Literature DB >> 29852271

A CRISPR/Cas9 based engineering strategy for overexpression of multiple genes in Chinese hamster ovary cells.

Peter Eisenhut1, Gerald Klanert1, Marcus Weinguny1, Laurenz Baier1, Vaibhav Jadhav1, Daniel Ivansson2, Nicole Borth3.   

Abstract

Manipulation of multiple genes to engineer Chinese Hamster Ovary (CHO) cells for better performance in production processes of biopharmaceuticals has recently become more and more popular. Yet, identification of useful genes and the unequivocally assessment of their effect alone and in combination(s) on the cellular phenotype is difficult due to high variation between subclones. Here, we present development and proof-of-concept of a novel engineering strategy using multiplexable activation of artificially repressed genes (MAARGE). This strategy will allow faster screening of overexpression of multiple genes in all possible combinations. MAARGE, in its here presented installment, comprises four different genes of interest that can all be stably integrated into the genome from one plasmid in a single transfection. Three of the genes are initially repressed by a repressor element (RE) that is integrated between promoter and translation start site. We show that an elongated 5'-UTR with an additional transcription termination (poly(A)) signal most efficiently represses protein expression. Distinct guide RNA (gRNA) targets flanking the REs for each gene then allow to specifically delete the RE by CRISPR/Cas9 and thus to activate the expression of the corresponding gene(s). We show that both individual and multiplexed activation of the genes of interest in a stably transfected CHO cell line is possible. Also, upon transfection of this stable cell line with all three gRNAs together, it was possible to isolate cells that express all potential gene combinations in a single experiment.
Copyright © 2018 The Authors. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  BFP, Blue Fluorescent Protein; BP, Bandpass; CD, Chemically defined; CHO, Chinese Hamster ovary; CRISPR, Clustered regularly interspaced palindromic repeats; CRISPR/Cas9; Cas9, CRISPR-associated protein 9; Cell line engineering; Chinese Hamster; Fluorescent proteins; GFP, Green Fluorescent Protein; MAARGE, Multiplexable Activation of Artificially Repressed Genes; MFI, Mean fluorescence intensity; Ovary cells CHO; Pathway engineering; RE, Repressor element; REST, Repressor element 1 silencing transcription factor; RFP, Red Fluorescent protein; RFP657, Red Fluorescent protein 657; bp, Base pairs; gRNA, Guide RNA; poly(A), Poly Adenylation signal; rpm, Rotations per minute

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Year:  2018        PMID: 29852271     DOI: 10.1016/j.ymben.2018.05.017

Source DB:  PubMed          Journal:  Metab Eng        ISSN: 1096-7176            Impact factor:   8.829


  2 in total

1.  Cell Engineering and Cultivation of Chinese Hamster Ovary Cells for the Development of Orthogonal Eukaryotic Cell-free Translation Systems.

Authors:  Jeffrey L Schloßhauer; Niño Cavak; Anne Zemella; Lena Thoring; Stefan Kubick
Journal:  Front Mol Biosci       Date:  2022-04-14

2.  Systematic use of synthetic 5'-UTR RNA structures to tune protein translation improves yield and quality of complex proteins in mammalian cell factories.

Authors:  Peter Eisenhut; Aman Mebrahtu; Mona Moradi Barzadd; Niklas Thalén; Gerald Klanert; Marcus Weinguny; Anna Sandegren; Chao Su; Diane Hatton; Nicole Borth; Johan Rockberg
Journal:  Nucleic Acids Res       Date:  2020-11-18       Impact factor: 19.160

  2 in total

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