Zheng Kai, Yarmarkovich Mark, Bantog Christopher, Bayer Robert, Patapoff Thomas W
Late Stage Pharmaceutical Development; Genentech Inc.; South San Francisco, CA USA; Formerly at Oceanside Pharma Technical Development; Genentech Inc.; Oceanside, CA USA.
Formerly at Oceanside Pharma Technical Development; Genentech Inc.; Oceanside, CA USA; Department of Cancer Biology; Perelman School of Medicine; University of Pennsylvania; Philadelphia, PA USA.
MAbs. 2014 May-Jun;6(3):649-58. doi: 10.4161/mabs.28588. Epub 2014 Mar 24.
Glycosylation is an important post-translational modification during protein production in eukaryotic cells, and it is essential for protein structure, stability, half-life, and biological functions. In this study, we produced various monoclonal antibody (mAb) glycoforms from Chinese hamster ovary (CHO) cells, including the natively glycosylated antibody, the enriched G0 form, the deglycosylated form, the afucosylated form, and the high mannose form, and we compared their intrinsic properties, side-by-side, through biophysical and biochemical approaches. Spectroscopic analysis indicates no measureable secondary or tertiary structural changes after in vitro or in vivo modification of the glycosylation pattern. Thermal unfolding experiments show that the high mannose and deglycosylated forms have reduced thermal stability of the CH2 domain compared with the other tested glycoforms. We also observed that the individual domain's thermal stability could be pH dependent. Proteolysis analysis indicates that glycosylation plays an important role in stabilizing mAbs against proteases. The stability of antibody glycoforms at the storage condition (2-8 °C) and at accelerated conditions (30 and 40 °C) was evaluated, and the results indicate that glycosylation patterns do not substantially affect the storage stability of the antibody we studied.
糖基化是真核细胞蛋白质生产过程中一种重要的翻译后修饰,对蛋白质的结构、稳定性、半衰期和生物学功能至关重要。在本研究中,我们从中国仓鼠卵巢(CHO)细胞中制备了多种单克隆抗体(mAb)糖型,包括天然糖基化抗体、富集的G0型、去糖基化型、无岩藻糖基化型和高甘露糖型,并通过生物物理和生化方法对它们的内在特性进行了并排比较。光谱分析表明,糖基化模式在体外或体内修饰后,未检测到可测量的二级或三级结构变化。热变性实验表明,与其他测试糖型相比,高甘露糖型和去糖基化型的CH2结构域热稳定性降低。我们还观察到单个结构域的热稳定性可能依赖于pH值。蛋白酶解分析表明,糖基化在稳定mAb抵抗蛋白酶方面起着重要作用。评估了抗体糖型在储存条件(2至8摄氏度)和加速条件(30和40摄氏度)下的稳定性,结果表明糖基化模式对我们研究的抗体的储存稳定性没有实质性影响。