Rózycki Bartosz, Weikl Thomas R, Lipowsky Reinhard
Max Planck Institute of Colloids and Interfaces, Science Park Golm, 14424 Potsdam, Germany.
Phys Rev Lett. 2008 Mar 7;100(9):098103. doi: 10.1103/PhysRevLett.100.098103.
Multicomponent membranes such as ternary mixtures of lipids and cholesterol can exhibit coexistence regions between two liquid phases. When such membranes adhere to a corrugated substrate, the phase separation process strongly depends on the interplay between substrate topography, bending rigidities, and line tension of the membrane domains as we show theoretically via energy minimization and Monte Carlo simulations. For sufficiently large bending rigidity contrast between the two membrane phases, the corrugated substrate truncates the phase separation process and leads to a stable pattern of membrane domains. Our theory is consistent with recent experimental observations and provides a possible control mechanism for domain patterns in biological membranes.
多组分膜,如脂质和胆固醇的三元混合物,在两个液相之间可呈现共存区域。当此类膜附着于有波纹的基底时,相分离过程强烈依赖于基底形貌、弯曲刚度以及膜域的线张力之间的相互作用,正如我们通过能量最小化和蒙特卡罗模拟从理论上所展示的那样。对于两个膜相之间足够大的弯曲刚度差异,有波纹的基底会截断相分离过程,并导致膜域形成稳定的图案。我们的理论与最近的实验观察结果一致,并为生物膜中域图案提供了一种可能的控制机制。