Panorchan Porntula, Thompson Melissa S, Davis Kelly J, Tseng Yiider, Konstantopoulos Konstantinos, Wirtz Denis
Department of Chemical and Biomolecular Engineering, The Johns Hopkins University, 3400 N. Charles Street, Baltimore, MD 21218, USA.
J Cell Sci. 2006 Jan 1;119(Pt 1):66-74. doi: 10.1242/jcs.02719.
Cadherins are ubiquitous cell surface molecules that are expressed in virtually all solid tissues and localize at sites of cell-cell contact. Cadherins form a large and diverse family of adhesion molecules, which play a crucial role in a multitude of cellular processes, including cell-cell adhesion, motility, and cell sorting in maturing organs and tissues, presumably because of their different binding capacity and specificity. Here, we develop a method that probes the biochemical and biophysical properties of the binding interactions between cadherins expressed on the surface of living cells, at the single-molecule level. Single-molecule force spectroscopy reveals that classical cadherins, N-cadherin and E-cadherin, form bonds that display adhesion specificity, and a pronounced difference in adhesion force and reactive compliance, but not in bond lifetime. Moreover, their potentials of interaction, derived from force-spectroscopy measurements, are qualitatively different when comparing the single-barrier energy potential for the dissociation of an N-cadherin-N-cadherin bond with the double-barrier energy potential for an E-cadherin-E-cadherin bond. Together these results suggest that N-cadherin and E-cadherin molecules form homophilic bonds between juxtaposed cells that have significantly different kinetic and micromechanical properties.
钙黏蛋白是普遍存在的细胞表面分子,几乎在所有实体组织中都有表达,并定位于细胞 - 细胞接触部位。钙黏蛋白构成了一个庞大且多样的黏附分子家族,在众多细胞过程中发挥着关键作用,包括细胞 - 细胞黏附、迁移以及成熟器官和组织中的细胞分选,这大概是由于它们具有不同的结合能力和特异性。在这里,我们开发了一种方法,可在单分子水平上探测活细胞表面表达的钙黏蛋白之间结合相互作用的生化和生物物理特性。单分子力谱显示,经典钙黏蛋白N - 钙黏蛋白和E - 钙黏蛋白形成的键具有黏附特异性,在黏附力和反应柔顺性方面存在显著差异,但在键寿命方面没有差异。此外,当比较N - 钙黏蛋白 - N - 钙黏蛋白键解离的单势垒能量势与E - 钙黏蛋白 - E - 钙黏蛋白键的双势垒能量势时,通过力谱测量得出的它们的相互作用势在性质上是不同的。这些结果共同表明,N - 钙黏蛋白和E - 钙黏蛋白分子在并列细胞之间形成了具有显著不同动力学和微机械特性的同嗜性键。