Structural models of TREK channels and their gating mechanism

被引:13
作者
Milac, Adina L. [2 ,4 ]
Anishkin, Andriy [1 ]
Fatakia, Sarosh N. [3 ]
Chow, Carson C. [3 ]
Sukharev, Sergei [1 ]
Guy, H. Robert [2 ]
机构
[1] Univ Maryland, Dept Biol, Bethesda, MD USA
[2] NCI, Cell Biol Lab, Ctr Canc Res, Bethesda, MD 20892 USA
[3] NIDDK, Lab Biol Modeling, NIH, Bethesda, MD USA
[4] Romanian Acad, Inst Biochem, Bucharest, Romania
关键词
mechanosensitive ion channels; structure prediction; gating mechanism; proline hinge; mutual information; mutual information graph; DOMAIN K+ CHANNELS; MOLECULAR-DYNAMICS SIMULATION; POLYUNSATURATED FATTY-ACIDS; SECONDARY STRUCTURE; POTASSIUM-CHANNEL; K-2P CHANNELS; PREDICTION; REFINEMENT; DATABASE; FAMILY;
D O I
10.4161/chan.5.1.13905
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
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 alpha-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 2-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 2-fold symmetry. Our models are consistent with deletion/truncation mutagenesis and thermodynamic analysis of gating described in the accompanying paper.
引用
收藏
页码:23 / 33
页数:11
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