Drug Product Development, Bristol Myers Squibb, New Brunswick, United States.
Biophysics Center of Excellence, Global Product Development and Supply, Bristol Myers Squibb, New Brunswick, United States.
MAbs. 2020 Jan-Dec;12(1):1763138. doi: 10.1080/19420862.2020.1763138.
During the development of a therapeutic monoclonal antibody (mAb-1), the charge variant profile obtained by pH-gradient cation exchange chromatography (CEX) contained two main peaks, each of which exhibited a unique intrinsic fluorescence profile and demonstrated inter-convertibility upon reinjection of isolated peak fractions. Domain analysis of mAb-1 by CEX and liquid chromatography-mass spectrometry indicated that the antigen-binding fragment chromatographed as two separate peaks that had identical mass. Surface plasmon resonance binding analysis to antigen demonstrated comparable kinetics/affinity between these fractionated peaks and unfractionated starting material. Subsequent molecular modeling studies revealed that the relatively long and flexible complementarity-determining region 3 (CDR3) loop on the heavy chain could adopt two discrete pH-dependent conformations: an "open" conformation at neutral pH where the HC-CDR3 is largely solvent exposed, and a "closed" conformation at lower pH where the solvent exposure of a neighboring tryptophan in the light chain is reduced and two aspartic acid residues near the ends of the HC-CDR3 loop have atypical pKa values. The pH-dependent equilibrium between "open" and "closed" conformations of the HC-CDR3, and its proposed role in the anomalous charge variant profile of mAb-1, were supported by further CEX and hydrophobic interaction chromatography studies. This work is an example of how pH-dependent conformational changes and conformation-dependent changes to net charge can unexpectedly contribute to perceived instability and require thorough analytical, biophysical, and functional characterization during biopharmaceutical drug product development.
在治疗性单克隆抗体 (mAb-1) 的开发过程中,通过 pH 梯度阳离子交换色谱 (CEX) 获得的电荷变异体谱包含两个主要峰,每个峰都表现出独特的固有荧光谱,并在重新注入分离的峰级分时表现出可互变。通过 CEX 和液相色谱-质谱对 mAb-1 的结构域分析表明,抗原结合片段作为两个单独的峰进行色谱分离,它们具有相同的质量。对抗原的表面等离子体共振结合分析表明,这些分级峰与未分级的起始材料之间具有可比的动力学/亲和力。随后的分子建模研究表明,重链上相对较长且灵活的互补决定区 3 (CDR3) 环可以采用两种离散的 pH 依赖性构象:中性 pH 下的“开放”构象,其中 HC-CDR3 大部分暴露在溶剂中,以及较低 pH 下的“封闭”构象,其中轻链中相邻色氨酸的溶剂暴露减少,HC-CDR3 环末端附近的两个天冬氨酸残基具有非典型的 pKa 值。HC-CDR3 的“开放”和“封闭”构象之间的 pH 依赖性平衡,以及它在 mAb-1 异常电荷变异体谱中的作用,得到了进一步的 CEX 和疏水性相互作用色谱研究的支持。这项工作是 pH 依赖性构象变化及其对净电荷的构象依赖性变化如何出乎意料地导致可感知的不稳定性的一个例子,在生物制药药物产品开发过程中需要进行全面的分析、生物物理和功能表征。