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Probing Ion Binding in the Selectivity Filter of the KcsA Potassium Channel

机译:KCSA钾通道选择性过滤器中的探测离子结合

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摘要

In potassium (K+) channels, permeation, selectivity, and gating at the selectivity filter are all governed by the thermodynamics and kinetics of the ion-protein interactions. Specific contacts between the carbonyl groups from the Thr-Val-Gly-Tyr-Gly signature filter sequence and the permeant ions generate four equidistant K+ binding sites, thereby defining the high ion selectivity and controlling the transport rate of K+ channels. Here, we used N-15-labeled ammonium ((NH4+)-N-15) as a proxy for K+ to study ion interaction with the selectivity filter of the prototypical full-length K+ channel KcsA by solution state NMR spectroscopy in order to obtain detailed insights into the physicochemical basis of K+ gating. We found that in the closed inactive state of KcsA (at pH 7) four K+ binding sites are occupied over a wide range of (NH4+)-N-15 concentrations, while in intermediate closed-open conformations (at pH similar to 6) the number and occupancy of K+ binding sites are reduced to two. However, in the presence of the scorpion toxin agitoxin II a total loss of (NH4+)-N-15 binding is observed. (NH4+)-N-15 titration studies allowed us to determine the dissociation constants of the four binding sites with values around 10 mM in the closed state of KcsA. Moreover, kinetic NMR experiments measured in the steady state equilibrium detected an off- and on-rate for (NH4+)-N-15 of ca. 10(2) s(-1) and 10(3) s(-1) between KcsA-bound (NH4+)-N-15 and the bulk. These findings reveal both the thermodynamics and kinetics of the ion binding sites and thus contribute to our understanding of the action of K+ channels.
机译:在钾(K +)通道,选择性过滤器处的渗透,选择性和各自均受离子蛋白质相互作用的热力学和动力学来控制。来自Thr-Val-Gly-Tyr-Gly特征滤光序列和渗透离子之间的羰基之间的比接触产生四等距K +结合位点,从而限定高离子选择性并控制K +通道的运输速率。这里,我们使用N-15标记的铵((NH4 +) - N-15)作为K +的代理,以通过溶液状态NMR光谱研究了与原型全长K +通道KCSA的选择性过滤器的离子相互作用以获得详细洞察K +门控的物理化学基础。我们发现,在KCSA的闭合非活性状态(在pH7)中,四个K +结合位点被占据在宽范围(NH4 +) - N-15浓度上,而在中间闭合构象(在pH类似于6)中K +结合位点的数量和占用减少到两个。然而,在蝎子毒素的存在下,观察到(NH 4 +) - N-15结合的总损失。 (NH4 +) - N-15滴定研究使我们允许我们确定四个结合位点的解离常数,其值在KCSA的闭合状态下为约10mm。此外,在稳态平衡中测量的动力学NMR实验检测到(NH4 +) - N-15的脱液率和依次。在KCSA结合(NH4 +) - N-15和散装之间的10(2)S(-1)和10(3)次(-1)。这些发现显示了离子结合位点的热力学和动力学,从而有助于我们对K +通道的作用的理解。

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  • 来源
    《Journal of the American Chemical Society》 |2019年第18期|7391-7398|共8页
  • 作者单位

    Swiss Fed Inst Technol Phys Chem Lab CH-8093 Zurich Switzerland;

    Swiss Fed Inst Technol Phys Chem Lab CH-8093 Zurich Switzerland;

    Chapman Univ Sch Pharm Irvine CA 92618 USA;

    Swiss Fed Inst Technol Phys Chem Lab CH-8093 Zurich Switzerland;

  • 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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