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A comparison of membrane glycoconjugates from mouse cells transformed by murine and primate RNA sarcoma viruses
Abstract:
Kirsten murine sarcoma virus (Ki-MSV) transformed Balb/eT3 mouse cells (K-Balb) were found to have altered membrane glycoconjugates compared to normal Balb/3T3 cells. There were reduced amounts of mono- and disialogangliosides, GM1 and GD1a, and activity of the specific galactosyltransferase required for synthesis of these gangliosides was reduced to between 0 and 18.5% of normal in the several K-Balb clones examined. When fucose-labeled glycopeptides derived from the surfaces of Balb/3T3 and K-Balb cells were compared by gel filtration chromatography, the glycopeptides from the transformed cells were enriched in earlier eluting components. These differences were also observed when the glycopeptides were derived from the entire cell and were diminished when the surface or cellular glycopeptides from Balb/3T3 and K-Balb were digested with neuraminidase prior to chromatographic analysis. Changes in these membrane sialoglycolipids and sialoglycopeptides were not influenced by Rauscher leukemia virus infection. In marked contrast, these changes in membrane glycoconjugates were not observed in Wooley monkey sarcoma virus (WSV) transformed Balb/3T3 cells (W-Balb). Although W-Balb cells like K-Balb were transformed by tissue culture criteria, their ganglioside composition, galactosyltransferase activity, and glycopeptide patterns were similar to normal Balb/3T3. These findings have potential implications concerning the role of these complex carbohydrates in the phenotypic alterations of transformed cells.
Insights
Kirsten murine sarcoma virus (Ki-MSV) transformation alters cell surface glycoconjugates, reducing key gangliosides and changing glycopeptide profiles. These changes were not seen in Wooley monkey sarcoma virus (WSV) transformed cells.
Area of Science:
- Cell Biology
- Virology
- Glycobiology
Background:
- Cancer cells exhibit altered cell surface molecules.
- Membrane glycoconjugates, including gangliosides and glycopeptides, play roles in cell recognition and transformation.
Purpose of the Study:
- To investigate alterations in membrane glycoconjugates of Kirsten murine sarcoma virus (Ki-MSV) transformed Balb/3T3 cells.
- To compare these alterations with those in Wooley monkey sarcoma virus (WSV) transformed Balb/3T3 cells.
Main Methods:
- Analysis of ganglioside composition and galactosyltransferase activity.
- Comparison of fucose-labeled cell surface and cellular glycopeptides using gel filtration chromatography.
- Neuraminidase digestion of glycopeptides prior to analysis.
Main Results:
- Ki-MSV transformed cells (K-Balb) showed reduced levels of GM1 and GD1a gangliosides and decreased galactosyltransferase activity.
- K-Balb cells exhibited altered glycopeptide profiles with enrichment of earlier eluting components.
- These changes in K-Balb cells were not observed in WSV transformed cells (W-Balb).
- Rauscher leukemia virus infection did not influence the observed changes in K-Balb cells.
Conclusions:
- Ki-MSV transformation induces specific changes in membrane glycoconjugates, including gangliosides and glycopeptides.
- These alterations are associated with the transformed phenotype induced by Ki-MSV but not WSV.
- Complex carbohydrates may be involved in the phenotypic changes observed in virus-transformed cells.