Cargando…

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

Predictably regulating protein expression levels to improve recombinant protein production has become an important tool, but is still rarely applied to engineer mammalian cells. We therefore sought to set-up an easy-to-implement toolbox to facilitate fast and reliable regulation of protein expressio...

Descripción completa

Detalles Bibliográficos
Autores principales: Eisenhut, Peter, Mebrahtu, Aman, Moradi Barzadd, Mona, Thalén, Niklas, Klanert, Gerald, Weinguny, Marcus, Sandegren, Anna, Su, Chao, Hatton, Diane, Borth, Nicole, Rockberg, Johan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7672427/
https://www.ncbi.nlm.nih.gov/pubmed/33051690
http://dx.doi.org/10.1093/nar/gkaa847
_version_ 1783611133371875328
author Eisenhut, Peter
Mebrahtu, Aman
Moradi Barzadd, Mona
Thalén, Niklas
Klanert, Gerald
Weinguny, Marcus
Sandegren, Anna
Su, Chao
Hatton, Diane
Borth, Nicole
Rockberg, Johan
author_facet Eisenhut, Peter
Mebrahtu, Aman
Moradi Barzadd, Mona
Thalén, Niklas
Klanert, Gerald
Weinguny, Marcus
Sandegren, Anna
Su, Chao
Hatton, Diane
Borth, Nicole
Rockberg, Johan
author_sort Eisenhut, Peter
collection PubMed
description Predictably regulating protein expression levels to improve recombinant protein production has become an important tool, but is still rarely applied to engineer mammalian cells. We therefore sought to set-up an easy-to-implement toolbox to facilitate fast and reliable regulation of protein expression in mammalian cells by introducing defined RNA hairpins, termed ‘regulation elements (RgE)’, in the 5′-untranslated region (UTR) to impact translation efficiency. RgEs varying in thermodynamic stability, GC-content and position were added to the 5′-UTR of a fluorescent reporter gene. Predictable translation dosage over two orders of magnitude in mammalian cell lines of hamster and human origin was confirmed by flow cytometry. Tuning heavy chain expression of an IgG with the RgEs to various levels eventually resulted in up to 3.5-fold increased titers and fewer IgG aggregates and fragments in CHO cells. Co-expression of a therapeutic Arylsulfatase-A with RgE-tuned levels of the required helper factor SUMF1 demonstrated that the maximum specific sulfatase activity was already attained at lower SUMF1 expression levels, while specific production rates steadily decreased with increasing helper expression. In summary, we show that defined 5′-UTR RNA-structures represent a valid tool to systematically tune protein expression levels in mammalian cells and eventually help to optimize recombinant protein expression.
format Online
Article
Text
id pubmed-7672427
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-76724272020-11-24 Systematic use of synthetic 5′-UTR RNA structures to tune protein translation improves yield and quality of complex proteins in mammalian cell factories Eisenhut, Peter Mebrahtu, Aman Moradi Barzadd, Mona Thalén, Niklas Klanert, Gerald Weinguny, Marcus Sandegren, Anna Su, Chao Hatton, Diane Borth, Nicole Rockberg, Johan Nucleic Acids Res Methods Online Predictably regulating protein expression levels to improve recombinant protein production has become an important tool, but is still rarely applied to engineer mammalian cells. We therefore sought to set-up an easy-to-implement toolbox to facilitate fast and reliable regulation of protein expression in mammalian cells by introducing defined RNA hairpins, termed ‘regulation elements (RgE)’, in the 5′-untranslated region (UTR) to impact translation efficiency. RgEs varying in thermodynamic stability, GC-content and position were added to the 5′-UTR of a fluorescent reporter gene. Predictable translation dosage over two orders of magnitude in mammalian cell lines of hamster and human origin was confirmed by flow cytometry. Tuning heavy chain expression of an IgG with the RgEs to various levels