A systemic approach to identifying sequence frameworks that decrease mAb production in a transient Chinese hamster ovary cell expression system

IF 2.5 3区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Biotechnology Progress Pub Date : 2024-04-12 DOI:10.1002/btpr.3466
Alana C. Szkodny, Kelvin H. Lee
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Abstract

Monoclonal antibodies (mAbs) are often engineered at the sequence level for improved clinical performance yet are rarely evaluated prior to candidate selection for their “developability” characteristics, namely expression, which can necessitate additional resource investments to improve the manufacturing processes for problematic mAbs. A strong relationship between primary sequence and expression has emerged, with slight differences in amino acid sequence resulting in titers differing by up to an order of magnitude. Previous work on these “difficult-to-express” (DTE) mAbs has shown that these phenotypes are driven by post-translational bottlenecks in antibody folding, assembly, and secretion processes. However, it has been difficult to translate these findings across cell lines and products. This work presents a systematic approach to study the impact of sequence variation on mAb expression at a larger scale and under more industrially relevant conditions. The analysis found 91 mutations that decreased transient expression of an IgG1κ in Chinese hamster ovary (CHO) cells and revealed that mutations at inaccessible residues, especially those leading to decreases in residue hydrophobicity, are not favorable for high expression. This workflow can be used to better understand sequence determinants of mAb expression to improve candidate selection procedures and reduce process development timelines.

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在瞬时中国仓鼠卵巢细胞表达系统中识别减少 mAb 生成的序列框架的系统方法
单克隆抗体(mAbs)通常在序列水平上进行设计,以改善临床表现,但在选择候选药物之前,却很少对其 "可开发性 "特征(即表达)进行评估,这就需要投入额外的资源来改进有问题的 mAbs 的生产工艺。主序列与表达之间存在密切关系,氨基酸序列的细微差别会导致滴度相差一个数量级。以前针对这些 "难表达"(DTE)mAbs 的研究表明,这些表型是由抗体折叠、组装和分泌过程中的翻译后瓶颈驱动的。然而,这些发现很难在不同的细胞系和产品中进行转化。这项研究提出了一种系统化的方法,在更大规模和更符合工业要求的条件下研究序列变异对 mAb 表达的影响。分析发现有 91 个突变降低了 IgG1κ 在中国仓鼠卵巢 (CHO) 细胞中的瞬时表达,并揭示了不可访问残基的突变,尤其是那些导致残基疏水性降低的突变,不利于高表达。该工作流程可用于更好地了解 mAb 表达的序列决定因素,从而改进候选物筛选程序并缩短工艺开发时间。
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来源期刊
Biotechnology Progress
Biotechnology Progress 工程技术-生物工程与应用微生物
CiteScore
6.50
自引率
3.40%
发文量
83
审稿时长
4 months
期刊介绍: Biotechnology Progress , an official, bimonthly publication of the American Institute of Chemical Engineers and its technological community, the Society for Biological Engineering, features peer-reviewed research articles, reviews, and descriptions of emerging techniques for the development and design of new processes, products, and devices for the biotechnology, biopharmaceutical and bioprocess industries. Widespread interest includes application of biological and engineering principles in fields such as applied cellular physiology and metabolic engineering, biocatalysis and bioreactor design, bioseparations and downstream processing, cell culture and tissue engineering, biosensors and process control, bioinformatics and systems biology, biomaterials and artificial organs, stem cell biology and genetics, and plant biology and food science. Manuscripts concerning the design of related processes, products, or devices are also encouraged. Four types of manuscripts are printed in the Journal: Research Papers, Topical or Review Papers, Letters to the Editor, and R & D Notes.
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