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Ligand-specific opening of a gated-porin channel in the outer membrane of living bacteria

机译:活细菌外膜中门控孔通道的配体特异性开放

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摘要

Ligand-gated membrane channels selectively facilitate the entry of iron into prokaryotic cells. The essential role of iron in metabolism makes its acquisition a determinant of bacterial pathogenesis and a target for therapeutic strategies. In Gram-negative bacteria, TonB-dependent outer membrane proteins form energized, gated pores that bind iron chelates (siderophores) and internalize them. The time-resolved operation of the Escherichia coli ferric enterobactin receptor FepA was observed in vivo with electron spin resonance spectroscopy by monitoring the mobility of covalently bound nitroxide spin labels. A ligand-binding surface loop of FepA, which normally closes its transmembrane channel, exhibited energy-dependent structural changes during iron and toxin (colicin) transport. These changes were not merely associated with ligand binding, but occurred during ligand uptake through the outer membrane bilayer. The results demonstrate by a physical method that gated-porin channels open and close during membrane transport in vivo.
机译:配体门控的膜通道选择性地促进铁进入原核细胞。铁在新陈代谢中的重要作用使得其获得成为细菌发病机理的决定因素和治疗策略的靶标。在革兰氏阴性细菌中,TonB依赖性外膜蛋白形成充满活力的门控孔,这些孔结合铁螯合物(铁载体)并将其内在化。通过监测共价结合的一氧化氮自旋标记的迁移率,通过电子自旋共振光谱法在体内观察到了大肠杆菌铁肠杆菌素受体FepA的时间分辨操作。 FepA的配体结合表面环通常关闭其跨膜通道,在铁和毒素(colicin)运输过程中表现出能量依赖的结构变化。这些变化不仅与配体结合有关,而且在配体通过外膜双层吸收期间发生。结果通过物理方法证明了门控孔蛋白通道在体内膜运输过程中打开和关闭。

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