Doyle M L, Brigham-Burke M, Blackburn M N, Brooks I S, Smith T M, Newman R, Reff M, Stafford W F, Sweet R W, Truneh A, Hensley P, O'Shannessy D J
Department of Structural Biology, SmithKline Beecham Pharmaceuticals, King of Prussia, Pennsylvania 19406-0939, USA.
Methods Enzymol. 2000;323:207-30. doi: 10.1016/s0076-6879(00)23368-5.
This chapter has described a bioenergetic analysis of the interaction of sCD4 with an IgG1 and two IgG4 derivatives of an anti-sCD4 MAb. The MAbs have identical VH and VL domains but differ markedly in their CH and CL domains, raising the question of whether their antigen-binding chemistries are altered. We find the sCD4-binding kinetics and thermodynamics of the MAbs are indistinguishable, which indicates rigorously that the molecular details of the binding interactions are the same. We also showed the importance of using multiple biophysical methods to define the binding model before the bioenergetics can be appropriately interpreted. Analysis of the binding thermodynamics and kinetics suggests conformational changes that might be coupled to sCD4 binding by these MAbs are small or absent.
本章描述了对可溶性CD4(sCD4)与抗sCD4单克隆抗体(MAb)的一种IgG1及两种IgG4衍生物相互作用的生物能量分析。这些单克隆抗体具有相同的重链可变区(VH)和轻链可变区(VL)结构域,但在其恒定区重链(CH)和恒定区轻链(CL)结构域上有显著差异,这就引发了它们的抗原结合化学性质是否改变的问题。我们发现这些单克隆抗体与sCD4结合的动力学和热力学并无差异,这严格表明结合相互作用的分子细节是相同的。我们还表明,在能够恰当地解释生物能量学之前,使用多种生物物理方法来定义结合模型的重要性。对结合热力学和动力学的分析表明,这些单克隆抗体与sCD4结合可能伴随的构象变化很小或不存在。