Gesty-Palmer D, Thompson N L
Department of Chemistry, University of North Carolina, Chapel Hill 27599-3290, USA.
J Mol Recognit. 1997 Mar-Apr;10(2):63-72. doi: 10.1002/(SICI)1099-1352(199703/04)10:2<63::AID-JMR342>3.0.CO;2-H.
Total internal reflection fluorescence microscopy has been used to investigate the binding of the soluble extracellular domain of mouse Fc gamma RII (sFc gamma RII) to an anti-trinitrophenyl monoclonal mouse IgG2b (GK14.1) specifically bound to substrate-supported planar membranes composed of dipalmitoylphosphatidylcholine (DPPC) and trinitrophenylaminocaproyldipalmitoylphosphatidylethanolamine (TNP-cap-DPPE). The equilibrium dissociation constants for sFc gamma RII at GK14.1-coated TNP-cap-DPPE/DPPC planar membranes containing 0.5-25 mol% TNP-cap-DPPE were approximately 1 microM. Total internal reflection with fluorescence photobleaching recovery was used to examine the dissociation kinetics. The fluorescence recovery curves were better described as a sum of two exponentials rather than by one exponential; the rates and fractional recoveries were approximately 1 s-1 (65%) and approximately 0.1 s-1 (35%). The similarity between the values of these equilibrium and kinetic parameters to those previously measured for the binding of IgG in solution to intact mouse Fc gamma RII reconstituted into planar membranes suggests that conformational changes which may occur when IgG is constrained to a membrane surface do not significantly affect the equilibrium or kinetics of IgG-mouse Fc gamma RII binding. The stoichiometry of sFc gamma RII-GK14.1 binding was 1:4, indicating that a significant fraction of the membrane-bound antibodies were not accessible for receptor binding. Possible mechanisms that might underlay the observed heterogeneity in sFc gamma RII-IgG binding kinetics are discussed.
全内反射荧光显微镜已被用于研究小鼠FcγRII的可溶性细胞外结构域(sFcγRII)与特异性结合到由二棕榈酰磷脂酰胆碱(DPPC)和三硝基苯基氨基己酰二棕榈酰磷脂酰乙醇胺(TNP-cap-DPPE)组成的底物支撑平面膜上的抗三硝基苯基单克隆小鼠IgG2b(GK14.1)的结合。在含有0.5 - 25 mol% TNP-cap-DPPE的GK14.1包被的TNP-cap-DPPE/DPPC平面膜上,sFcγRII的平衡解离常数约为1 μM。利用全内反射荧光漂白恢复技术来检测解离动力学。荧光恢复曲线用两个指数之和比用一个指数能更好地描述;速率和分数恢复率分别约为1 s-1(65%)和约0.1 s-1(35%)。这些平衡和动力学参数的值与之前测量的溶液中IgG与重构到平面膜中的完整小鼠FcγRII结合的值相似,这表明当IgG被限制在膜表面时可能发生的构象变化不会显著影响IgG - 小鼠FcγRII结合的平衡或动力学。sFcγRII - GK14.1结合的化学计量比为1:4,表明很大一部分膜结合抗体无法与受体结合。讨论了可能导致观察到的sFcγRII - IgG结合动力学异质性背后的潜在机制。