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用于稳健抗体生产的瞬时 CHO 表达平台及其在治疗性糖蛋白上增强的 N-糖基唾液酸化。

Transient CHO expression platform for robust antibody production and its enhanced N-glycan sialylation on therapeutic glycoproteins.

机构信息

BioMedicine Design, Medicinal Sciences, Pfizer Worldwide R&D, Cambridge, Massachusetts, 02139.

Analytical Research and Development, Biotherapeutics Pharmaceutical Sciences, Pfizer Inc., Andover, Massachusetts, 01810.

出版信息

Biotechnol Prog. 2019 Jan;35(1):e2724. doi: 10.1002/btpr.2724. Epub 2018 Oct 27.

Abstract

Large-scale transient expression in mammalian cells is a rapid protein production technology often used to shorten overall timelines for biotherapeutics drug discovery. In this study we demonstrate transient expression in a Chinese hamster ovary (CHO) host (ExpiCHO-S™) cell line capable of achieving high recombinant antibody expression titers, comparable to levels obtained using human embryonic kidney (HEK) 293 cells. For some antibodies, ExpiCHO-S™ cells generated protein materials with better titers and improved protein quality characteristics (i.e., less aggregation) than those from HEK293. Green fluorescent protein imaging data indicated that ExpiCHO-S™ displayed a delayed but prolonged transient protein expression process compared to HEK293. When therapeutic glycoproteins containing non-Fc N-linked glycans were expressed in transient ExpiCHO-S™, the glycan pattern was unexpectedly found to have few sialylated N-glycans, in contrast to glycans produced within a stable CHO expression system. To improve N-glycan sialylation in transient ExpiCHO-S™, we co-transfected galactosyltransferase and sialyltransferase genes along with the target genes, as well as supplemented the culture medium with glycan precursors. The authors have demonstrated that co-transfection of glycosyltransferases combined with medium addition of galactose and uridine led to increased sialylation content of N-glycans during transient ExpiCHO-S™ expression. These results have provided a scientific basis for developing a future transient CHO system with N-glycan compositions that are similar to those profiles obtained from stable CHO protein production systems. © 2018 American Institute of Chemical Engineers Biotechnol. Prog., 35: e2724, 2019.

摘要

大规模瞬时表达在哺乳动物细胞中是一种快速的蛋白质生产技术,常用于缩短生物治疗药物发现的整体时间线。在这项研究中,我们展示了在中华仓鼠卵巢(CHO)宿主(ExpiCHO-S™)细胞系中进行瞬时表达的能力,该细胞系能够实现高重组抗体表达滴度,可与使用人胚肾(HEK)293 细胞获得的水平相媲美。对于一些抗体,ExpiCHO-S™细胞产生的蛋白质材料具有更高的滴度和改善的蛋白质质量特征(即,更少的聚集),优于来自 HEK293 的蛋白质材料。绿色荧光蛋白成像数据表明,与 HEK293 相比,ExpiCHO-S™显示出延迟但延长的瞬时蛋白质表达过程。当含有非 Fc N-连接糖基化的治疗性糖蛋白在瞬时 ExpiCHO-S™中表达时,出乎意料地发现糖基化模式中唾液酸化的 N-糖链很少,与在稳定的 CHO 表达系统中产生的糖基化模式形成对比。为了提高瞬时 ExpiCHO-S™中的 N-糖基化唾液酸化程度,我们共转染了半乳糖基转移酶和唾液酸转移酶基因以及靶基因,并在培养基中添加了糖基化前体。作者证明,共转染糖基转移酶并在培养基中添加半乳糖和尿苷可导致瞬时 ExpiCHO-S™表达过程中 N-糖链的唾液酸化含量增加。这些结果为开发未来具有类似于稳定 CHO 蛋白质生产系统获得的糖型组成的瞬时 CHO 系统提供了科学依据。©2018 美国化学工程师协会生物技术进展,35:e2724,2019。

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