膜
POPC公司
膜曲率
生物物理学
膜生物物理学
生物膜
双层
脂质双层
小泡
细胞膜弹性
化学
曲率
分子动力学
膜流动性
化学物理
纳米技术
材料科学
脂质双层相行为
生物化学
生物
计算化学
几何学
数学
作者
Chang Liu,Qi Zhong,Kai Kang,Rui Ma,Chen Song
标识
DOI:10.26434/chemrxiv-2022-24qv4
摘要
Ca2+ ions play crucial roles in regulating many chemical and biological processes, but its impact on lipid bilayer membranes remains elusive, especially when the impacts on the two leaflets are asymmetrical. Using a recently developed multisite Ca2+ model, we performed molecular dynamics simulations to study the impact of Ca2+ on the properties of membranes composed of POPC and POPS, and observed that both the structure and fluidity of the membranes were significantly affected. Particularly, we examined the influence of asymmetrically distributed Ca2+ on asymmetric lipid bilayers, and found that imbalanced stress in the two leaflets were generated, with the negatively charged leaflet on the Ca2+ rich side becoming more condensed, which in turn induced membrane curvature that bent the membrane away from the Ca2+ rich side. We employed continuum mechanics to study the large-scale deformations of the membrane and found that membranes can develop into locally pearl-shaped or globally oblate, depending on the specific Ca2+ distributions. These results provide new insights to the underlying mechanism of many biological phenomena involving Ca2+-membrane interactions, and may lead to new methods for manipulating membrane curvature of vesicles in biological, chemical, and nano systems.
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