Mell Michael, Moleiro Lara H, Hertle Yvonne, López-Montero Iván, Cao Francisco J, Fouquet Peter, Hellweg Thomas, Monroy Francisco
Departamento de Química Física I, Universidad Complutense de Madrid, E-28040 Madrid, Spain.
Departamento de Química Física I, Universidad Complutense de Madrid, E-28040 Madrid, Spain; Physikalische Chemie I, Univeristät Bayreuth, Universitätsstraße 30, D-95447 Bayreuth, Germany.
Chem Phys Lipids. 2015 Jan;185:61-77. doi: 10.1016/j.chemphyslip.2014.11.005. Epub 2014 Nov 29.
The presence of coupled modes of membrane motion in closed shells is extensively predicted by theory. The bilayer structure inherent to lipid vesicles is suitable to support hybrid modes of curvature motion coupling membrane bending with the local reorganization of the bilayer material through relaxation of the dilatational stresses. Previous experiments evidenced the existence of such hybrid modes facilitating membrane bending at high curvatures in lipid vesicles [Rodríguez-García, R., Arriaga, L.R., Mell, M., Moleiro, L.H., López-Montero, I., Monroy, F., 2009. Phys. Rev. Lett. 102, 128201.]. For lipid bilayers that are able to undergo intermonolayer sliding, the experimental fluctuation spectra are found compatible with a bimodal schema. The usual tension/bending fluctuations couple with the hybrid modes in a mechanical interplay, which becomes progressively efficient with increasing vesicle radius, to saturate at infinity radius into the behavior expected for a flat membrane. Grounded on the theory of closed shells, we propose an approximated expression of the bimodal spectrum, which predicts the observed dependencies on the vesicle radius. The dynamical features obtained from the autocorrelation functions of the vesicle fluctuations are found in quantitative agreement with the proposed theory.
理论广泛预测了封闭壳中膜运动耦合模式的存在。脂质囊泡固有的双层结构适合支持曲率运动的混合模式,这种模式通过膨胀应力的松弛将膜弯曲与双层材料的局部重组耦合起来。先前的实验证明了这种混合模式的存在,它有助于脂质囊泡在高曲率下的膜弯曲[Rodríguez-García, R., Arriaga, L.R., Mell, M., Moleiro, L.H., López-Montero, I., Monroy, F., 2009. Phys. Rev. Lett. 102, 128201.]。对于能够进行单层间滑动的脂质双层,实验波动谱与双峰模式兼容。通常的张力/弯曲波动在机械相互作用中与混合模式耦合,随着囊泡半径的增加,这种相互作用逐渐变得有效,在无限大半径时饱和为平面膜预期的行为。基于封闭壳理论,我们提出了双峰谱的近似表达式,它预测了观察到的对囊泡半径的依赖性。从囊泡波动的自相关函数获得的动力学特征与所提出的理论在数量上一致。