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DRAL is a p53-responsive gene whose four and a half LIM domain protein product induces apoptosis
F A Scholl1, P McLoughlin, E Ehler
1Division of Clinical Chemistry & Biochemistry, Department of Pediatrics, University of Zurich, 8032 Zurich, Switzerland.
Abstract:
DRAL is a four and a half LIM domain protein identified because of its differential expression between normal human myoblasts and the malignant counterparts, rhabdomyosarcoma cells. In the current study, we demonstrate that transcription of the DRAL gene can be stimulated by p53, since transient expression of functional p53 in rhabdomyosarcoma cells as well as stimulation of endogenous p53 by ionizing radiation in wild-type cells enhances DRAL mRNA levels. In support of these observations, five potential p53 target sites could be identified in the promoter region of the human DRAL gene. To obtain insight into the possible functions of DRAL, ectopic expression experiments were performed. Interestingly, DRAL expression efficiently triggered apoptosis in three cell lines of different origin to the extent that no cells could be generated that stably overexpressed this protein. However, transient transfection experiments as well as immunofluorescence staining of the endogenous protein allowed for the localization of DRAL in different cellular compartments, namely cytoplasm, nucleus, focal contacts, as well as Z-discs and to a lesser extent the M-bands in cardiac myofibrils. These data suggest that downregulation of DRAL might be involved in tumor development. Furthermore, DRAL expression might be important for heart function.
Insights
The DRAL gene, differentially expressed in rhabdomyosarcoma, is upregulated by the tumor suppressor p53. DRAL protein expression induces apoptosis and is localized in various cellular compartments, suggesting roles in cancer and heart function.
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- DRAL (a four and a half LIM domain protein) exhibits differential expression between normal myoblasts and rhabdomyosarcoma cells.
- Understanding DRAL's function and regulation is crucial for insights into rhabdomyosarcoma development.
Purpose of the Study:
- To investigate the transcriptional regulation of the DRAL gene.
- To elucidate the functional roles and cellular localization of the DRAL protein.
Main Methods:
- Transient expression of p53 in rhabdomyosarcoma cells.
- Stimulation of endogenous p53 using ionizing radiation.
- Analysis of the DRAL gene promoter for p53 binding sites.
- Ectopic expression of DRAL.
- Immunofluorescence staining for DRAL localization.
Main Results:
- DRAL gene transcription is stimulated by p53, with evidence of five potential p53 target sites in its promoter.
- Ectopic DRAL expression potently induced apoptosis across multiple cell lines.
- DRAL protein was localized to the cytoplasm, nucleus, focal contacts, and myofibril structures (Z-discs, M-bands).
Conclusions:
- Downregulation of DRAL may contribute to tumor development.
- DRAL expression is potentially important for normal heart function.