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囊泡融合的柄机制。水性内容物的混合。

Stalk mechanism of vesicle fusion. Intermixing of aqueous contents.

作者信息

Kozlov M M, Leikin S L, Chernomordik L V, Markin V S, Chizmadzhev Y A

机构信息

A. N. Frumkin Institute of Electrochemistry, Academy of Sciences of the USSR, Moscow.

出版信息

Eur Biophys J. 1989;17(3):121-9. doi: 10.1007/BF00254765.

Abstract

A mechanism for rupture of a separating bilayer, resulting from vesicle monolayer fusion is investigated theoretically. The stalk mechanism of monolayer fusion, assuming the formation and expansion of a stalk between two interacting membranes is considered. The stalk evolution leads to formation of a separating bilayer and mechanical tension appearance in the system. This tension results in rupture of the separating bilayer and hydrophilic pore formation. Competition between the mechanical tension and hydrophilic pore energy defines the criteria of contacting bilayer rupture. The tension increases with an increase of the absolute value of the negative spontaneous curvature of the outer membrane monolayer, Kos. The pore edge energy decreases with an increase of the positive spontaneous curvature of the inner membrane monolayer, Kis. The relations of spontaneous curvatures of outer and inner monolayers, leading to separating bilayer rupture, is calculated. It is demonstrated that his process is possible, provided spontaneous curvatures of membrane monolayers have opposite signs: Kos less than O, Kis greater than O. Experimental data concerning the fusion process are analysed.

摘要

从理论上研究了由囊泡单层融合导致的分离双层破裂的机制。考虑了单层融合的茎干机制,即假设在两个相互作用的膜之间形成并扩展一个茎干。茎干的演化导致系统中形成分离双层并出现机械张力。这种张力导致分离双层破裂并形成亲水孔。机械张力和亲水孔能量之间的竞争定义了接触双层破裂的标准。张力随着外膜单层负自发曲率绝对值Kos的增加而增加。孔边缘能量随着内膜单层正自发曲率Kis的增加而降低。计算了导致分离双层破裂的外单层和内单层自发曲率的关系。结果表明,只要膜单层的自发曲率具有相反的符号:Kos小于0,Kis大于0,这个过程就是可能的。分析了关于融合过程的实验数据。

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