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Development of a fluorescent reporter system for monitoring ER stress in Chinese hamster ovary cells and its application for therapeutic protein production

机译:监测中国仓鼠卵巢细胞内质网应激的荧光报告系统的开发及其在治疗性蛋白生产中的应用

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摘要

Mammalian cell expression systems have become a workhorse for the production of biotherapeutic proteins. As such, there is an ever increasing demand for higher productivity from these expression platforms to reduce manufacturing costs. While great advances have been made in the optimization of culture conditions and cell line selection to improve productivity, protein mis-folding remains a common limitation to high levels of production of therapeutic proteins. Accumulation of mis- and unfolded protein in the endoplasmic reticulum (ER) causes ER stress and initiates the unfolded protein response (UPR) that results in an activation of protein folding machinery, translation attenuation in an effort to proper folding of the newly synthesized peptides or may even lead to apoptosis if the correct folding is not restored. As a result, UPR associated apoptosis often results in lower protein expression. To better understand the molecular mechanisms in these pathways, we developed a reporter construct that detects Inositol-requiring enzyme 1 (IRE1)-alpha mediated splicing of X-box binding protein 1 (XBP1) to monitor the course of UPR activation in cell lines expressing monoclonal antibodies. Using this reporter we observed a clear activation of UPR in cells treated with known ER stress causing pharmacological agents, such as Tunicamycin (Tm) and Thapsigargin (Tg), as well as in stable IgG expressing cells during fed-batch cultures. Furthermore, we developed a stress metric that we term as ER stress index (ERSI) to gauge basal ER stress in cells which we used as a predictive tool for isolation of high IgG expressing cell lines. This reporter system, with its ability to monitor the stress involved in recombinant protein expression, has utility to assist in devising engineering strategies for improved production of biotherapeutic drugs.
机译:哺乳动物细胞表达系统已成为生产生物治疗蛋白的主力军。因此,对这些表达平台以降低生产成本的更高生产率的需求不断增长。尽管在优化培养条件和细胞系选择以提高生产率方面已经取得了很大的进步,但是蛋白质错误折叠仍然是治疗性蛋白质高产量产生的普遍限制。内质网(ER)中错误和未折叠蛋白的积累会引起ER应力并启动未折叠蛋白反应(UPR),从而导致蛋白折叠机制的激活,翻译减弱,从而努力正确折叠新合成的肽或如果不能正确折叠,甚至可能导致细胞凋亡。结果,UPR相关的凋亡通常导致较低的蛋白质表达。为了更好地了解这些途径中的分子机制,我们开发了一种报告基因构建体,该构建体可检测需要肌醇的酶1(IRE1)-α介导的X-box结合蛋白1(XBP1)的剪接,以监控表达UPR的细胞系中的UPR活化过程单克隆抗体。使用该报道分子,我们观察到在用已知的引起内质网应激的药理剂(例如衣霉素(Tm)和毒胡萝卜素(Tg))处理过的细胞以及补料分批培养过程中稳定表达IgG的细胞中,UPR的激活明显。此外,我们开发了一种应力度量标准,我们称其为ER应力指数(ERSI),用于测量细胞中的基础ER应力,我们将其用作分离高IgG表达细胞系的预测工具。该报告系统具有监测重组蛋白表达中所涉及的压力的能力,可用于协助设计工程策略以改善生物治疗药物的生产。

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