Related Experiment Videos
Regulation of mda-7 gene expression during human melanoma differentiation
M T Madireddi1, P Dent, P B Fisher
1Department of Urology, Herbert Irving Comprehensive Cancer Center, Columbia University, College of Physicians and Surgeons, New York, NY 10032, USA.
Abstract:
Induction of irreversible growth arrest and terminal differentiation in human melanoma cells following treatment with recombinant human fibroblast interferon (IFN-beta) and mezerein (MEZ) results in elevated expression of a specific melanoma differentiation associated gene, mda-7. Experiments were conducted to define the mechanism involved in the regulation of mda-7 expression in differentiating human melanoma cells. The mda-7 gene is actively transcribed in uninduced HO-1 human melanoma cells and the rate of transcription of mda-7 is not significantly enhanced by treatment with IFN-beta, MEZ or IFN-beta+MEZ. The high basal activity of the mda-7 promoter in uninduced melanoma cells and the absence of enhancing effect upon treatment with differentiation inducers is corroborated by transfection studies using the promoter region of mda-7 linked to a luciferase reporter gene containing the SV40 polyadenylation signal sequence. RT - PCR analysis detects the presence of low levels of mda-7 transcripts in uninduced and concomitant increases in differentiation inducer treated HO-1 cells. However, steady-state mda-7 mRNA is detected only in IFN-beta+MEZ and to a lesser degree in MEZ treated cells. We show that induction of terminal differentiation of HO-1 cells with IFN-beta+MEZ dramatically increases the half-life of mda-7 mRNA while treatment with cycloheximide results in detectable mda-7 mRNA in control and inducer treated cells. These observations confirm constitutive activity of the mda-7 promoter in HO-1 cells irrespective of differentiation status suggesting posttranscriptional processes as important determinants of mda-7 expression during terminal differentiation. The 3' UTR region of mda-7 contains AU-rich elements (ARE) that contribute to rapid mda-7 mRNA turnover during proliferation and reversible differentiation, a process controlled by a labile protein factor(s). Substitution of the SV40 polyadenylation signal sequence in the luciferase reporter plasmid with the mda-7-ARE-3'-UTR renders the Luciferase message unstable when expressed in proliferating and reversibly differentiated melanoma cells. In contrast, the luciferase message is stabilized when the mda-7-ARE-3'-UTR construct is expressed in terminally differentiated HO-1 cells. These results provide compelling evidence that mda-7 expression during terminal differentiation in human melanoma cells is regulated predominantly at a posttranscriptional level.
Insights
Recombinant human fibroblast interferon (IFN-beta) and mezerein (MEZ) induce terminal differentiation in melanoma cells, elevating mda-7 gene expression. This regulation occurs post-transcriptionally, primarily by stabilizing mda-7 mRNA during differentiation.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Differentiation
Background:
- Melanoma differentiation associated gene-7 (mda-7) expression is linked to terminal differentiation in human melanoma cells.
- Recombinant human fibroblast interferon (IFN-beta) and mezerein (MEZ) are known inducers of melanoma cell differentiation.
Purpose of the Study:
- To elucidate the regulatory mechanisms governing mda-7 gene expression during terminal differentiation of human melanoma cells.
- To investigate whether mda-7 regulation occurs at the transcriptional or post-transcriptional level.
Main Methods:
- Transfection studies using luciferase reporter gene constructs containing the mda-7 promoter and 3' UTR with AU-rich elements (ARE).
- Reverse transcription-polymerase chain reaction (RT-PCR) to analyze mda-7 transcript levels.
- Analysis of mda-7 mRNA half-life following treatment with differentiation inducers and cycloheximide.
Main Results:
- The mda-7 promoter exhibits high basal activity, unaffected by differentiation inducers (IFN-beta, MEZ).
- IFN-beta + MEZ treatment significantly increases mda-7 mRNA half-life, indicating post-transcriptional regulation.
- The mda-7 3' UTR containing ARE confers message instability in proliferating cells but stability in terminally differentiated cells.
Conclusions:
- mda-7 expression during terminal differentiation of human melanoma cells is primarily regulated at the post-transcriptional level.
- Stabilization of mda-7 mRNA, mediated by its 3' UTR, is a key mechanism for elevated expression during terminal differentiation.
- These findings highlight the importance of mRNA stability in controlling gene expression during cell fate determination in cancer.