Chien Yuan-Hung, Jiang Ning, Li Fang, Zhang Fang, Zhu Cheng, Leckband Deborah
Department of Biochemistry, University of Illinois, Urbana, Illinois, USA.
J Biol Chem. 2008 Jan 25;283(4):1848-56. doi: 10.1074/jbc.M708044200. Epub 2007 Nov 13.
Micropipette manipulation measurements quantified the pre-steady state binding kinetics between cell pairs mediated by Xenopus cleavage stage cadherin. The time-dependence of the intercellular binding probability exhibits a fast forming, low probability binding state, which transitions to a slower forming, high probability state. The biphasic kinetics are independent of the cytoplasmic region, but the transition to the high probability state requires the third extracellular domain EC3. Deleting either EC3 or EC3-5, or substituting Trp(2) for Ala reduces the binding curves to a simple, monophasic rise in binding probability to a limiting plateau, as predicted for a single site binding mechanism. The two stage cadherin binding process reported here directly parallels previous biophysical studies, and confirms that the cadherin ectodomain governs the initial intercellular adhesion dynamics.
微量移液器操作测量量化了非洲爪蟾卵裂期钙黏蛋白介导的细胞对之间的稳态前结合动力学。细胞间结合概率的时间依赖性表现出一种快速形成、低概率的结合状态,该状态会转变为一种形成较慢、高概率的状态。双相动力学与细胞质区域无关,但向高概率状态的转变需要第三个细胞外结构域EC3。删除EC3或EC3 - 5,或将色氨酸(2)替换为丙氨酸,会使结合曲线变为简单的、单相上升至极限平台,这与单一位点结合机制的预测一致。此处报道的两阶段钙黏蛋白结合过程与之前的生物物理研究直接平行,并证实钙黏蛋白胞外域控制着初始细胞间黏附动力学。