Filter flexibility and distortion in a bacterial inward rectifier K+ channel:: Simulation studies of KirBac1.1

被引:53
作者
Domene, C
Grottesi, A
Sansom, MSP [1 ]
机构
[1] Univ Oxford, Dept Biochem, Lab Mol Biophys, Oxford OX1 3QU, England
[2] Univ Oxford, Dept Chem, Phys & Theoret Chem Lab, Oxford OX1 3QZ, England
基金
英国生物技术与生命科学研究理事会; 英国惠康基金;
关键词
D O I
10.1529/biophysj.104.039917
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
The bacterial channel KirBac1.1 provides a structural homolog of mammalian inward recti. er potassium (Kir) channels. The conformational dynamics of the selectivity filter of Kir channels are of some interest in the context of possible permeation and gating mechanisms for this channel. Molecular dynamics simulations of KirBac have been performed on a 10-ns timescale, i.e., comparable to that of ion permeation. The results of five simulations (total simulation time 50 ns) based on three different initial ion configurations and two different model membranes are reported. These simulation data provide evidence for limited (<0.1 nm) filter flexibility during the concerted motion of ions and water molecules within the filter, such local changes in conformation occurring on an similar to 1-ns timescale. In the absence of K+ ions, the KirBac selectivity filter undergoes more substantial distortions. These resemble those seen in comparable simulations of other channels (e.g., KcsA and KcsA-based homology models) and are likely to lead to functional closure of the channel. This suggests filter distortions may provide a mechanism of K-channel gating in addition to changes in the hydrophobic gate formed at the intracellular crossing point of the M2 helices. The simulation data also provide evidence for interactions of the "slide" (pre-M1) helix of KirBac with phospholipid headgroups.
引用
收藏
页码:256 / 267
页数:12
相关论文
共 89 条
[1]   Molecular dynamics study of the KcsA potassium channel [J].
Allen, TW ;
Kuyucak, S ;
Chung, SH .
BIOPHYSICAL JOURNAL, 1999, 77 (05) :2502-2516
[2]   The potassium channel: Structure, selectivity and diffusion [J].
Allen, TW ;
Bliznyuk, A ;
Rendell, AP ;
Kuyucak, S ;
Chung, SH .
JOURNAL OF CHEMICAL PHYSICS, 2000, 112 (18) :8191-8204
[3]   Energetics of ion conduction through the gramicidin channel [J].
Allen, TW ;
Andersen, OS ;
Roux, B .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (01) :117-122
[4]   Brownian dynamics study of an open-state KcsA potassium channel [J].
Allen, TW ;
Chung, SH .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 2001, 1515 (02) :83-91
[5]   Ion permeation mechanism of the potassium channel [J].
Åqvist, J ;
Luzhkov, V .
NATURE, 2000, 404 (6780) :881-884
[6]  
AQVIST J, 1990, J PHYS CHEM-US, V94, P8021, DOI 10.1021/j100384a009
[7]   Molecular dynamics simulations of the ligand-binding domain of the ionotropic glutamate receptor GluR2 [J].
Arinaminpathy, Y ;
Sansom, MSP ;
Biggin, PC .
BIOPHYSICAL JOURNAL, 2002, 82 (02) :676-683
[8]  
Berendsen H. J. C., 1981, INTERMOLECULAR FORCE
[9]   Molecular dynamics simulations of a fluid bilayer of dipalmitoylphosphatidylcholine at full hydration, constant pressure, and constant temperature [J].
Berger, O ;
Edholm, O ;
Jahnig, F .
BIOPHYSICAL JOURNAL, 1997, 72 (05) :2002-2013
[10]   Molecular dynamics of the KcsA K+ channel in a bilayer membrane [J].
Bernèche, S ;
Roux, B .
BIOPHYSICAL JOURNAL, 2000, 78 (06) :2900-2917