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The structure of the lipid-embedded potassium channel voltage sensor determined by double-electron–electron resonance spectroscopy

机译:双电子-电子共振光谱法测定脂质嵌入钾通道电压传感器的结构

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摘要

A four-pulse electron paramagnetic resonance experiment was used to measure long-range inter-subunit distances in reconstituted KvAP, a voltage-dependent potassium (Kv) channel. The measurements have allowed us to reach the following five conclusions about the native structure of the voltage sensor of KvAP. First, the S1 helix of the voltage sensor engages in a helix packing interaction with the pore domain. Second, the crystallographically observed antiparallel helix-turn-helix motif of the voltage-sensing paddle is retained in the membrane-embedded voltage sensor. Third, the paddle is oriented in such a way as to expose one face to the pore domain and the opposite face to the membrane. Fourth, the paddle and the pore domain appear to be separated by a gap that is sufficiently wide for lipids to penetrate between the two domains. Fifth, the critical voltage-sensing arginine residues on the paddle appear to be lipid exposed. These results demonstrate the importance of the membrane for the native structure of Kv channels, suggest that lipids are an integral part of their native structure, and place the voltage-sensing machinery into a complex lipid environment near the pore domain.
机译:使用四脉冲电子顺磁共振实验来测量重构的KvAP(电压依赖性钾(Kv)通道)中的长距离亚单位间距离。通过这些测量,我们得出了有关KvAP电压传感器固有结构的以下五个结论。首先,电压传感器的S1螺旋与孔域进行螺旋堆积相互作用。第二,晶体学观察到的电压感测桨的反平行螺旋-转-螺旋基序保留在嵌入膜的电压传感器中。第三,桨以这样的方式定向:使一个表面暴露于孔区域而相反的表面暴露于膜。第四,桨和孔域似乎被足够宽的间隙隔开,以使脂质能够渗透到两个域之间。第五,桨板上的临界电压感应精氨酸残基似乎暴露在脂质中。这些结果证明了膜对于Kv通道的天然结构的重要性,表明脂质是其天然结构的组成部分,并将电压传感装置置于孔结构域附近的复杂脂质环境中。

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