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通过共工程化 mitosRNA-1978 靶基因 CerS2 和 Tbc1D20 优化 CHO 生产细胞的分泌途径。

Secretory pathway optimization of CHO producer cells by co-engineering of the mitosRNA-1978 target genes CerS2 and Tbc1D20.

机构信息

Institute of Cell Biology and Immunology, University of Stuttgart, Germany.

Boehringer Ingelheim Pharma GmbH & Co.KG, Birkendorfer Str. 65, 88400 Biberach an der Riß, Germany.

出版信息

Metab Eng. 2017 Mar;40:69-79. doi: 10.1016/j.ymben.2017.01.003. Epub 2017 Jan 11.

DOI:10.1016/j.ymben.2017.01.003
PMID:28088541
Abstract

Chinese Hamster Ovary (CHO) cells are the most commonly used host for the production of biopharmaceuticals. Although transcription and translation engineering strategies have been employed to generate high-producer cell clones, the secretory pathway still remains a bottleneck in cellular productivity. In this study we show that ectopic expression of a human mitochondrial genome-encoded small RNA (mitosRNA-1978) in an IgG expressing CHO cell line strongly improved specific productivity by functioning in a microRNA-like fashion. By next generation sequencing we identified two endoplasmic reticulum (ER)-localized proteins, Ceramide Synthase 2 (CerS2) and the Rab1 GAP Tbc domain family member 20 (Tbc1D20), as target genes of mitosRNA-1978. Combined transient siRNA-mediated knockdown of CerS2 and Tbc1D20 resulted in increased specific productivity of CHO-IgG cells, thus recapitulating the mitosRNA-1978 phenotype. In support of a function in vesicular trafficking at the level of the ER, we provide evidence for altered cellular ceramide composition upon CerS2 knockdown and increased activity of Rab1 in CHO-IgG cells depleted of Tbc1D20. Importantly, in a fed-batch process, the combined stable knockdown of CerS2 and Tbc1D20 in CHO-IgG cells resulted in dramatically increased antibody production which was accompanied by enhanced cell growth. Thus, by identifying mitosRNA-1978 target genes in combination with an informed shRNA-mediated co-engineering approach we successfully optimized the secretory capacity of CHO producer cells used for the manufacturing of therapeutic proteins.

摘要

中国仓鼠卵巢(CHO)细胞是生产生物制药最常用的宿主。尽管已经采用转录和翻译工程策略来产生高产细胞克隆,但分泌途径仍然是细胞生产力的瓶颈。在这项研究中,我们表明在表达 IgG 的 CHO 细胞系中外源表达人类线粒体基因组编码的小 RNA(mitosRNA-1978)通过 miRNA 样方式强烈提高了特异性产率。通过下一代测序,我们鉴定了两种内质网(ER)定位蛋白,神经酰胺合酶 2(CerS2)和 Rab1 GAP Tbc 结构域家族成员 20(Tbc1D20),作为 mitosRNA-1978 的靶基因。瞬时 siRNA 介导的 CerS2 和 Tbc1D20 联合敲低导致 CHO-IgG 细胞的特异性产率增加,从而再现了 mitosRNA-1978 的表型。支持在 ER 水平的囊泡运输中的功能,我们提供了证据表明在 CerS2 敲低后细胞神经酰胺组成发生改变,并且在耗尽 Tbc1D20 的 CHO-IgG 细胞中 Rab1 活性增加。重要的是,在分批补料过程中,CHO-IgG 细胞中 CerS2 和 Tbc1D20 的稳定敲低联合导致抗体产量显著增加,同时伴随着细胞生长增强。因此,通过鉴定 mitosRNA-1978 的靶基因并结合明智的 shRNA 介导的联合工程方法,我们成功优化了用于制造治疗性蛋白质的 CHO 生产细胞的分泌能力。

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