Multiparameter RNA and Codon Optimization: A Standardized Tool to Assess and Enhance Autologous Mammalian Gene Expression
Многопараметрическая оптимизация РНК и кодонов: стандартизированный инструмент для оценки и повышения аутологичной экспрессии генов млекопитающих
2011-03-03
SCID: 54.1/55qk8eut
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RNA optimizationautologous protein expressioncodon optimizationfunctional genomicsmammalian cell systems
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Abstract (AI)
Autologous expression of recombinant human proteins in human cells for biomedical research and product development is often hampered by low expression yields limiting subsequent structural and functional analyses. Following RNA and codon optimization, 50 candidate genes representing five classes of human proteins--transcription factors, ribosomal and polymerase subunits, protein kinases, membrane proteins and immunomodulators--all showed reliable, and 86% even elevated expression. Analysis of three representative examples showed no detrimental effect on protein solubility while unaltered functionality was demonstrated for JNK1, JNK3 and CDC2 using optimized constructs. Molecular analysis of a sequence-optimized transgene revealed positive effects at transcriptional, translational, and mRNA stability levels. Since improved expression was consistent in HEK293T, CHO and insect cells, it was not restricted to distinct mammalian cell systems. Additionally, optimized genes represent powerful tools in functional genomics, as demonstrated by the successful rescue of an siRNA-mediated knockdown using a sequence-optimized counterpart. This is the first large-scale study addressing the influence of multiparameter optimization on autologous human protein expression.
Key Findings
1
Expression improvements were observed in HEK293T, CHO, and insect cells, and optimized genes successfully rescued siRNA-mediated knockdown.
2
Multiparameter RNA and codon optimization reliably improved expression for all 50 tested human genes, with 86% showing elevated expression.
3
Optimization did not impair protein solubility in three representative examples, and optimized JNK1, JNK3, and CDC2 retained functionality.
4
Sequence optimization enhanced transgene expression through transcriptional, translational, and mRNA-stability effects.
5
The optimized genes represented five protein classes, including transcription factors, ribosomal and polymerase subunits, kinases, membrane proteins, and immunomodulators.
Research Object
autologous expression of recombinant human proteins in human and other cultured cells using RNA- and codon-optimized genes
Research Subject
the effects of multiparameter RNA and codon optimization on protein expression yield, solubility, functionality, and underlying transcriptional, translational, and mRNA-stability mechanisms
Publication Details
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2011-03-03
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