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Published on: March 9, 2012
Ribosomal protein L4 positively regulates activity of a c-myb proto-oncogene product
Ayako Egoh1, Shin Nosuke Kanesashi, Chie Kanei-Ishii
1Laboratory of Molecular Genetics, RIKEN Tsukuba Institute, 3-1-1 Koyadai, Tsukuba, Ibaraki 305-0074, Japan.
Abstract:
The c-myb proto-oncogene product (c-Myb) induces transcription of a group of target genes involved in the G1/S transition and in anti-apoptosis. The level of c-Myb is negatively regulated by the Wnt signal, but it remains obscure how c-Myb activity is positively regulated. We have found that ribosomal protein L4 (RPL4) binds to the DNA-binding domain of c-Myb. Co-immunoprecipitation experiments also indicated that RPL4 interacts with c-Myb. When c-Myb was overexpressed in CV-1 cells, significant amounts of RPL4 moved to the nucleoplasm from the nucleolus. RPL4 stimulated the c-Myb-dependent expression of a c-myc-luciferase reporter construct. Chromatin immunoprecipitation assays indicated that RPL4 binds to the 5'-regulatory region of the c-myc gene via c-Myb. Serum starvation and 2-deoxyglucose treatment of NIH3T3 cells induced the movement of RPL4 from the nucleoplasm to the nucleolus. Furthermore, c-myc mRNA levels were reduced by either serum starvation or 2-deoxyglucose treatment, and the degree of reduction in the c-myc mRNA level was correlated with the RPL4 level. These results suggest that growth factor and nutritional signals positively regulate c-Myb activity via its interaction with RPL4. Thus, RPL4 plays an important role in c-myc expression by interacting with c-Myb in response to growth factor and nutritional signals.
Insights
Ribosomal protein L4 (RPL4) positively regulates c-Myb activity by binding to its DNA-binding domain. This interaction enhances c-myc expression in response to growth and nutrient signals.
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- The c-myb proto-oncogene (c-Myb) is crucial for cell cycle progression and apoptosis resistance.
- While Wnt signaling negatively regulates c-Myb levels, positive regulatory mechanisms remain unclear.
Purpose of the Study:
- To elucidate the positive regulatory mechanisms of c-Myb activity.
- To investigate the role of ribosomal protein L4 (RPL4) in c-Myb function.
Main Methods:
- Co-immunoprecipitation to confirm RPL4-c-Myb interaction.
- Reporter gene assays to assess c-Myb-dependent gene expression.
- Chromatin immunoprecipitation to determine RPL4 binding to target gene promoters.
- Cellular localization studies of RPL4 under different conditions.
Main Results:
- RPL4 directly binds to the DNA-binding domain of c-Myb and interacts with it.
- Overexpression of c-Myb causes RPL4 translocation from the nucleolus to the nucleoplasm.
- RPL4 enhances c-Myb-mediated transcription of the c-myc gene.
- Growth factor deprivation and nutrient reduction induce RPL4 relocalization and decrease c-myc mRNA levels.
Conclusions:
- RPL4 positively regulates c-Myb activity through direct interaction.
- RPL4 acts as a mediator for growth factor and nutritional signals to modulate c-Myb function.
- RPL4 plays a critical role in regulating c-myc expression in response to cellular environmental cues.
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