Accelrys, 10188 Telesis Court, San Diego, California 92121, USA.
Proteins. 2013 Apr;81(4):704-14. doi: 10.1002/prot.24230. Epub 2013 Jan 15.
Understanding the effects of mutation on pH-dependent protein binding affinity is important in protein design, especially in the area of protein therapeutics. We propose a novel method for fast in silico mutagenesis of protein-protein complexes to calculate the effect of mutation as a function of pH. The free energy differences between the wild type and mutants are evaluated from a molecular mechanics model, combined with calculations of the equilibria of proton binding. The predicted pH-dependent energy profiles demonstrate excellent agreement with experimentally measured pH-dependency of the effect of mutations on the dissociation constants for the complex of turkey ovomucoid third domain (OMTKY3) and proteinase B. The virtual scanning mutagenesis identifies all hotspots responsible for pH-dependent binding of immunoglobulin G (IgG) to neonatal Fc receptor (FcRn) and the results support the current understanding of the salvage mechanism of the antibody by FcRn based on pH-selective binding. The method can be used to select mutations that change the pH-dependent binding profiles of proteins and guide the time consuming and expensive protein engineering experiments. As an application of this method, we propose a computational strategy to search for mutations that can alter the pH-dependent binding behavior of IgG to FcRn with the aim of improving the half-life of therapeutic antibodies in the target organism.
理解突变对 pH 依赖性蛋白结合亲和力的影响在蛋白质设计中非常重要,特别是在蛋白治疗领域。我们提出了一种新的方法,可以快速在计算机上进行蛋白-蛋白复合物的突变,以计算突变对 pH 的影响。通过分子力学模型评估野生型和突变体之间的自由能差异,并结合质子结合平衡的计算。预测的 pH 依赖性能量曲线与实验测量的突变对 turkey ovomucoid third domain (OMTKY3) 和蛋白酶 B 复合物解离常数的影响的 pH 依赖性之间具有极好的一致性。虚拟扫描突变鉴定了所有导致免疫球蛋白 G (IgG) 与新生儿 Fc 受体 (FcRn) 之间 pH 依赖性结合的热点,结果支持了基于 pH 选择性结合的 FcRn 对抗体拯救机制的现有理解。该方法可用于选择改变蛋白 pH 依赖性结合特性的突变,并指导耗时且昂贵的蛋白工程实验。作为该方法的应用,我们提出了一种计算策略,用于搜索可以改变 IgG 与 FcRn 的 pH 依赖性结合行为的突变,以提高目标生物体内治疗性抗体的半衰期。