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Glutamate transporters have a chloride channel with two hydrophobic gates

机译:谷氨酸转运蛋白有氯化物通道,具有两种疏水式浇口

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摘要

Glutamate is the most abundant excitatory neurotransmitter in the central nervous system, and its precise control is vital to maintain normal brain function and to prevent excitotoxicity(1). The removal of extracellular glutamate is achieved by plasma-membrane-bound transporters, which couple glutamate transport to sodium, potassium and pH gradients using an elevator mechanism(2-5). Glutamate transporters also conduct chloride ions by means of a channel-like process that is thermodynamically uncoupled from transport(6-8). However, the molecular mechanisms that enable these dual-function transporters to carry out two seemingly contradictory roles are unknown. Here we report the cryo-electron microscopy structure of a glutamate transporter homologue in an open-channel state, which reveals an aqueous cavity that is formed during the glutamate transport cycle. The functional properties of this cavity, combined with molecular dynamics simulations, reveal it to be an aqueous-accessible chloride permeation pathway that is gated by two hydrophobic regions and is conserved across mammalian and archaeal glutamate transporters. Our findings provide insight into the mechanism by which glutamate transporters support their dual function, and add information that will assist in mapping the complete transport cycle shared by the solute carrier 1A transporter family.
机译:谷氨酸是中枢神经系统中最丰富的兴奋性神经递质,其精确的控制对于维持正常的脑功能至关重要,并防止兴奋毒性(1)。通过等离子体膜结合的转运蛋白去除细胞外谷氨酸,使用电梯机制(2-5)将谷氨酸转运与钠,钾和pH梯度耦合。谷氨酸转运蛋白还借助于与运输(6-8)热力学脱模的沟道状方法进行氯离子。然而,使这些双功能运输器能够进行两个看似矛盾的角色的分子机制是未知的。在这里,我们在开放式通道状态下报告谷氨酸转运蛋白同源物的冷冻电子显微镜结构,其露出在谷氨酸转运循环期间形成的含水腔。这种腔的功能性质与分子动力学模拟结合,将其揭示它是一种水性可接近的氯化物渗透途径,其由两个疏水区门控,并且在哺乳动物和古谷氨酸转运蛋白上被保守。我们的调查结果提供了谷氨酸运输扣支持其双重功能的机制的洞察力,并添加有助于绘制溶质载体1A运输家族共享的完整运输周期的信息。

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  • 来源
    《Nature》 |2021年第7849期|327-331|共5页
  • 作者单位

    Univ Sydney Sch Med Sci Fac Med & Hlth Transporter Biol Grp Sydney NSW Australia;

    Univ Illinois NIH Ctr Macromol Modeling & Bioinformat Beckman Inst Adv Sci & Technol Urbana IL 61801 USA|Univ Illinois Dept Biochem Urbana IL 61801 USA|Univ Illinois Ctr Biophys & Quantitat Biol Urbana IL 61801 USA;

    Univ Sydney Sch Med Sci Fac Med & Hlth Transporter Biol Grp Sydney NSW Australia;

    Univ Sydney Sch Med Sci Fac Med & Hlth Transporter Biol Grp Sydney NSW Australia|Columbia Univ Irving Med Ctr Dept Physiol & Cellular Biophys New York NY USA;

    Victor Chang Cardiac Res Inst Mol Struct & Computat Biol Div Darlinghurst NSW Australia|UNSW Sydney St Vincents Clin Sch Fac Med Kensington NSW Australia;

    Univ Sydney Sch Med Sci Fac Med & Hlth Transporter Biol Grp Sydney NSW Australia;

    Victor Chang Cardiac Res Inst Mol Struct & Computat Biol Div Darlinghurst NSW Australia|UNSW Sydney St Vincents Clin Sch Fac Med Kensington NSW Australia;

    Univ Illinois NIH Ctr Macromol Modeling & Bioinformat Beckman Inst Adv Sci & Technol Urbana IL 61801 USA|Univ Illinois Dept Biochem Urbana IL 61801 USA|Univ Illinois Ctr Biophys & Quantitat Biol Urbana IL 61801 USA;

    Univ Sydney Sch Med Sci Fac Med & Hlth Transporter Biol Grp Sydney NSW Australia;

    Univ Sydney Sch Med Sci Fac Med & Hlth Transporter Biol Grp Sydney NSW Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 23:00:53

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