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膜骨架的力学与功能方面

Mechanical and functional aspects of membrane skeletons.

作者信息

Svetina S, Bozic B, Derganc J, Zeks B

机构信息

Institute of Biophysics, Faculty of Medicine, University of Ljubljana, Slovenia.

出版信息

Cell Mol Biol Lett. 2001;6(3):677-90.

Abstract

Membrane skeletons can be characterized as cytoskeletal structures lying parallel to the bilayer part of cellular and organelle membranes. Typical examples are spectrin network and actin-myosin cortex. We approach the problem of elucidating the function of membrane skeletons by theoretically analyzing mechanical models of the cellular behavior. Membranes of different physical and chemical properties are considered. In erythrocytes and some organelles membrane bilayers are smooth and simply underlaid or overlaid by membrane skeletons. It is argued that there the role of a membrane skeleton is, either, to keep the membrane composition laterally homogeneous as it is in the case of the erythrocyte, or, that it is involved in the processes of the lateral separation of integral membrane proteins as it is happening in the case of some intermediate steps of the vesicular membrane trafficking. In the second type of membranes the bilayer part is ruffled and folded, and there the membrane skeletons play a role in the determination of the cortical tension. Here we explore in more detail the mechanical behavior of a cell with such properties of its boundary. The shape transformations are described which occur under the influence (i) of different external forces, i.e., when an originally spherical cell is aspirated into the micropipette or when such a cell is adsorbed on a flat surface, and (ii) of different internal forces on the cell boundary exerted by the cytoskeletal elements.

摘要

膜骨架可被描述为与细胞和细胞器膜的双层部分平行的细胞骨架结构。典型的例子是血影蛋白网络和肌动蛋白-肌球蛋白皮层。我们通过对细胞行为的力学模型进行理论分析来探讨阐明膜骨架功能的问题。考虑了具有不同物理和化学性质的膜。在红细胞和一些细胞器中,膜双层是光滑的,仅由膜骨架简单地覆盖或衬于其下方。有人认为,在那里膜骨架的作用要么是像在红细胞中那样保持膜成分在横向的均匀性,要么是像在囊泡膜运输的某些中间步骤中那样参与整合膜蛋白的横向分离过程。在第二类膜中,双层部分是有褶皱和折叠的,在那里膜骨架在确定皮层张力方面发挥作用。在这里,我们更详细地探讨具有这种边界特性的细胞的力学行为。描述了在不同外力影响下(即当一个原本球形的细胞被吸入微量移液器时,或者当这样一个细胞吸附在平面上时)以及细胞骨架元件在细胞边界上施加的不同内力影响下发生的形状转变。

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