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Association of gag‐myc proteins from avian myelocytomatosis virus wild‐type and mutants with chromatin.

The EMBO JournalPublished 1 August 1982Open access
T. Bunte, I. Greiser‐Wilke, Peter Donner, Karin Moelling
Citations39
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TL;DR

Analysis of the localization of the transformation‐specific proteins in quail embryo fibroblast cell lines transformed by wild‐type avian myelocytomatosis virus MC29 and by three of its deletion mutants showed that the gag‐myc proteins in cells transformed by the wild‐ type MC29 as well as by the three deletion mutants are located in the nucleus.

Abstract

The localization of the transformation-specific proteins was analyzed in quail embryo fibroblast cell lines transformed by wild-type avian myelocytomatosis virus MC29 and by three of its deletion mutants, Q10A , Q10C , and Q10H , with altered transforming capacities, and in a chicken fibroblast cell line transformed by the avian erythroblastosis virus (AEV). These viruses code for polyproteins consisting of part of the gag gene and of a transformation-specific region, myc for MC29 and erb A for AEV. Analysis by indirect immunofluorescence using monoclonal antibodies against p19, the N-terminal region of the polyprotein, showed that the gag-myc proteins in cells transformed by the wild-type MC29 as well as by the three deletion mutants are located in the nucleus. In contrast, cells transformed by AEV, which express the gag-erb A protein, give rise to cytoplasmic fluorescence. Fractionation of cells into nuclear and cytoplasmic fractions and analysis by immunoprecipitation and gel electrophoresis confirmed these results. About 60% of the gag-myc proteins of wild-type as well as of mutant origin were found in the nucleus, while 90% of the gag-erb A protein was present in the cytoplasm. Also, pulse-chase analysis indicated that the gag-myc protein rapidly accumulates in the nucleus in just 30 min. Further, it was shown that the wild-type and also mutant gag-myc proteins are associated with isolated chromatin. Association to chromatin was also observed for the gag-myc protein from MC29-transformed bone marrow cells, which are believed to be the target cells for MC29 virus in vivo.

Keywords

MedicineBiochemistry, Genetics and Molecular Biology