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基于磁镊的力钳揭示了机械上不同的 apCAM 结构域相互作用。

Magnetic tweezers-based force clamp reveals mechanically distinct apCAM domain interactions.

机构信息

School of Chemistry and Chemical Biology, University College Dublin, Belfield, Dublin, Ireland.

出版信息

Biophys J. 2012 Sep 19;103(6):1120-9. doi: 10.1016/j.bpj.2012.08.025.

Abstract

Cell adhesion molecules of the immunoglobulin superfamily (IgCAMs) play a crucial role in cell-cell interactions during nervous system development and function. The Aplysia CAM (apCAM), an invertebrate IgCAM, shares structural and functional similarities with vertebrate NCAM and therefore has been considered as the Aplysia homolog of NCAM. Despite these similarities, the binding properties of apCAM have not been investigated thus far. Using magnetic tweezers, we applied physiologically relevant, constant forces to apCAM-coated magnetic particles interacting with apCAM-coated model surfaces and characterized the kinetics of bond rupture. The average bond lifetime decreased with increasing external force, as predicted by theoretical considerations. Mathematical simulations suggest that the apCAM homophilic interaction is mediated by two distinct bonds, one involving all five immunoglobulin (Ig)-like domains in an antiparallel alignment and the other involving only two Ig domains. In summary, this study provides biophysical evidence that apCAM undergoes homophilic interactions, and that magnetic tweezers-based, force-clamp measurements provide a rapid and reliable method for characterizing relatively weak CAM interactions.

摘要

免疫球蛋白超家族的细胞黏附分子(IgCAMs)在神经系统发育和功能过程中的细胞-细胞相互作用中发挥着关键作用。海兔 CAM(apCAM)是一种无脊椎动物 IgCAM,与脊椎动物 NCAM 具有结构和功能上的相似性,因此被认为是 NCAM 的海兔同源物。尽管存在这些相似性,但迄今为止尚未研究 apCAM 的结合特性。使用磁镊,我们向与 apCAM 涂层模型表面相互作用的 apCAM 涂层磁性颗粒施加生理相关的恒定力,并对键断裂的动力学进行了表征。平均键寿命随外加力的增加而降低,这与理论考虑相符。数学模拟表明,apCAM 同种型相互作用由两个不同的键介导,一个涉及所有五个免疫球蛋白(Ig)样结构域的反平行排列,另一个仅涉及两个 Ig 结构域。总之,这项研究提供了生物物理证据,表明 apCAM 发生同种型相互作用,并且基于磁镊的力钳测量为表征相对较弱的 CAM 相互作用提供了一种快速可靠的方法。

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