eventually resulted in up to 3.5-fold increased titers and fewer IgG aggregates and fragments in CHO cells. Co-expression of a therapeutic Arylsulfatase-A with RgE-tuned levels of the required helper factor SUMF1 demonstrated that the maximum specific sulfatase activity was already attained at lower SUMF1 expression levels, while specific production rates steadily decreased with increasing helper expression. In summary, we show that defined 5′-UTR RNA-structures represent a valid tool to systematically tune protein expression levels in mammalian cells and eventually help to optimize recombinant protein expression. Oxford University Press 2020-10-13 /pmc/articles/PMC7672427/ /pubmed/33051690 http://dx.doi.org/10.1093/nar/gkaa847 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Methods Online
Eisenhut, Peter
Mebrahtu, Aman
Moradi Barzadd, Mona
Thalén, Niklas
Klanert, Gerald
Weinguny, Marcus
Sandegren, Anna
Su, Chao
Hatton, Diane
Borth, Nicole
Rockberg, Johan
Systematic use of synthetic 5′-UTR RNA structures to tune protein translation improves yield and quality of complex proteins in mammalian cell factories
title Systematic use of synthetic 5′-UTR RNA structures to tune protein translation improves yield and quality of complex proteins in mammalian cell factories
title_full Systematic use of synthetic 5′-UTR RNA structures to tune protein translation improves yield and quality of complex proteins in mammalian cell factories
title_fullStr Systematic use of synthetic 5′-UTR RNA structures to tune protein translation improves yield and quality of complex proteins in mammalian cell factories
title_full_unstemmed Systematic use of synthetic 5′-UTR RNA structures to tune protein translation improves yield and quality of complex proteins in mammalian cell factories
title_short Systematic use of synthetic 5′-UTR RNA structures to tune protein translation improves yield and quality of complex proteins in mammalian cell factories
title_sort systematic use of synthetic 5′-utr rna structures to tune protein translation improves yield and quality of complex proteins in mammalian cell factories
topic Methods Online
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7672427/
https://www.ncbi.nlm.nih.gov/pubmed/33051690
http://dx.doi.org/10.1093/nar/gkaa847
work_keys_str_mv AT eisenhutpeter systematicuseofsynthetic5utrrnastructurestotuneproteintranslationimprovesyieldandqualityofcomplexproteinsinmammaliancellfactories
AT mebrahtuaman systematicuseofsynthetic5utrrnastructurestotuneproteintranslationimprovesyieldandqualityofcomplexproteinsinmammaliancellfactories
AT moradibarzaddmona systematicuseofsynthetic5utrrnastructurestotuneproteintranslationimprovesyieldandqualityofcomplexproteinsinmammaliancellfactories
AT thalenniklas systematicuseofsynthetic5utrrnastructurestotuneproteintranslationimprovesyieldandqualityofcomplexproteinsinmammaliancellfactories
AT klanertgerald systematicuseofsynthetic5utrrnastructurestotuneproteintranslationimprovesyieldandqualityofcomplexproteinsinmammaliancellfactories
AT weingunymarcus systematicuseofsynthetic5utrrnastructurestotuneproteintranslationimprovesyieldandqualityofcomplexproteinsinmammaliancellfactories
AT sandegrenanna systematicuseofsynthetic5utrrnastructurestotuneproteintranslationimprovesyieldandqualityofcomplexproteinsinmammaliancellfactories
AT suchao systematicuseofsynthetic5utrrnastructurestotuneproteintranslationimprovesyieldandqualityofcomplexproteinsinmammaliancellfactories
AT hattondiane systematicuseofsynthetic5utrrnastructurestotuneproteintranslationimprovesyieldandqualityofcomplexproteinsinmammaliancellfactories
AT borthnicole systematicuseofsynthetic5utrrnastructurestotuneproteintranslationimprovesyieldandqualityofcomplexproteinsinmammaliancellfactories
AT rockbergjohan systematicuseofsynthetic5utrrnastructurestotuneproteintranslationimprovesyieldandqualityofcomplexproteinsinmammaliancellfactories