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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Molecular origin of VDAC selectivity towards inorganic ions: A combined molecular and Brownian dynamics study
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Molecular origin of VDAC selectivity towards inorganic ions: A combined molecular and Brownian dynamics study

机译:VDAC对无机离子选择性的分子起源:结合分子动力学和布朗动力学的研究

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摘要

The voltage-dependent anion channel (VDAC) serves as the major pore for metabolites and electrolytes in the outer mitochondrial membrane. To refine our understanding of ion permeation through this channel we performed an extensive Brownian (BD) and molecular dynamics (MD) study on the mouse VDAC isoform 1 wild-type and mutants (K20E, D30K, K61E, E158K and K252E). The selectivity and the conductance of the wild-type and of the variant channels computed from the BD trajectories are in agreement with experimental data. The calculated selectivity is shown to be very sensitive to slight conformational changes which may have some bearing on the variability of the selectivity values measured on the VDAC open state. The MD and BD free energy profiles of the ion permeation suggest that the pore region comprising the N-terminal helix and the barrel band encircling it predominantly controls the ion transport across the channel. The overall 12 ??s BD and 0.9 ??s MD trajectories of the mouse VDAC isoform 1 wild-type and mutants feature no distinct pathways for ion diffusion and no long-lived ion-protein interactions. The dependence of ion distribution in the wild-type channel with the salt concentration can be explained by an ionic screening of the permanent charges of the protein arising from the pore. Altogether these results bolster the role of electrostatic features of the pore as the main determinant of VDAC selectivity towards inorganic anions. ? 2012 Elsevier B.V. All rights reserved.
机译:电压依赖性阴离子通道(VDAC)充当线粒体外膜中代谢物和电解质的主要孔。为了完善我们对通过此通道的离子渗透的理解,我们对小鼠VDAC同种型1野生型和突变体(K20E,D30K,K61E,E158K和K252E)进行了广泛的布朗(BD)和分子动力学(MD)研究。从BD轨迹计算的野生型和变异通道的选择性和电导率与实验数据一致。计算出的选择性显示出对轻微的构象变化非常敏感,这可能与在VDAC打开状态下测得的选择性值的变化有关。离子渗透的MD和BD自由能曲线表明,包含N末端螺旋和包围它的桶形带的孔区域主要控制了离子在通道中的传输。小鼠VDAC同种型1野生型和突变体的总12 s BD和0.9 s MD轨迹,没有明显的离子扩散途径,也没有长寿的离子-蛋白质相互作用。野生型通道中离子分布与盐浓度的关系可以通过离子筛选从孔中产生的蛋白质的永久电荷来解释。总而言之,这些结果加强了孔的静电特征作为VDAC对无机阴离子选择性的主要决定因素。 ? 2012 Elsevier B.V.保留所有权利。

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