Lim Tong Seng, Vedula Sri Ram Krishna, Hui Shi, Kausalya P Jaya, Hunziker Walter, Lim Chwee Teck
Bioinformatics Institute, Agency for Science, Technology and Research (ASTAR), 30 Biopolis Street, #07-01 Matrix, Singapore.
Exp Cell Res. 2008 Aug 15;314(14):2643-51. doi: 10.1016/j.yexcr.2008.05.015. Epub 2008 Jun 3.
Claudins belong to a large family of transmembrane proteins that localize at tight junctions (TJs) where they play a central role in regulating paracellular transport of solutes and nutrients across epithelial monolayers. Their ability to regulate the paracellular pathway is highly influenced by changes in extracellular pH. However, the effect of changes in pH on the strength and kinetics of claudin mediated adhesion is poorly understood. Using atomic force microscopy, we characterized the kinetic properties of homophilic trans-interactions between full length recombinant GST tagged Claudin-2 (Cldn2) under different pH conditions. In measurements covering three orders of magnitude change in force loading rate of 10(2)-10(4) pN/s, the Cldn2/Cldn2 force spectrum (i.e., unbinding force versus loading rate) revealed a fast and a slow loading regime that characterized a steep inner activation barrier and a wide outer activation barrier throughout pH range of 4.5-8. Comparing to the neutral condition (pH 6.9), differences in the inner energy barriers for the dissociation of Cldn2/Cldn2 mediated interactions at acidic and alkaline environments were found to be <0.65 k(B)T, which is much lower than the outer dissociation energy barrier (>1.37 k(B)T). The relatively stable interaction of Cldn2/Cldn2 in neutral environment suggests that electrostatic interactions may contribute to the overall adhesion strength of Cldn2 interactions. Our results provide an insight into the changes in the inter-molecular forces and adhesion kinetics of Cldn2 mediated interactions in acidic, neutral and alkaline environments.
闭合蛋白属于一个跨膜蛋白大家族,定位于紧密连接(TJ)处,在调节溶质和营养物质跨上皮单层的细胞旁运输中发挥核心作用。它们调节细胞旁途径的能力受到细胞外pH值变化的高度影响。然而,pH值变化对闭合蛋白介导的黏附强度和动力学的影响却知之甚少。我们使用原子力显微镜,表征了全长重组谷胱甘肽S-转移酶(GST)标记的闭合蛋白-2(Cldn2)在不同pH条件下的同嗜性反式相互作用的动力学特性。在涵盖10² - 10⁴ pN/s的力加载速率三个数量级变化的测量中,Cldn2/Cldn2力谱(即解离力与加载速率)显示出一个快速加载和一个缓慢加载状态,其特征是在4.5 - 8的整个pH范围内有一个陡峭的内部活化屏障和一个宽阔的外部活化屏障。与中性条件(pH 6.9)相比,发现在酸性和碱性环境中Cldn2/Cldn2介导的相互作用解离的内部能垒差异<0.65 k(B)T,这远低于外部解离能垒(>1.37 k(B)T)。Cldn2/Cldn2在中性环境中相对稳定的相互作用表明,静电相互作用可能有助于Cldn2相互作用的整体黏附强度。我们的结果为酸性、中性和碱性环境中Cldn2介导的相互作用的分子间力和黏附动力学变化提供了见解。