Guo Amy, Han Mei, Martinez Theresa, Ketchem Randal R, Novick Shawn, Jochheim Claudia, Balland Alain
Department of Analytical and Formulation Sciences, Amgen Inc., Seattle, WA, USA.
Electrophoresis. 2008 Jun;29(12):2550-6. doi: 10.1002/elps.200800083.
Recombinant monoclonal antibodies of therapeutic interest were analyzed by a nonreduced CE-SDS (nrCE-SDS) method developed for the evaluation of size-based variants. We found that immunoglobulins analyzed by this technique exhibited different behavior depending on their subclasses. Under nrCE-SDS conditions, IgG1 molecules were separated in a well-resolved, single peak, whereas IgG2 molecules were consistently separated as a doublet. Investigation of these isoforms showed that they were structurally different, and that the difference was not caused by cell culture condition, glycosylation structure, or recombinant expression system. Commercially available IgG2 affinity-purified from human plasma also showed the presence of structural isoforms. The structural isoforms remained present under pH- and temperature-stressed conditions. Application of a mild cysteine/cystine redox potential converted the main peak doublet into a single peak, indicating that these isoforms were disulfide bond-related species. Bioactivity measured before and after application of a redox potential gave similar values, indicating that the structural isoforms have comparable potency. The nrCE-SDS technique described here demonstrated a unique capability to resolve IgGs, leading to the discovery of novel structural isoforms specific to the IgG2 isotype.
采用一种为评估基于大小的变体而开发的非还原毛细管电泳-十二烷基硫酸钠(nrCE-SDS)方法,对具有治疗意义的重组单克隆抗体进行了分析。我们发现,通过该技术分析的免疫球蛋白根据其亚类表现出不同的行为。在nrCE-SDS条件下,IgG1分子以分辨率良好的单峰形式分离,而IgG2分子则始终以双峰形式分离。对这些异构体的研究表明,它们在结构上有所不同,且这种差异并非由细胞培养条件、糖基化结构或重组表达系统引起。从人血浆中亲和纯化的市售IgG2也显示出结构异构体的存在。在pH和温度应激条件下,结构异构体仍然存在。应用温和的半胱氨酸/胱氨酸氧化还原电位可将主峰双峰转变为单峰,这表明这些异构体是与二硫键相关的物种。在应用氧化还原电位前后测量的生物活性给出了相似的值,这表明结构异构体具有相当的效力。本文所述的nrCE-SDS技术展示了一种独特的分辨IgG的能力,从而发现了IgG2同种型特有的新型结构异构体。