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中国仓鼠卵巢细胞基因组的高分辨率三维染色质剖析。

High-resolution three-dimensional chromatin profiling of the Chinese hamster ovary cell genome.

机构信息

Nuclear Dynamics Programme, The Babraham Institute, Babraham Research Campus, Cambridge, UK.

Epigenetics Programme, The Babraham Institute, Babraham Research Campus, Cambridge, UK.

出版信息

Biotechnol Bioeng. 2021 Feb;118(2):784-796. doi: 10.1002/bit.27607. Epub 2020 Nov 20.

Abstract

Chinese hamster ovary (CHO) cell lines are the pillars of a multibillion-dollar biopharmaceutical industry producing recombinant therapeutic proteins. The effects of local chromatin organization and epigenetic repression within these cell lines result in unpredictable and unstable transgene expression following random integration. Limited knowledge of the CHO genome and its higher order chromatin organization has thus far impeded functional genomics approaches required to tackle these issues. Here, we present an integrative three-dimensional (3D) map of genome organization within the CHOK1SV® 10E9 cell line in conjunction with an improved, less fragmented CHOK1SV 10E9 genome assembly. Using our high-resolution chromatin conformation datasets, we have assigned ≈90% of sequence to a chromosome-scale genome assembly. Our genome-wide 3D map identifies higher order chromatin structures such as topologically associated domains, incorporates our chromatin accessibility data to enhance the identification of active cis-regulatory elements, and importantly links these cis-regulatory elements to target promoters in a 3D promoter interactome. We demonstrate the power of our improved functional annotation by evaluating the 3D landscape of a transgene integration site and two phenotypically different cell lines. Our work opens up further novel genome engineering targets, has the potential to inform vital improvements for industrial biotherapeutic production, and represents a significant advancement for CHO cell line development.

摘要

中国仓鼠卵巢(CHO)细胞系是价值数十亿美元的生物制药产业的支柱,该产业生产重组治疗蛋白。这些细胞系中局部染色质组织和表观遗传抑制的影响导致随机整合后转基因表达不可预测和不稳定。目前,对 CHO 基因组及其高级染色质组织的了解有限,阻碍了解决这些问题所需的功能基因组学方法。在这里,我们展示了 CHOK1SV®10E9 细胞系中基因组组织的综合三维(3D)图谱,同时还提供了改进的、碎片化程度较低的 CHOK1SV 10E9 基因组组装。利用我们高分辨率的染色质构象数据集,我们将约 90%的序列分配给染色体尺度的基因组组装。我们的全基因组 3D 图谱确定了高级染色质结构,如拓扑相关结构域,整合了我们的染色质可及性数据以增强对活性顺式调控元件的识别,并将这些顺式调控元件重要地链接到 3D 启动子互作组中的靶启动子。我们通过评估转基因整合位点和两个表型不同的细胞系的 3D 景观来展示我们改进的功能注释的强大功能。我们的工作为进一步的新型基因组工程目标开辟了道路,有可能为工业生物治疗生产带来重要改进,并代表 CHO 细胞系发展的重大进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e397/7894165/15d3df80bdf0/BIT-118-784-g001.jpg

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