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Channel function reconstitution and re-animation: a single-channel strategy in the postcrystal age

机译:通道功能重构和重新动画:后晶体时代的单通道策略

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The most essential properties of ion channels for their physiologically relevant functions are ion-selective permeation and gating. Among the channel species, the potassium channel is primordial and the most ubiquitous in the biological world, and knowledge of this channel underlies the understanding of features of other ion channels. The strategy applied to studying channels changed dramatically after the crystal structure of the potassium channel was resolved. Given the abundant structural information available, we exploited the bacterial KcsA potassium channel as a simple model channel. In the postcrystal age, there are two effective frameworks with which to decipher the functional codes present in the channel structure, namely reconstitution and re-animation. Complex channel proteins are decomposed into essential functional components, and well-examined parts are rebuilt for integrating channel function in the membrane (reconstitution). Permeation and gating are dynamic operations, and one imagines the active channel by breathing life into the frozen' crystal (re-animation). Capturing the motion of channels at the single-molecule level is necessary to characterize the behaviour of functioning channels. Advanced techniques, including diffracted X-ray tracking, lipid bilayer methods and high-speed atomic force microscopy, have been used. Here, I present dynamic pictures of the KcsA potassium channel from the submolecular conformational changes to the supramolecular collective behaviour of channels in the membrane. These results form an integrated picture of the active channel and offer insights into the processes underlying the physiological function of the channel in the cell membrane.
机译:离子通道的生理相关功能最重要的特性是离子选择性渗透和门控。在通道种类中,钾通道是原始通道,是生物界中最普遍的通道,对该通道的了解是对其他离子通道特征的理解的基础。钾通道的晶体结构解析后,用于研究通道的策略发生了巨大变化。鉴于可获得的大量结构信息,我们将细菌KcsA钾通道开发为简单的模型通道。在后晶体时代,有两个有效的框架可用来解密通道结构中存在的功能代码,即重构和重新动画。复杂的通道蛋白被分解为必不可少的功能成分,并且经过充分检查的部分被重建以将通道功能整合到膜中(重构)。渗透和选通是动态操作,人们通过将生命呼吸到冷冻的晶体中(重新动画)来想象主动通道。捕获通道在单分子水平的运动对于表征功能通道的行为是必要的。已经使用了先进的技术,包括衍射X射线跟踪,脂质双层方法和高速原子力显微镜。在这里,我呈现了KcsA钾离子通道的动态图片,从亚分子的构象变化到膜中通道的超分子集体行为。这些结果形成了活动通道的整体图,并提供了对细胞膜中通道生理功能的基础过程的深入了解。

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