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The product of the bovine papillomavirus type 1 modulator gene (M) is a phosphoprotein
1Department of Molecular Biology, University of California, Berkeley 94720.
Abstract:
The M gene of bovine papillomavirus type 1 has been genetically defined as encoding a trans-acting product which negatively regulates bovine papillomavirus type 1 replication and is important for establishment of stable plasmids in transformed cells. The gene for this regulatory protein has been mapped in part to the 5' portion of the largest open reading frame (E1) in the virus. We constructed a trpE-E1 fusion gene and expressed this gene in Escherichia coli. Rabbits were immunized with purified fusion protein, and antisera directed against the product were used to identify the M gene product in virus-transformed cells. In this way a polypeptide with an apparent molecular mass of 23 kilodaltons was detected. The virus-encoded product is phosphorylated and can be readily detected by immunoprecipitation assays from cells transformed by the virus. Cells that harbor viral DNA without M as integrated copies do not produce this protein, whereas cells that harbor integrated viral genomes which are defective for another E1 viral gene important for plasmid replication, R, do produce this protein. The protein has an anomalously low electrophoretic mobility. An in vitro translation product of an SP6 RNA product of a sequenced cDNA predicts a molecular mass of 16 kilodaltons for the protein, and this in vitro translation product has an electrophoretic mobility identical to that of the in vivo immunoprecipitated protein. The results of these studies confirm our previous genetic studies which indicated that part of the E1 open reading frame defined a discrete gene product distinct from other putative products which may be encoded by this open reading frame.
Insights
The M gene of bovine papillomavirus type 1 encodes a regulatory protein crucial for stable plasmid establishment. This protein, identified as a 23 kDa phosphopolypeptide, negatively regulates viral replication.
Area of Science:
- Virology
- Molecular Biology
- Oncogenesis
Background:
- Bovine papillomavirus type 1 (BPV-1) M gene regulates viral replication and plasmid stability.
- The M gene product is essential for establishing stable plasmids in transformed cells.
- Genetic mapping places the M gene within the 5' portion of the E1 open reading frame.
Purpose of the Study:
- To genetically define and characterize the M gene product of BPV-1.
- To identify and analyze the M gene protein in virus-transformed cells.
- To confirm the role of the M gene product in viral replication and plasmid establishment.
Main Methods:
- Construction and expression of a trpE-E1 fusion gene in Escherichia coli.
- Immunization of rabbits with purified fusion protein to generate specific antisera.
- Immunoprecipitation assays to detect the M gene product in virus-transformed cells.
- In vitro translation of SP6 RNA from sequenced cDNA to predict molecular mass and electrophoretic mobility.
Main Results:
- A 23 kDa phosphorylated polypeptide, the M gene product, was detected in BPV-1 transformed cells.
- Cells lacking the M gene did not produce the protein, while cells with defective E1 replication genes did.
- The M gene product exhibits anomalous electrophoretic mobility.
- In vitro translation predicted a 16 kDa protein with identical electrophoretic mobility to the immunoprecipitated product.
Conclusions:
- The M gene encodes a distinct protein product, separate from other potential E1 open reading frame products.
- This 23 kDa phosphoprotein plays a critical role in regulating BPV-1 replication and maintaining stable episomal DNA.
- The findings confirm previous genetic studies on the M gene's function and product identity.