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Conformational state of the MscS mechanosensitive channel in solution revealed by pulsed electron-electron double resonance (PELDOR) spectroscopy

机译:脉冲电子双共振(PELDOR)光谱揭示溶液中MscS机械敏感通道的构象状态

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摘要

The heptameric mechanosensitive channel of small conductance (MscS) provides a critical function in Escherichia coli where it opens in response to increased bilayer tension. Three approaches have defined different closed and open structures of the channel, resulting in mutually incompatible models of gating. We have attached spin labels to cysteine mutants on key secondary structural elements specifically chosen to discriminate between the competing models. The resulting pulsed electron–electron double resonance (PELDOR) spectra matched predicted distance distributions for the open crystal structure of MscS. The fit for the predictions by structural models of MscS derived by other techniques was not convincing. The assignment of MscS as open in detergent by PELDOR was unexpected but is supported by two crystal structures of spin-labeled MscS. PELDOR is therefore shown to be a powerful experimental tool to interrogate the conformation of transmembrane regions of integral membrane proteins.
机译:小电导的七聚体机械敏感通道(MscS)在大肠杆菌中起着至关重要的作用,在大肠杆菌中,它响应双层压力的增加而打开。三种方法定义了通道的不同闭合和开放结构,从而导致相互不兼容的门控模型。我们将旋转标签附加到关键二级结构元件上的半胱氨酸突变体上,这些二级结构元件是专门选择用来区分竞争模型的。由此产生的脉冲电子双电子共振(PELDOR)光谱与MscS的开放晶体结构的预测距离分布相匹配。通过其他技术得出的MscS结构模型对预测的拟合并不令人信服。 PELDOR将去污剂中开放的MscS的赋值是意外的,但得到自旋标记MscS的两个晶体结构的支持。因此,PELDOR被证明是一个强大的实验工具,可以询问完整膜蛋白的跨膜区域构象。

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