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利用定点翻转酶重组技术开发昆虫 High Five™ 细胞系。

Insect High Five™ cell line development using site-specific flipase recombination technology.

机构信息

IBET, Instituto de Biologia Experimental e Tecnológica, Oeiras 2780-901, Portugal.

Instituto de Tecnologia Química e Biológica António Xavier, Universidade Nova de Lisboa, Oeiras 2780-901, Portugal.

出版信息

G3 (Bethesda). 2021 Aug 7;11(8). doi: 10.1093/g3journal/jkab166.

Abstract

Insect Trichoplusia ni High Five™ (Hi5) cells have been widely explored for production of heterologous proteins, traditionally mostly using the lytic baculovirus expression vector system (BEVS), and more recently using virus-free transient gene expression systems. Stable expression in such host cells would circumvent the drawbacks associated with both systems when it comes to scale-up and implementation of more efficient high-cell density process modes for the manufacturing of biologics. In this study, we combined Flipase (Flp) recombinase-mediated cassette exchange (RMCE) with fluorescence-activated cell sorting (FACS) for generating a stable master clonal Hi5 cell line with the flexibility to express single or multiple proteins of interest from a tagged genomic locus. The 3-step protocol herein implemented consisted of (i) introducing the RMCE docking cassette into the cell genome by random integration followed by selection in Hygromycin B and FACS (Hi5-tagging population), (ii) eliminating cells tagged in loci with low recombination efficiency by transfecting the tagging population with an eGFP-containing target cassette followed by selection in G418 and FACS (Hi5-RMCE population), and (iii) isolation of pure eGFP-expressing cells by FACS and expansion to suspension cultures (Hi5-RMCE master clone). Exchangeability of the locus in the master clone was demonstrated in small-scale suspension cultures by replacing the target cassette by one containing a single protein (i.e., iCherry, as an intracellular protein model) or two proteins (i.e., influenza HA and M1 for virus-like particles production, as an extracellular protein model). Overall, the stable insect Hi5 cell platform herein assembled has the potential to assist and accelerate biologics development.

摘要

昆虫细胞 Trichoplusia ni High Five™(Hi5)已广泛用于生产异源蛋白,传统上主要使用裂解杆状病毒表达载体系统(BEVS),最近也使用无病毒瞬时基因表达系统。在这种宿主细胞中进行稳定表达将规避这两种系统在扩大规模和实施更有效的高细胞密度工艺模式方面的缺点,以用于生物制剂的制造。在这项研究中,我们将翻转酶(Flp)重组酶介导的盒交换(RMCE)与荧光激活细胞分选(FACS)相结合,用于生成具有灵活性的稳定主克隆 Hi5 细胞系,能够从标记的基因组位点表达单个或多个感兴趣的蛋白质。本文实施的 3 步方案包括:(i)通过随机整合将 RMCE 对接盒引入细胞基因组,然后用 Hygromycin B 进行选择和 FACS(Hi5-标记群体);(ii)用含有 eGFP 的靶盒转染标记群体,消除低重组效率位点标记的细胞,然后用 G418 进行选择和 FACS(Hi5-RMCE 群体);(iii)通过 FACS 分离纯 eGFP 表达细胞并进行悬浮培养扩增(Hi5-RMCE 主克隆)。通过用含有单个蛋白(即 iCherry,作为一种细胞内蛋白模型)或两个蛋白(即流感 HA 和 M1 用于生产病毒样颗粒,作为一种细胞外蛋白模型)的靶盒替换主克隆中的位点,证明了该主克隆中位点的可交换性。总的来说,组装的稳定昆虫 Hi5 细胞平台具有辅助和加速生物制剂开发的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2dfd/8763235/93400b28a619/jkab166f1.jpg

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