Analysis of the transcriptional activity of model piggyBac transgenes stably integrated into different loci of the genome of CHO cells in the absence of selection pressure

CHO cells are most commonly used for the synthesis of recombinant proteins in biopharmaceutical production. When stable producer cell lines are obtained, the locus of transgene integration into the genome has a great influence on the level of its expression. Therefore, the identification of genomic...

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Main Authors: L. A. Yarinich, A. A. Ogienko, A. V. Pindyurin, E. S. Omelina
Format: Article
Language:English
Published: Siberian Branch of the Russian Academy of Sciences, Federal Research Center Institute of Cytology and Genetics, The Vavilov Society of Geneticists and Breeders 2023-12-01
Series:Вавиловский журнал генетики и селекции
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Online Access:https://vavilov.elpub.ru/jour/article/view/3993
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author L. A. Yarinich
A. A. Ogienko
A. V. Pindyurin
E. S. Omelina
author_facet L. A. Yarinich
A. A. Ogienko
A. V. Pindyurin
E. S. Omelina
author_sort L. A. Yarinich
collection DOAJ
description CHO cells are most commonly used for the synthesis of recombinant proteins in biopharmaceutical production. When stable producer cell lines are obtained, the locus of transgene integration into the genome has a great influence on the level of its expression. Therefore, the identification of genomic loci ensuring a high level of protein production is very important. Here, we used the TRIP assay to study the influence of the local chromatin environment on the activity of transgenes in CHO cells. For this purpose, reporter constructs encoding eGFP under the control of four promoters were stably integrated into the genome of CHO cells using the piggyBac transposon. Each individual transgene contained a unique tag, a DNA barcode, and the resulting polyclonal cell population was cultured for almost a month without any selection. Next, using the high-throughput sequencing, genomic localizations of barcodes, as well as their abundances in the population and transcriptional activities were identified. In total, ~640 transgenes more or less evenly distributed across all chromosomes of CHO cells were characterized. More than half of the transgenes were completely silent. The most active transgenes were identified to be inserted in gene promoters and 5’ UTRs. Transgenes carrying Chinese hamster full-length promoter of the EF-1α gene showed the highest activity. Transgenes with a truncated version of the same promoter and with the mouse PGK gene promoter were on average 10 and 19 times less active, respectively. In total, combinations of genomic loci of CHO cells and transgene promoters that together provide different levels of transcriptional activity of the model reporter construct were described.
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publishDate 2023-12-01
publisher Siberian Branch of the Russian Academy of Sciences, Federal Research Center Institute of Cytology and Genetics, The Vavilov Society of Geneticists and Breeders
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spelling doaj-art-94b243e0ceef45838f0bbe9a68c5c0512025-02-01T09:58:12ZengSiberian Branch of the Russian Academy of Sciences, Federal Research Center Institute of Cytology and Genetics, The Vavilov Society of Geneticists and BreedersВавиловский журнал генетики и селекции2500-32592023-12-0127790691510.18699/VJGB-23-1051420Analysis of the transcriptional activity of model piggyBac transgenes stably integrated into different loci of the genome of CHO cells in the absence of selection pressureL. A. Yarinich0A. A. Ogienko1A. V. Pindyurin2E. S. Omelina3Institute of Molecular and Cellular Biology of the Siberian Branch of the Russian Academy of SciencesInstitute of Molecular and Cellular Biology of the Siberian Branch of the Russian Academy of SciencesInstitute of Molecular and Cellular Biology of the Siberian Branch of the Russian Academy of SciencesInstitute of Molecular and Cellular Biology of the Siberian Branch of the Russian Academy of SciencesCHO cells are most commonly used for the synthesis of recombinant proteins in biopharmaceutical production. When stable producer cell lines are obtained, the locus of transgene integration into the genome has a great influence on the level of its expression. Therefore, the identification of genomic loci ensuring a high level of protein production is very important. Here, we used the TRIP assay to study the influence of the local chromatin environment on the activity of transgenes in CHO cells. For this purpose, reporter constructs encoding eGFP under the control of four promoters were stably integrated into the genome of CHO cells using the piggyBac transposon. Each individual transgene contained a unique tag, a DNA barcode, and the resulting polyclonal cell population was cultured for almost a month without any selection. Next, using the high-throughput sequencing, genomic localizations of barcodes, as well as their abundances in the population and transcriptional activities were identified. In total, ~640 transgenes more or less evenly distributed across all chromosomes of CHO cells were characterized. More than half of the transgenes were completely silent. The most active transgenes were identified to be inserted in gene promoters and 5’ UTRs. Transgenes carrying Chinese hamster full-length promoter of the EF-1α gene showed the highest activity. Transgenes with a truncated version of the same promoter and with the mouse PGK gene promoter were on average 10 and 19 times less active, respectively. In total, combinations of genomic loci of CHO cells and transgene promoters that together provide different levels of transcriptional activity of the model reporter construct were described.https://vavilov.elpub.ru/jour/article/view/3993tripbarcodechromatin position effecttransgenechromatintranscription
spellingShingle L. A. Yarinich
A. A. Ogienko
A. V. Pindyurin
E. S. Omelina
Analysis of the transcriptional activity of model piggyBac transgenes stably integrated into different loci of the genome of CHO cells in the absence of selection pressure
Вавиловский журнал генетики и селекции
trip
barcode
chromatin position effect
transgene
chromatin
transcription
title Analysis of the transcriptional activity of model piggyBac transgenes stably integrated into different loci of the genome of CHO cells in the absence of selection pressure
title_full Analysis of the transcriptional activity of model piggyBac transgenes stably integrated into different loci of the genome of CHO cells in the absence of selection pressure
title_fullStr Analysis of the transcriptional activity of model piggyBac transgenes stably integrated into different loci of the genome of CHO cells in the absence of selection pressure
title_full_unstemmed Analysis of the transcriptional activity of model piggyBac transgenes stably integrated into different loci of the genome of CHO cells in the absence of selection pressure
title_short Analysis of the transcriptional activity of model piggyBac transgenes stably integrated into different loci of the genome of CHO cells in the absence of selection pressure
title_sort analysis of the transcriptional activity of model piggybac transgenes stably integrated into different loci of the genome of cho cells in the absence of selection pressure
topic trip
barcode
chromatin position effect
transgene
chromatin
transcription
url https://vavilov.elpub.ru/jour/article/view/3993
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AT aaogienko analysisofthetranscriptionalactivityofmodelpiggybactransgenesstablyintegratedintodifferentlociofthegenomeofchocellsintheabsenceofselectionpressure
AT avpindyurin analysisofthetranscriptionalactivityofmodelpiggybactransgenesstablyintegratedintodifferentlociofthegenomeofchocellsintheabsenceofselectionpressure
AT esomelina analysisofthetranscriptionalactivityofmodelpiggybactransgenesstablyintegratedintodifferentlociofthegenomeofchocellsintheabsenceofselectionpressure