High Guanine and Cytosine Content Increases mRNA Levels in Mammalian Cells
Высокое содержание гуанина и цитозина повышает уровни мРНК в клетках млекопитающих
2006-05-15
SCID: 54.1/j5wk9sgk
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GC contentgene transcriptionmRNA expressionmRNA stabilitymammalian cells
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Abstract (AI)
Mammalian genes are highly heterogeneous with respect to their nucleotide composition, but the functional consequences of this heterogeneity are not clear. In the previous studies, weak positive or negative correlations have been found between the silent-site guanine and cytosine (GC) content and expression of mammalian genes. However, previous studies disregarded differences in the genomic context of genes, which could potentially obscure any correlation between GC content and expression. In the present work, we directly compared the expression of GC-rich and GC-poor genes placed in the context of identical promoters and UTR sequences. We performed transient and stable transfections of mammalian cells with GC-rich and GC-poor versions of Hsp70, green fluorescent protein, and IL2 genes. The GC-rich genes were expressed several-fold to over a 100-fold more efficiently than their GC-poor counterparts. This effect was not due to different translation rates of GC-rich and GC-poor mRNA. On the contrary, the efficient expression of GC-rich genes resulted from their increased steady-state mRNA levels. mRNA degradation rates were not correlated with GC content, suggesting that efficient transcription or mRNA processing is responsible for the high expression of GC-rich genes. We conclude that silent-site GC content correlates with gene expression efficiency in mammalian cells.
Key Findings
1
GC-rich and GC-poor versions of Hsp70, GFP, and IL2 genes were compared under identical promoters and UTRs in mammalian cells.
2
GC-rich genes showed expression from several-fold to over 100-fold higher than corresponding GC-poor genes in transient and stable transfections.
3
Silent-site GC content correlates with gene expression efficiency in mammalian cells when genomic context is controlled.
4
The expression advantage of GC-rich genes was attributable to increased steady-state mRNA levels, not differences in translation rates.
5
mRNA degradation rates did not correlate with GC content, implicating transcription or mRNA processing in the enhanced expression of GC-rich genes.
Research Object
GC-rich and GC-poor versions of Hsp70, green fluorescent protein, and IL2 genes in mammalian cells
Research Subject
The effect of silent-site GC content on gene expression efficiency, particularly steady-state mRNA levels, transcription, and mRNA processing
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2006-05-15
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