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Structural models of TREK channels and their gating mechanism

机译:TREK通道的结构模型及其门控机制

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摘要

Mechanosensitive TREK channels belong to the family of K2P channels, a family of widely distributed, well-modulated channels that uniquely have two similar or identical subunits, each with two TM1-P-TM2 motifs. Our goal is to build viable structural models of TREK channels, as representatives of K2P channels family. The structures available to be used as templates belong to the 2TM channels superfamily. These have low sequence similarity and different structural features: four symmetrically arranged subunits, each having one TM1-P-TM2 motif. Our model building strategy used two subunits of the template (KcsA) to build one subunit of the target (TREK-1). Our models of the closed channel were adjusted to differ substantially from those of the template, e.g., TM2 of the second repeat is near the axis of the pore whereas TM2 of the first repeat is far from the axis. Segments linking the two repeats and immediately following the last TM segment were modeled ab initio as α-helices based on helical periodicities of hydrophobic and hydrophilic residues, highly conserved and poorly conserved residues and statistically related positions from multiple sequence alignments. The models were further refined by two-fold symmetry-constrained MD simulations using a protocol we developed previously. We also built models of the open state and suggest a possible tension-activated gating mechanism characterized by helical motion with two-fold symmetry. Our models are consistent with deletion/truncation mutagenesis and thermodynamic analysis of gating described in the accompanying paper.
机译:机械敏感的TREK通道属于K2P通道家族,K2P通道家族是一个分布广泛且经过良好调制的通道,其独特地具有两个相似或相同的亚基,每个亚基具有两个TM1-P-TM2基序。作为K2P渠道家族的代表,我们的目标是建立TREK渠道的可行结构模型。可用作模板的结构属于2TM通道超家族。它们具有低的序列相似性和不同的结构特征:四个对称排列的亚基,每个亚基具有一个TM1-P-TM2基序。我们的模型构建策略使用模板(KcsA)的两个子单元构建目标(TREK-1)的一个子单元。我们对封闭通道的模型进行了调整,使其与模板的模型大不相同,例如第二个重复序列的TM2靠近孔的轴,而第一个重复序列的TM2则远离轴。基于疏水和亲水残基,高度保守和保守性差的残基以及多个序列比对的统计相关位置,从头开始将连接两个重复序列且紧接在最后一个TM片段之后的片段模拟为α-螺旋。使用我们之前开发的协议,通过两次对称约束的MD模拟进一步完善了模型。我们还建立了打开状态的模型,并提出了一种可能的张力激活门控机制,该机制的特点是具有两个对称的螺旋运动。我们的模型与随附论文中所述的缺失/截短诱变和门控热力学分析是一致的。

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