中国仓鼠卵巢细胞适应抗体分泌的细胞特征鉴定。

IF 4.4 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Ying Bai , Ivan Domenech Mercadé , Ramy Elgendy , Giulia Lambiase , Sew Peak-Chew , Catarina Franco , Steven W. Wingett , Tim J. Stevens , Luigi Grassi , Noah Hitchcock , Cristina Sayago Ferreira , Diane Hatton , Elizabeth A. Miller , Rajesh K. Mistry
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引用次数: 0

摘要

中国仓鼠卵巢(CHO)细胞的分泌能力仍然是制造基于蛋白质的治疗药物的基本瓶颈。具有复杂结构和加工要求的非常规生物药物尤其成问题。虽然工程载体DNA元件可以实现快速和高水平的治疗性蛋白质生产,但对宿主细胞施加了高代谢和蛋白质折叠负担。细胞对这些条件的适应包括差异基因表达谱,这反过来会影响重组蛋白的生产力和质量控制。在这项研究中,我们使用定量转录组学和蛋白质组学分析来研究抗体滴度如何改变生物学途径。在饲料批量生产过程中,对生产不同单克隆和双特异性抗体的CHO细胞池和克隆的基因和蛋白表达谱进行了分析。表达抗体的CHO细胞池是异质的,导致很少可识别的遗传特征。从这些细胞池中提取的克隆细胞系,经过高产量和低产量的选择,产生了少量与产量相关的差异表达蛋白,并在生物治疗药物中共享。然而,与高蛋白产量相关的主要特征是转基因拷贝数和由此产生的mRNA表达水平。此外,克隆细胞系之间的可变性表明,细胞适应过程是可变的,不同的细胞变化与个体适应事件相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification of cellular signatures associated with chinese hamster ovary cell adaptation for secretion of antibodies
The secretory capacity of Chinese hamster ovary (CHO) cells remains a fundamental bottleneck in the manufacturing of protein-based therapeutics. Unconventional biological drugs with complex structures and processing requirements are particularly problematic. Although engineered vector DNA elements can achieve rapid and high-level therapeutic protein production, a high metabolic and protein folding burden is imposed on the host cell. Cellular adaptations to these conditions include differential gene expression profiles that can in turn influence the productivity and quality control of recombinant proteins. In this study, we used quantitative transcriptomic and proteomic analyses to investigate how biological pathways change with antibody titre. Gene and protein expression profiles of CHO cell pools and clones producing a panel of different monoclonal and bispecific antibodies were analysed during fed-batch production. Antibody-expressing CHO cell pools were heterogeneous, resulting in few discernible genetic signatures. Clonal cell lines derived from these pools, selected for high and low production, yielded a small number of differentially expressed proteins that correlated with productivity and were shared across the biotherapeutics. However, the dominant feature associated with higher protein production was transgene copy number and the resulting mRNA expression level. Moreover, variability between clonal cell lines suggested that the process of cellular adaptation is variable with diverse cellular changes associated with individual adaptation events.
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来源期刊
Computational and structural biotechnology journal
Computational and structural biotechnology journal Biochemistry, Genetics and Molecular Biology-Biophysics
CiteScore
9.30
自引率
3.30%
发文量
540
审稿时长
6 weeks
期刊介绍: Computational and Structural Biotechnology Journal (CSBJ) is an online gold open access journal publishing research articles and reviews after full peer review. All articles are published, without barriers to access, immediately upon acceptance. The journal places a strong emphasis on functional and mechanistic understanding of how molecular components in a biological process work together through the application of computational methods. Structural data may provide such insights, but they are not a pre-requisite for publication in the journal. Specific areas of interest include, but are not limited to: Structure and function of proteins, nucleic acids and other macromolecules Structure and function of multi-component complexes Protein folding, processing and degradation Enzymology Computational and structural studies of plant systems Microbial Informatics Genomics Proteomics Metabolomics Algorithms and Hypothesis in Bioinformatics Mathematical and Theoretical Biology Computational Chemistry and Drug Discovery Microscopy and Molecular Imaging Nanotechnology Systems and Synthetic Biology
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