Rajpal A, Taylor M G, Kirsch J F
Department of Chemistry, University of California, Berkeley 94720, USA.
Protein Sci. 1998 Sep;7(9):1868-74. doi: 10.1002/pro.5560070903.
The hen (chicken) egg-white lysozyme (HEWL) epitope for the monoclonal antibody HyHEL-10 Fab (Fab-10) was investigated by alanine scan mutagenesis. The association rate constants (k(on)) for the HEWL Fab-10 complexes were obtained from the homogenous solution method described in the preceding paper (Taylor et al., 1998). A new method for determining the dissociation rate constant (k(off)) for the complex, by trapping nascent free antibody with an inactive HEWL mutant is described. The values of k(on) fall within a factor of 2 of the wild-type (WT) HEWL value (1.43+/-0.13 X 10(6)M(-1)s(-1)), while the increases in k(off)more nearly reflect the total change in free energies of the complex (deltadeltaG(D)). The dissociation constants (K(D)) were measured directly in those cases where satisfactory kinetic data could not be obtained. The Y20A, K96A, and K97A HEWL.Fab-10 complexes are destabilized by more than 4 kcal/mol compared to the WT complex. The R21A, L75A, and D101A antibody complexes are moderately destabilized (0.7 < deltadeltaG(D)< or = 1.0 kcal/mol). Additional mutations of the "hotspot" residues (Tyr20, Lys96, Lys97) were constructed to probe, more precisely, the nature of their contributions to complex formation. The results show that the entire hydrocarbon side chains of Tyr20 and Lys97, and only the epsilon-amino group of Lys96, contribute to the stability of the complex. The value of deltadeltaG(D) for the R21A mutant complex is a distinct outlier in the Arg21 replacement series demonstrating the importance of supplementing alanine scan mutagenesis with additional mutations.
通过丙氨酸扫描诱变研究了单克隆抗体HyHEL-10 Fab(Fab-10)的鸡卵清溶菌酶(HEWL)表位。HEWL Fab-10复合物的缔合速率常数(k(on))由前文(Taylor等人,1998年)所述的均相溶液法获得。本文描述了一种通过用无活性的HEWL突变体捕获新生游离抗体来测定复合物解离速率常数(k(off))的新方法。k(on)的值在野生型(WT)HEWL值(1.43±0.13×10(6)M(-1)s(-1))的2倍范围内,而k(off)的增加更接近反映复合物自由能的总变化(ΔΔG(D))。在无法获得满意动力学数据的情况下,直接测量解离常数(K(D))。与WT复合物相比,Y20A、K96A和K97A HEWL.Fab-10复合物的稳定性降低超过4 kcal/mol。R21A、L75A和D101A抗体复合物的稳定性适度降低(0.7<ΔΔG(D)≤1.0 kcal/mol)。构建了“热点”残基(Tyr20、Lys96、Lys97)的额外突变体,以更精确地探究它们对复合物形成贡献的性质。结果表明,Tyr20和Lys97的整个烃侧链以及仅Lys96的ε-氨基对复合物的稳定性有贡献。R21A突变体复合物的ΔΔG(D)值在Arg21替代系列中是一个明显的异常值,表明用额外突变补充丙氨酸扫描诱变的重要性。