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离子占据和膜变形对脂膜中短杆菌肽A通道稳定性的影响。

Influence of ion occupancy and membrane deformation on gramicidin A channel stability in lipid membranes.

作者信息

Ring A

机构信息

Department of Physiology and Medical Biophysics, Biomedical Centre, Uppsala, Sweden.

出版信息

Biophys J. 1992 May;61(5):1306-15. doi: 10.1016/S0006-3495(92)81939-2.

Abstract

The average lifetime of gramicidin A channels in monoolein/decane bilayer membranes was measured. The results support the hypothesis of channel stabilization by ion occupancy. The effects of electric field and salt concentration are consistent with the expected effects on both occupancy and membrane compression. The lifetime in asymmetric solutions with divalent cation blockers on one side of the membrane shows a voltage dependence such that the lifetime decreases for positive voltages applied from the blocking side and increases for negative voltages. This result strongly supports the occupancy hypothesis. The lifetime increases with permeant ion concentration, and at the one molar level it also increases with voltage. The voltage dependence of lifetime for a low concentration of permeant ion depends on the total salt level. The results for these conditions are consistent with the assumption that membrane compression also influences the lifetime, even for the "soft" solvent-containing membrane considered here. It is proposed that the channel nearest neighbor lipids need not be fixed in a plane at the channel end. Using a liquid crystal model it may then be shown that surface tension is the major component of the membrane deformation free energy, which may explain the significant effects of the membrane compression on the lifetime.

摘要

测定了短杆菌肽A通道在单油酸甘油酯/癸烷双层膜中的平均寿命。结果支持了离子占据使通道稳定的假说。电场和盐浓度的影响与对占据和膜压缩的预期影响一致。在膜的一侧有二价阳离子阻滞剂的不对称溶液中的寿命呈现出电压依赖性,即从阻断侧施加正电压时寿命降低,施加负电压时寿命增加。这一结果有力地支持了占据假说。寿命随渗透离子浓度增加,在1摩尔浓度时也随电压增加。低浓度渗透离子时寿命的电压依赖性取决于总盐水平。这些条件下的结果与膜压缩也影响寿命这一假设一致,即使对于这里所考虑的含“软”溶剂的膜也是如此。有人提出,通道最近邻脂质在通道末端不必固定在一个平面内。利用液晶模型可以表明,表面张力是膜变形自由能的主要成分,这可以解释膜压缩对寿命的显著影响。

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