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单分子黏附测量揭示了两种具有机械特性不同的嗜同性神经细胞黏附分子键。

Single molecule adhesion measurements reveal two homophilic neural cell adhesion molecule bonds with mechanically distinct properties.

作者信息

Wieland Julie A, Gewirth Andrew A, Leckband Deborah E

机构信息

Department of Chemistry, University of Illinois, Urbana, Illinois 61801, USA.

出版信息

J Biol Chem. 2005 Dec 9;280(49):41037-46. doi: 10.1074/jbc.M503975200. Epub 2005 Sep 27.

Abstract

Neural cell adhesion molecule (NCAM) is a cell surface adhesion glycoprotein that plays an important role in the development and stability of nervous tissue. The homophilic binding mechanism of NCAM is still a subject of debate on account of findings that appear to support different mechanisms. This paper describes single molecule force measurements with both full-length NCAM and NCAM mutants that lack different immunoglobulin (Ig) domains. By systematically applying an external, time-dependent force to the bond, we obtained parameters that describe the energy landscape of NCAM-NCAM bonds. Histograms of the rupture forces between the full-length NCAM extracellular domains revealed two binding events, one rupturing at higher forces than the other. These bond rupture data show that the two bonds have the same dissociation rates. Despite the energetic and kinetic similarities, the bond strengths differ significantly, and are mechanically distinct. Measurements with NCAM domain deletion mutants mapped the weaker bond to the Ig1-2 segment, and the stronger bond to the Ig3 domain. Finally, the quantitative agreement between the fragment adhesion and the strengths of both NCAM bonds shows that the domain deletions considered in this study do not alter the intrinsic strengths of either of the two bonds.

摘要

神经细胞黏附分子(NCAM)是一种细胞表面黏附糖蛋白,在神经组织的发育和稳定性中发挥着重要作用。由于一些研究结果似乎支持不同的机制,NCAM的同源结合机制仍是一个有争议的话题。本文描述了对全长NCAM和缺乏不同免疫球蛋白(Ig)结构域的NCAM突变体进行的单分子力测量。通过系统地对键施加外部的、随时间变化的力,我们获得了描述NCAM-NCAM键能量景观的参数。全长NCAM细胞外结构域之间断裂力的直方图显示了两种结合事件,一种在比另一种更高的力下断裂。这些键断裂数据表明,这两种键具有相同的解离速率。尽管在能量和动力学上有相似之处,但键的强度差异显著,且在力学上是不同的。用NCAM结构域缺失突变体进行的测量将较弱的键定位到Ig1-2片段,将较强的键定位到Ig3结构域。最后,片段黏附与两种NCAM键强度之间的定量一致性表明,本研究中考虑的结构域缺失不会改变两种键中任何一种的固有强度。

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