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Regulation of collagen I gene expression by ras
J L Slack1, M I Parker, V R Robinson
1Department of Biochemistry, University of Washington, Seattle 98195.
Abstract:
Although transformation of rodent fibroblasts can lead to dramatic changes in expression of extracellular matrix genes, the molecular basis and physiological significance of these changes remain poorly understood. In this study, we have investigated the mechanism(s) by which ras affects expression of the genes encoding type I collagen. Levels of both alpha 1(I) and alpha 2(I) collagen mRNAs were markedly reduced in Rat 1 fibroblasts overexpressing either the N-rasLys-61 or the Ha-rasVal-12 oncogene. In fibroblasts conditionally transformed with N-rasLys-61, alpha 1(I) transcript levels began to decline within 8 h of ras induction and reached 1 to 5% of control levels after 96 h. In contrast, overexpression of normal ras p21 had no effect on alpha 1(I) or alpha 2(I) mRNA levels. Nuclear run-on experiments demonstrated that the transcription rates of both the alpha 1(I) and alpha 2(I) genes were significantly reduced in ras-transformed cells compared with those in parental cells. In addition, the alpha 1(I) transcript was less stable in transformed cells. Chimeric plasmids containing up to 3.6 kb of alpha 1(I) 5'-flanking DNA and up to 2.3 kb of the 3'-flanking region were expressed at equivalent levels in both normal and ras-transformed fibroblasts. However, a cosmid clone containing the entire mouse alpha 1(I) gene, including 3.7 kb of 5'- and 4 kb of 3'-flanking DNA, was expressed at reduced levels in fibroblasts overexpressing oncogenic ras. We conclude that oncogenic ras regulates the type I collagen genes at both transcriptional and posttranscriptional levels and that this effect, at least for the alpha 1(I) gene, may be mediated by sequences located either within the body of the gene itself or in the distal 3'-flanking region.
Insights
Oncogenic ras significantly reduces type I collagen gene expression in fibroblasts by decreasing transcription and mRNA stability. This regulation involves elements within the collagen gene or its flanking DNA.
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- Fibroblast transformation alters extracellular matrix gene expression.
- The molecular mechanisms and physiological impact of these changes are not fully understood.
Purpose of the Study:
- Investigate how oncogenic ras impacts type I collagen gene expression.
- Determine the molecular basis for ras-mediated regulation of collagen genes.
Main Methods:
- Utilized Rat 1 fibroblasts overexpressing N-ras or Ha-ras oncogenes.
- Performed nuclear run-on assays to assess gene transcription rates.
- Analyzed mRNA stability and gene expression using chimeric plasmids and cosmid clones.
Main Results:
- Overexpression of oncogenic ras (N-rasLys-61, Ha-rasVal-12) markedly reduced alpha 1(I) and alpha 2(I) collagen mRNA levels.
- Ras transformation significantly decreased transcription rates of collagen genes.
- The alpha 1(I) transcript exhibited reduced stability in transformed cells.
- Regulation involved sequences within the gene or distal 3'-flanking region.
Conclusions:
- Oncogenic ras regulates type I collagen genes at both transcriptional and posttranscriptional levels.
- The observed effects on alpha 1(I) collagen gene expression may be mediated by internal or distal 3'-flanking sequences.