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An Interfacial Sodium Ion is an Essential Structural Feature of Fluc Family Fluoride Channels

机译:界面钠离子是Fluc系列氟化物通道的基本结构特征

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Fluc family fluoride channels are assembled as primitive antiparallel homodimers. Crystallographic studies revealed a cation bound at the center of the protein, where it is coordinated at the dimer interface by main chain carbonyl oxygen atoms from the midmembrane breaks in two corresponding transmembrane helices. Here, we show that this cation is a stably bound sodium ion, and although it is not a transported substrate, its presence is required for the channel to adopt an open, fluoride-conducting conformation. The interfacial site is selective for sodium over other cations, except for Li+, which competes with Na+ for binding, but does not support channel activity. The strictly structural role fulfilled by this sodium provides new context to understand the structures, mechanisms, and evolutionary origins of widespread Na+-coupled transporters. (C) 2020 Elsevier Ltd. All rights reserved.
机译:Fluc系列氟化物通道被组装为原始的反平行同源过二聚体。 结晶研究揭示了在蛋白质中心的阳离子结合,其中在两种相应的跨膜螺旋中通过主链羰基氧原子在二聚体界面中配位。 这里,我们表明该阳离子是稳定结合的钠离子,尽管它不是运输的基板,但是该通道需要采用开放,氟化物导电构象所需的存在。 界面位点是对其他阳离子的钠选择性,除了Li +,与Na +竞争结合,但不支持信道活动。 该钠满足的严格结构作用提供了了解广泛的Na +耦合转运蛋白的结构,机制和进化起源的新背景。 (c)2020 elestvier有限公司保留所有权利。

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