward-facing states. To obtain a detailed understanding of their mechanism remains a challenge to structural biology, as these proteins are notoriously difficult to study at the molecular level in their active, membrane-inserted form. Here we use solid-state NMR to investigate the multidrug ABC transporter BmrA reconstituted in lipids. We identify the chemical-shift differences between the inward-facing, and outward-facing state induced by ATP:Mg2+:Vi addition. Analysis of an X-loop mutant, for which we show that ATPase and transport activities are uncoupled, reveals an incomplete transition to the outward-facing state upon ATP:Mg2+:Vi addition, notably lacking the decrease in dynamics of a defined set of residues observed in wild-type BmrA. This suggests that this stiffening is required for an efficient transmission of the conformational changes to allow proper transport of substrate by the pump.
机译:ATP结合盒带(ABC)转运蛋白是分子泵,可通过在向内和向外状态之间切换来使分子跨细胞膜移位。要获得对它们机理的详细了解仍然是结构生物学的挑战,因为众所周知,这些蛋白质很难以其活性的,插入膜的形式在分子水平上进行研究。在这里,我们使用固态NMR研究脂质中重构的多药ABC转运蛋白BmrA。我们确定了由ATP:Mg 2 + :Vi添加引起的向内和向外状态之间的化学位移差异。 X环突变体的分析表明,ATPase和Mg 2 + :Vi加入后,其ATPase和转运活性是不耦合的,揭示了向外向状态的不完全过渡,特别是缺少在野生型BmrA中观察到的一组确定的残基动力学降低。这表明该加强对于有效传递构象变化是必需的,以允许通过泵适当地输送基质。

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