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Updated: May 3, 2026

A Detailed Protocol for Characterizing the Murine C1498 Cell Line and its Associated Leukemia Mouse Model
Published on: October 14, 2016
Mutant cells that abnormally process plasma membrane glycoproteins encoded by murine leukemia virus
Abstract:
Wild-type normal rat kidney fibroblasts infected with the Friend strain of murine leukemia virus (MuLV) contain two virus-encoded glycoproteins on the outer surfaces of their plasma membranes: an envelope glycoprotein with an apparent molecular weight of 70,000 (gp70), and a glycoprotein that reacts with antisera to the major virion internal core proteins p30, p15, p12 and p10 and has an apparent molecular weight of 93,000 (gp93gag). To analyze the functions of these glycoproteins and to develop a model system for studying genetics of membrane synthesis, we used an immunoselection method to isolate variant cell clones defective in processing these glycoproteins into their plasma membranes. Several lines of evidence, including complementation of glycoprotein processing defects by fusion with uninfected wild-type cells, indicate that the immunoselected variants have stably inherited membrane synthesis abnormalities that are encoded by cellular rather than by viral genes. The H-4 cell line, which was selected by use of antiserum to gp70, has metabolic defects that interfere with processing of both gp70 and gp93gag into its plasma membranes. Nevertheless, this cell line releases noninfectious MuLV. Furthermore, two cell lines (2 and 5), which were selected by use of antiserum to the virion core protein p30, specifically lack detectable cell surface or intracellular gp93gag but contain cell surface gp70 and release infectious MuLV. These results suggest that MuLV particles can bud efficiently from cells that lack known virus-encoded plasma membrane constituents.
Insights
Murine leukemia virus (MuLV) infection in rats reveals cellular genes control glycoprotein processing. Variants lacking cell surface viral proteins still release infectious MuLV, suggesting efficient budding occurs without these components.
Area of Science:
- Virology
- Cell Biology
- Molecular Genetics
Background:
- Murine leukemia virus (MuLV) infects rat kidney fibroblasts, expressing viral glycoproteins gp70 and gp93gag on the cell surface.
- Understanding the function and synthesis of these viral glycoproteins is crucial for studying membrane biogenesis and viral replication.
Purpose of the Study:
- To isolate and characterize cell variants with defects in viral glycoprotein processing and membrane transport.
- To investigate the genetic basis of these defects, distinguishing between cellular and viral control.
- To develop a model system for studying the genetics of membrane synthesis.
Main Methods:
- Immunoselection using antisera against viral glycoproteins (gp70) and core proteins (p30).
- Cell fusion experiments with uninfected wild-type cells to assess complementation of defects.
- Analysis of glycoprotein expression, processing, and MuLV release in variant cell lines.
Main Results:
- Isolated variant cell lines with stable, inherited defects in glycoprotein processing, indicating cellular gene control.
- Identified cell line H-4, defective in processing both gp70 and gp93gag, releasing noninfectious MuLV.
- Identified cell lines 2 and 5, lacking gp93gag but expressing gp70, releasing infectious MuLV.
Conclusions:
- Cellular genes, not viral genes, control the processing and membrane transport of MuLV glycoproteins.
- Efficient budding of infectious MuLV particles can occur even in the absence of cell surface gp93gag.
- These findings provide insights into viral assembly and membrane biogenesis, utilizing cellular machinery.
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