Department of Nuclear and Quantum Engineering, KAIST, Daejeon, 305-701, Republic of Korea.
Phys Rev Lett. 2010 Jul 16;105(3):038101. doi: 10.1103/PhysRevLett.105.038101. Epub 2010 Jul 13.
The thermal fluctuation and elasticity of dioleoyl-phosphocholine large unilamellar vesicle interacting with pore-forming peptide, melittin, were investigated by neutron spin-echo measurements. The relaxation behavior of the membrane fluctuation with different peptide to lipid molar ratio P/L can be divided into three regions, resulting from characteristic changes of the effective bending modulus κ(˜) of the membrane which includes the effects of internal dissipation within the membrane. At low P/L, melittin is adsorbed parallel to the surface of membrane and κ(˜) decreases significantly due to perturbation of hydrocarbon chain packing. At a critical P/L, melittin forms pores in the membrane and κ(˜) starts to increase slightly due to high pore rigidity. At higher P/L where the repulsive interpore interaction becomes significant, κ(˜) increases rapidly.
通过中子自旋回波测量研究了二油酰基磷脂酰胆碱大单分子层囊泡与成孔肽蜂毒素相互作用的热涨落和弹性。不同肽脂摩尔比 P/L 下膜涨落的弛豫行为可分为三个区域,这是由于膜的有效弯曲模量 κ(˜)的特征变化引起的,其中包括膜内内部耗散的影响。在低 P/L 下,蜂毒素平行于膜表面吸附,由于烃链堆积的扰动,κ(˜)显著降低。在临界 P/L 下,蜂毒素在膜中形成孔,由于孔的刚性较高,κ(˜)开始略有增加。在更高的 P/L 下,排斥孔间相互作用变得显著,κ(˜)迅速增加。