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如何训练你的细胞——通过利用中国仓鼠卵巢生产细胞系的表观基因组来控制表型

How to train your cell - Towards controlling phenotypes by harnessing the epigenome of Chinese hamster ovary production cell lines.

作者信息

Marx Nicolas, Eisenhut Peter, Weinguny Marcus, Klanert Gerald, Borth Nicole

机构信息

University of Natural Resources and Life Sciences, Vienna, Austria.

Austrian Centre for Industrial Biotechnology GmbH, Vienna, Austria.

出版信息

Biotechnol Adv. 2022 May-Jun;56:107924. doi: 10.1016/j.biotechadv.2022.107924. Epub 2022 Feb 9.

Abstract

Recent advances in omics technologies and the broad availability of big datasets have revolutionized our understanding of Chinese hamster ovary cells in their role as the most prevalent host for production of complex biopharmaceuticals. In consequence, our perception of this "workhorse of the biopharmaceutical industry" has successively shifted from that of a nicely working, but unknown recombinant protein producing black box to a biological system governed by multiple complex regulatory layers that might possibly be harnessed and manipulated at will. Despite the tremendous progress that has been made to characterize CHO cells on various omics levels, our understanding is still far from complete. The well-known inherent genetic plasticity of any immortalized and rapidly dividing cell line also characterizes CHO cells and can lead to problematic instability of recombinant protein production. While the high mutational frequency has been a focus of CHO cell research for decades, the impact of epigenetics and its role in differential gene expression has only recently been addressed. In this review we provide an overview about the current understanding of epigenetic regulation in CHO cells and discuss its significance for shaping the cell's phenotype. We also look into current state-of-the-art technology that can be applied to harness and manipulate the epigenetic network so as to nudge CHO cells towards a specific phenotype. Here, we revise current strategies on site-directed integration and random as well as targeted epigenome modifications. Finally, we address open questions that need to be investigated to exploit the full repertoire of fine-tuned control of multiplexed gene expression using epigenetic and systems biology tools.

摘要

组学技术的最新进展以及大量数据集的广泛可得,彻底改变了我们对中国仓鼠卵巢细胞的理解,因为它们是生产复杂生物制药最普遍使用的宿主。因此,我们对这个“生物制药行业的主力军”的认知已相继从一个运转良好但未知的重组蛋白生产黑箱,转变为一个由多个复杂调控层面所控制的生物系统,而这个系统或许可以被随意利用和操控。尽管在各个组学层面表征中国仓鼠卵巢细胞方面已取得了巨大进展,但我们的理解仍远未完整。任何永生化且快速分裂的细胞系所具有的众所周知的固有遗传可塑性,也是中国仓鼠卵巢细胞的特征,并且可能导致重组蛋白生产出现问题性的不稳定性。虽然高突变频率几十年来一直是中国仓鼠卵巢细胞研究的重点,但表观遗传学的影响及其在差异基因表达中的作用直到最近才得到关注。在这篇综述中,我们概述了目前对中国仓鼠卵巢细胞表观遗传调控的理解,并讨论了其对塑造细胞表型的重要性。我们还研究了可用于利用和操纵表观遗传网络,从而促使中国仓鼠卵巢细胞趋向特定表型的当前最先进技术。在此,我们修订了关于定点整合以及随机和靶向表观基因组修饰的当前策略。最后,我们提出了一些开放性问题,这些问题需要通过使用表观遗传学和系统生物学工具来研究,以充分利用对多重基因表达的精细调控。

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