Tello D, Eisenstein E, Schwarz F P, Goldbaum F A, Fields B A, Mariuzza R A, Poljak R J
Institut Pasteur, Paris, France.
J Mol Recognit. 1994 Mar;7(1):57-62. doi: 10.1002/jmr.300070108.
The reaction between the mouse (BALB/c) anti-idiotopic monoclonal antibodies E225 and E5.2 and idiotopes on the (BALB/c) anti-lysozyme monoclonal antibody D1.3 has been characterized by titration calorimetry, by equilibrium sedimentation and by the determination of binding association and dissociation rates. The reaction between E5.2 and D1.3 is driven by a large negative enthalpy and its rate and equilibrium association constants are comparable to those observed in other antigen-antibody reactions. In contrast, the reaction between E225 and D1.3 is entropically driven and characterized by slow association kinetics (1 x 10(3) M-1 sec-1) and a resulting low equilibrium constant (Ka = 2 x 10(5) M-1). A correlation of these properties with the three-dimensional structure of the Fab225-FabD1.3 complex, previously determined by X-ray diffraction methods to 2.5 A resolution, indicates that conformational changes of several D1.3 contacting residues, located in its complementarity determining regions, may explain these features of the reaction.
通过滴定热分析法、平衡沉降法以及结合缔合和解离速率的测定,对小鼠(BALB/c)抗独特型单克隆抗体E225和E5.2与(BALB/c)抗溶菌酶单克隆抗体D1.3上的独特型之间的反应进行了表征。E5.2与D1.3之间的反应由很大的负焓驱动,其反应速率和平衡缔合常数与在其他抗原-抗体反应中观察到的相当。相比之下,E225与D1.3之间的反应由熵驱动,其特征在于缔合动力学缓慢(1×10³ M⁻¹ s⁻¹),导致平衡常数较低(Ka = 2×10⁵ M⁻¹)。这些性质与之前通过X射线衍射方法以2.5 Å分辨率测定的Fab225-FabD1.3复合物三维结构的相关性表明,位于D1.3互补决定区的几个接触残基的构象变化可能解释了该反应的这些特征。