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细胞与基质粘附的初始阶段可由细胞表面透明质酸介导和调节。

Initial stages of cell-matrix adhesion can be mediated and modulated by cell-surface hyaluronan.

作者信息

Zimmerman Ella, Geiger Benjamin, Addadi Lia

机构信息

Department of Structural Biology, The Weizmann Institute of Science, 76100 Rehovot, Israel.

出版信息

Biophys J. 2002 Apr;82(4):1848-57. doi: 10.1016/S0006-3495(02)75535-5.

Abstract

A conceptual temporal and spatial gap exists between the first encounter of a cell with an adhesive substrate and the advanced stages of focal adhesion formation. Although ample information is available on focal adhesions structure and function, the mechanism of the first interaction events and the nature of the molecules mediating them are largely unknown. In this paper we identify cell-surface-associated hyaluronan as a mediator and modulator of the first steps of adhesion of A6 and other cells to conventional tissue culture substrates as well as to the surfaces of calcium-(R,R)-tartrate tetrahydrate crystals. Treatment of A6 cells with hyaluronidase suppresses their rapid interactions with these adhesive substrates, and incubation of either the hyaluronidase-treated cells or the substrate with hyaluronan restores cell adhesion. In contrast, excess hyaluronan on both the cells and the substrate strongly inhibits adhesion. We thus propose that cell-surface-associated hyaluronan can mediate and modulate cell-matrix adhesion at the very first encounter with the substrate. It may promote it through the establishment of exquisitely stereospecific chemical interactions or inhibit it by virtue of steric exclusion and/or electrostatic repulsion.

摘要

在细胞首次接触黏附底物与粘着斑形成的后期阶段之间,存在一个概念上的时空间隙。尽管关于粘着斑的结构和功能已有大量信息,但首次相互作用事件的机制以及介导这些事件的分子的性质在很大程度上仍不清楚。在本文中,我们确定细胞表面相关的透明质酸是A6细胞和其他细胞与传统组织培养底物以及与四水合酒石酸钙(R,R)晶体表面黏附第一步的介导物和调节剂。用透明质酸酶处理A6细胞会抑制它们与这些黏附底物的快速相互作用,而用透明质酸孵育经透明质酸酶处理的细胞或底物可恢复细胞黏附。相反,细胞和底物上过量的透明质酸会强烈抑制黏附。因此,我们提出细胞表面相关的透明质酸在与底物首次接触时即可介导和调节细胞 - 基质黏附。它可能通过建立精确的立体特异性化学相互作用来促进黏附,或者通过空间排斥和/或静电排斥来抑制黏附。

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