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A Multi-Omics Analysis of Recombinant Protein Production in Hek293 Cells

机译:在HEK293细胞重组蛋白生产的多组学分析

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摘要

Hek293 cells are the predominant hosts for transient expression of recombinant proteins and are used for stable expression of proteins where post-translational modifications performed by CHO cells are inadequate. Nevertheless, there is little information available on the key cellular features underpinning recombinant protein production in Hek293 cells. To improve our understanding of recombinant protein production in Hek293 cells and identify targets for the engineering of an improved host cell line, we have compared a stable, recombinant protein producing Hek293 cell line and its parental cell line using a combination of transcriptomics, metabolomics and fluxomics. Producer cultures consumed less glucose than non-producer cultures while achieving the same growth rate, despite the additional burden of recombinant protein production. Surprisingly, there was no indication that producer cultures compensated for the reduction in glycolytic energy by increasing the efficiency of glucose utilization or increasing glutamine consumption. In contrast, glutamine consumption was lower and the majority of genes involved in oxidative phosphorylation were downregulated in producer cultures. We observed an overall downregulation of a large number of genes associated with broad cellular functions (e.g., cell growth and proliferation) in producer cultures, and therefore speculate that a broad adaptation of the cellular network freed up resources for recombinant protein production while maintaining the same growth rate. Increased abundance of genes associated with endoplasmic reticulum stress indicated a possible bottleneck at the point of protein folding and assembly.
机译:Hek293细胞是重组蛋白瞬时表达的主要宿主,并用于在CHO细胞进行的翻译后修饰不足的情况下稳定表达蛋白。然而,关于支撑Hek293细胞中重组蛋白产生的关键细胞特征的可用信息很少。为了增进我们对Hek293细胞中重组蛋白生产的了解并确定改良宿主细胞系工程化的目标,我们使用转录组学,代谢组学和通量组学的组合,比较了稳定的,产生重组蛋白的Hek293细胞系及其亲本细胞系。生产者培养物消耗的葡萄糖比非生产者培养物少,同时达到相同的生长速度,尽管重组蛋白生产有额外的负担。令人惊讶的是,没有迹象表明生产者培养物通过增加葡萄糖利用效率或增加谷氨酰胺消耗来补偿糖酵解能量的减少。相比之下,谷氨酰胺消耗较低,生产者文化中与氧化磷酸化有关的大多数基因被下调。我们观察到生产者文化中大量与广泛的细胞功能(例如,细胞生长和增殖)相关的基因的总体下调,因此推测细胞网络的广泛适应释放了重组蛋白生产的资源,同时保持了相同的水平增长率。与内质网应激相关的基因丰度增加表明蛋白质折叠和组装时可能存在瓶颈。

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