Department of Chemical and Biomolecular Engineering, University of Illinois, Urbana-Champaign, IL 61801, USA.
J Cell Sci. 2012 Jul 15;125(Pt 14):3299-309. doi: 10.1242/jcs.087395. Epub 2012 Apr 14.
This study investigated the impact of cadherin binding differences on both cell sorting and GTPase activation. The use of N-terminal domain point mutants of Xenopus C-cadherin enabled us to quantify binding differences and determine their effects on cadherin-dependent functions without any potential complications arising as a result of differences in cytodomain interactions. Dynamic cell-cell binding measurements carried out with the micropipette manipulation technique quantified the impact of these mutations on the two-dimensional binding affinities and dissociation rates of cadherins in the native context of the cell membrane. Pairwise binding affinities were compared with in vitro cell-sorting specificity and ligation-dependent GTPase signaling. Two-dimensional affinity differences greater than five-fold correlated with cadherin-dependent in vitro cell segregation, but smaller differences failed to induce cell sorting. Comparison of the binding affinities with GTPase signaling amplitudes further demonstrated that differential binding also proportionally modulates intracellular signaling. These results show that differential cadherin affinities have broader functional consequences than merely controlling cell-cell cohesion.
本研究调查了钙黏蛋白结合差异对细胞分选和 GTPase 激活的影响。使用爪蟾 C 钙黏蛋白的 N 端结构域点突变体,使我们能够定量结合差异,并确定它们对钙黏蛋白依赖性功能的影响,而不会因细胞域相互作用的差异而产生任何潜在的并发症。使用微管操纵技术进行的动态细胞-细胞结合测量,量化了这些突变对细胞膜固有环境中钙黏蛋白的二维结合亲和力和解离速率的影响。成对的结合亲和力与体外细胞分选特异性和连接依赖性 GTPase 信号转导进行了比较。二维亲和力差异大于五倍与钙黏蛋白依赖性体外细胞分离相关,但较小的差异未能诱导细胞分选。结合亲和力与 GTPase 信号转导幅度的比较进一步表明,差异结合也成比例地调节细胞内信号转导。这些结果表明,钙黏蛋白亲和力的差异具有比仅仅控制细胞-细胞黏附更广泛的功能后果。