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Effect of trypsin on mouse mammary tumor virus
Abstract:
Undisrupted mouse mammary tumor virus (MuMTV) derived from the milk of of RIII mice has been analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and electron microscopy after treatment with insolubilized trypsin. No alterations were found in viral fine structure by either freeze-etch or negative-stain electron microscopy. No alterations were found in the ability of trypsinized virus to compete in a radioimmune assay for viral antigens. Infectivity experiments indicate no significant differences in the ability of treated virus to infect C57Bl mice. However, significant differences were observed in polypeptide composition. The intensely periodic acid-Schiff-positive band, gp140, was shown by galactose oxidase-borotritide labeling to be degraded into a fragment of 125,000 molecular weight. The major glycoprotein, gp55, was split into fragments of 36,000 and 23,000 molecular weight, both of which stained with periodic acid-Schiff stain. Gp68 was removed from the virus. Experiments with purified, iodinated gp55 showed that the trypsin-induced fragments of gp55 were immunologically active. We conclude that: (i) certain glycoproteins at the surface of MuMTV are accessible to an insoluble form of trypsin, (ii) the trypsin causes a nick in the polypeptide chain without affecting the configuration of the molecule; (iii) the nicked molecules remain bound to the virus; and (iv) the presence of these nicked molecules does not interfere with the biological or antigenic expression of virus function.
Insights
Trypsin treatment of mouse mammary tumor virus (MuMTV) nicked surface glycoproteins without altering viral structure or function. This reveals accessible viral glycoproteins and their stability during enzymatic modification.
Area of Science:
- Virology
- Biochemistry
- Molecular Biology
Background:
- Mouse mammary tumor virus (MuMTV) is an important retrovirus associated with mammary cancer in mice.
- Understanding the structural and functional properties of MuMTV surface glycoproteins is crucial for studying viral pathogenesis and developing antiviral strategies.
Purpose of the Study:
- To investigate the effect of insolubilized trypsin on the structural and functional integrity of MuMTV.
- To analyze the accessibility and susceptibility of MuMTV surface glycoproteins to enzymatic degradation.
Main Methods:
- Sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) for polypeptide analysis.
- Freeze-etch and negative-stain electron microscopy for structural evaluation.
- Radioimmune assay (RIA) for antigenic analysis.
- Infectivity assays in C57Bl mice.
- Galactose oxidase-borotritide labeling for glycoprotein analysis.
Main Results:
- Insolubilized trypsin treatment did not alter MuMTV fine structure or infectivity.
- Specific glycoproteins, gp140 and gp55, were degraded into smaller fragments.
- Gp68 was removed from the virus.
- Trypsin-induced fragments of gp55 retained immunological activity.
Conclusions:
- Surface glycoproteins of MuMTV are accessible to insolubilized trypsin.
- Trypsin causes nicks in polypeptide chains without altering overall molecular configuration.
- Nicked glycoproteins remain bound to the virus and do not interfere with viral function or antigenicity.