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A thermodynamic approach to alamethicin pore formation

机译:一种热力学方法对阿拉胺汀孔形成的热力学方法

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The structure and energetics of alamethicin Rf30 monomer to nonamer in cylindrical pores of 5 to ii A radius are investigated using molecular dynamics simulations in an implicit membrane model that includes the free energy cost of acyl chain hydrophobic area exposure. Stable, low energy pores are obtained for certain combinations of radius and oligomeric number. The trimer and the tetramer formed 6 A pores that appear closed while the larger oligomers formed open pores at their optimal radius. The hexamer in an 8 A pore and the octamer in an 11 A pore give the lowest effective energy per monomer. However, all oligomers beyond the pentamer have comparable energies, consistent with the observation of multiple conductance levels. The results are consistent with the widely accepted "barrel-stave" model. The N terminal portion of the molecule exhibits smaller tilt with respect to the membrane normal than the C terminal portion, resulting in a pore shape that is a hybrid between a funnel and an hourglass. Transmembrane voltage has little effect on the structure of the oligomers but enhances or decreases their stability depending on its orientation. Antiparallel bundles are lower in energy than the commonly accepted parallel ones and could be present under certain experimental conditions. Dry aggregates (without an aqueous pore) have lower average effective energy than the corresponding aggregates in a pore, suggesting that alamethicin pores may be excited states that are stabilized in part by voltage and in part by the ion flow itself. (C) 2013 Elsevier B.V. All rights reserved.
机译:利用分子动力学模拟在隐式膜模型中研究了5至II的圆柱形孔中的圆柱形孔中的圆柱形孔中的圆柱形孔的结构和能量,包括酰基链疏水区域暴露的自由能成本。对于半径和低聚数的某些组合,获得稳定的低能量孔。三聚体和四聚体形成了6个孔,该孔看起来闭合,而较大的低聚物在其最佳半径处形成开口孔隙。在11例孔中的8个孔中的六聚体和八羟皿给出每单体的最低有效能量。然而,除了五聚体之外的所有寡聚体具有可比的能量,与观察多个电导水平一致。结果与广泛接受的“桶铲”模型一致。分子的N末端部分相对于膜正常的倾斜表现出较小的倾斜,导致孔形状是漏斗和沙漏之间的杂交。跨膜电压对低聚物的结构几乎没有影响,但取决于其取向,增强或降低其稳定性。反平行束在能量中低于普通接受的平行束,并且可以在某些实验条件下存在。干骨料(没有含水孔)的平均有效能量低于孔中相应的聚集体,表明阿拉美霉素孔可以是稳定的状态,其部分通过电压稳定,并且部分地通过离子流自身稳定。 (c)2013年elestvier b.v.保留所有权利。

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