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首页> 外文期刊>Biophysical Journal >Role of the Interaction Motif in Maintaining the Open Gate of an Open Sodium Channel
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Role of the Interaction Motif in Maintaining the Open Gate of an Open Sodium Channel

机译:相互作用主题在保持开放钠通道的开放闸门中的作用

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摘要

Voltage-gated sodium channels undergo transitions between open, closed, and inactivated states, enabling regulation of the translocation of sodium ions across membranes. A recently published crystal structure of the full-length prokaryotic NavMs crystal structure in the activated open conformation has revealed the presence of a novel motif consisting of an extensive network of salt bridges involving residues in the voltage sensor, S4-S5 linker, pore, and C-terminal domains. This motif has been proposed to be responsible for maintaining an open conformation that enables ion translocation through the channel. In this study, we have used long-time molecular dynamics calculations without artificial restraints to demonstrate that the interaction network of full-length NavMs indeed prevents a rapid collapse and closure of the gate, in marked difference to earlier studies of the pore-only construct in which the gate had to be restrained to remain open. Interestingly, a frequently discussed "hydrophobic gating" mechanism at nanoscopic level is also observed in our simulations, in which the discontinuous water wire close to the gate region leads to an energetic barrier for ion conduction. In addition, we demonstrate the effects of in silico mutations of several of the key residues in the motif on the open channel's stability and functioning, correlating them with existing functional studies on this channel and homologous disease-associated mutations in human sodium channels; we also examine the effects of truncating/removing the voltage sensor and C-terminal domains in maintaining an open gate.
机译:电压门控钠通道在开放,关闭和灭活状态之间进行过渡,从而能够调节膜穿过膜的钠离子的易位。最近公布的全长原核纳米晶体结构的晶体结构在激活的开放构象中揭示了一种新颖的基序,其包括涉及电压传感器,S4-S5接头,孔隙中的残留物的广泛盐桥网络。 C终端域。本主题已提出负责维护开放构象,以通过通道实现离子易位。在这项研究中,我们使用了没有人为限制的长时间分子动力学计算,以证明全长Navm的相互作用网络确实可以迅速崩溃和封闭浇口,以缺乏孔构建的早期研究的显着差异其中必须抑制门以保持开放。有趣的是,在我们的模拟中也观察到纳米镜水平的经常讨论的“疏水门控”机制,其中靠近栅极区域的不连续水线导致用于离子传导的能量屏障。此外,我们证明了在图案中的几个关键残留物中的硅突变在开放通道的稳定性和功能上的影响,将它们与现有的功能性研究相关,对该信道和人钠通道中的同源疾病相关突变;我们还检查截断/移除电压传感器和C终端域保持开放栅极的效果。

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