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Role of the C-terminal domain in the structure and function of tetrameric sodium channels

机译:C末端域在四聚体钠通道的结构和功能中的作用

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摘要

Voltage-gated sodium channels have essential roles in electrical signalling. Prokaryotic sodium channels are tetramers consisting of transmembrane (TM) voltage-sensing and pore domains, and a cytoplasmic carboxy-terminal domain. Previous crystal structures of bacterial sodium channels revealed the nature of their TM domains but not their C-terminal domains (CTDs). Here, using electron paramagnetic resonance (EPR) spectroscopy combined with molecular dynamics, we show that the CTD of the NavMs channel from Magnetococcus marinus includes a flexible region linking the TM domains to a four-helix coiled-coil bundle. A 2.9 angstrom resolution crystal structure of the NavMs pore indicates the position of the CTD, which is consistent with the EPR-derived structure. Functional analyses demonstrate that the coiled-coil domain couples inactivation with channel opening, and is enabled by negatively charged residues in the linker region. A mechanism for gating is proposed based on the structure, whereby splaying of the bottom of the pore is possible without requiring unravelling of the coiled-coil.RI Wallace, B. A./C-3753-2008; Kay, Christopher/C-2467-2008OI Kay, Christopher/0000-0002-5200-6004
机译:电压门控钠通道在电信号传导中起重要作用。原核钠通道是由跨膜(TM)电压感应和孔结构域以及细胞质羧基末端结构域组成的四聚体。细菌钠通道的先前晶体结构揭示了其TM结构域的性质,但未揭示其C末端结构域(CTD)的性质。在这里,使用电子顺磁共振(EPR)光谱结合分子动力学,我们显示了来自磁悬浮球菌的NavMs通道的CTD包括将TM域连接到四螺旋盘绕线圈束的柔性区域。 NavMs孔的2.9埃分辨率晶体结构指示CTD的位置,这与EPR衍生的结构一致。功能分析表明,卷曲螺旋结构域将失活与通道开放耦合,并由接头区域中的带负电荷的残基激活。基于该结构提出了一种门控机制,由此可以在不弄松盘绕线圈的情况下使孔的底部张开。RIWallace,B.A。/ C-3753-2008; B.A./C-3753-2008。克里斯托弗·凯/ C-2467-2008OI克里斯托弗·凯/ 0000-0002-5200-6004

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