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细胞黏附中事件的时空序列:从分子识别到黏着斑组装。

Spatial and temporal sequence of events in cell adhesion: from molecular recognition to focal adhesion assembly.

作者信息

Cohen Miriam, Joester Derk, Geiger Benjamin, Addadi Lia

机构信息

Department of Molecular Cell Biology, Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

Chembiochem. 2004 Oct 4;5(10):1393-9. doi: 10.1002/cbic.200400162.

Abstract

A new concept that attributes a pivotal role to the pericellular coat in the regulation of the early stages of cell adhesion is presented. Quick, adaptable, and transient adhesion through multiple cooperative weak interactions provides the cell with an additional level of modulation in the decision-making process that precedes the commitment to adhesion at a particular site. Hyaluronan emerges as a modulator of cell adhesion in certain cells, mediating binding or repulsion through its polyelectrolyte character, in addition to its chirality and molecular-recognition properties. The biophysical properties of hyaluronan as well as its ultrastructural organization are analyzed in relation to this proposed function.

摘要

提出了一个新的概念,即细胞周被在细胞黏附早期阶段的调节中起关键作用。通过多种协同弱相互作用实现的快速、适应性和短暂黏附,为细胞在决定在特定位点黏附之前的决策过程中提供了额外的调节水平。透明质酸在某些细胞中作为细胞黏附的调节剂出现,除了其手性和分子识别特性外,还通过其聚电解质特性介导结合或排斥。结合这一提出的功能,分析了透明质酸的生物物理特性及其超微结构组织。

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