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Trans-activation of the mouse cytomegalovirus immediate early gene enhancer by ras oncogenes
D Lembo1, A Angeretti, P Foresta
1Institute of Microbiology, Medical School of Novara, University of Torino, Italy.
Abstract:
The ras gene family encodes 21K proteins that reside on the inner face of the plasma membrane and bind GTP and GDP with an equally high affinity. Cotransfection of NIH 3T3 cells with a mammalian expression vector containing a viral Harvey-ras (v-Ha-ras) cDNA, together with a plasmid (pCMVCAT) carrying the immediate early (IE) enhancer of the murine cytomegalovirus (MCMV) linked to the chloramphenicol acetyltransferase (CAT) reporter gene strongly stimulated CAT activity. Basal levels of pCMVCAT expression as well as trans-activation by v-ras plasmid were both inhibited by cotransfection of an expression vector containing the dominant inhibitory mutant gene Ha-ras Asn-17. This indicates that the p21ras protein is responsible for these activities. High pCMVCAT activation was also observed in cell lines carrying stably transfected ras oncogenes, activated by point mutation or amplification. To define the cis-acting DNA elements in the MCMV IE enhancer responsible for this trans-activation by p21ras protein, we constructed several plasmids containing the CAT gene under control of MCMV IE enhancers that were deleted in different regions. The CAT assays demonstrated that several sequences were responsive to p21ras protein. These sequences are scattered throughout the IE enhancer, upstream of the transcription start site, and contain responsive elements that are homologous to the binding sites for cellular transcription factors such as NF kappa B, AP1, ATF and SP1. Activation of the p21ras protein may thus be one of the signals that regulate IE genes transcription during MCMV infection.
Insights
Ras proteins (p21ras) activate gene transcription. This study shows p21ras influences murine cytomegalovirus immediate-early gene expression by binding to specific DNA elements within the enhancer region.
Area of Science:
- Molecular Biology
- Virology
- Oncogenes
Background:
- The ras gene family encodes p21ras proteins involved in cellular signaling.
- p21ras proteins bind GTP/GDP and are located on the plasma membrane.
Purpose of the Study:
- To investigate the role of p21ras in regulating viral gene expression.
- To identify specific DNA elements in the murine cytomegalovirus (MCMV) immediate-early (IE) enhancer responsive to p21ras.
Main Methods:
- Cotransfection assays using NIH 3T3 cells with v-Ha-ras cDNA and a chloramphenicol acetyltransferase (CAT) reporter gene linked to the MCMV IE enhancer.
- Use of a dominant-negative Ha-ras Asn-17 mutant to confirm p21ras involvement.
- Construction and analysis of deleted MCMV IE enhancer constructs in CAT reporter plasmids.
Main Results:
- Viral Harvey-ras (v-Ha-ras) cDNA strongly stimulated CAT activity driven by the MCMV IE enhancer.
- p21ras-mediated trans-activation was confirmed using the dominant inhibitory mutant.
- Stably transfected ras oncogenes also increased CAT activity.
- Deletion analysis identified multiple p21ras-responsive sequences within the MCMV IE enhancer.
- Responsive elements showed homology to binding sites for transcription factors NFκB, AP1, ATF, and SP1.
Conclusions:
- p21ras protein plays a significant role in the trans-activation of MCMV immediate-early genes.
- Specific DNA sequences within the MCMV IE enhancer mediate p21ras-dependent transcriptional regulation.
- p21ras activation may be a key signaling mechanism during MCMV infection to control IE gene transcription.