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Rous sarcoma virus-induced changes in the pattern of phosphorylation of non-histone nuclear proteins

Insights

Rous sarcoma virus (RSV) infection significantly alters non-histone chromosomal (NHC) protein phosphorylation patterns in chick embryo fibroblasts (CEF). Unlike growth stimulation, RSV transformation dramatically increases high molecular weight phosphoprotein levels, with some lacking phosphotyrosine.

Area of Science:

  • Cellular biology
  • Virology
  • Biochemistry

Background:

  • Non-histone chromosomal (NHC) proteins play crucial roles in cellular processes.
  • Rous sarcoma virus (RSV) infection transforms chick embryo fibroblasts (CEF).
  • Protein kinase activity and phosphorylation are key regulatory mechanisms.

Purpose of the Study:

  • To investigate the impact of RSV infection on NHC protein kinase activity and phosphorylation.
  • To compare phosphorylation patterns induced by RSV transformation versus growth stimulation.
  • To identify specific phosphoproteins affected by RSV infection.

Main Methods:

  • Extraction of chromosomal proteins from infected and uninfected CEF.
  • Assay of protein kinase activity and in vitro phosphorylation.
  • Two-dimensional gel electrophoresis of 32P-phosphorylated proteins.
  • Analysis of phosphotyrosine content and alkaline treatment.

Main Results:

  • RSV infection increased NHC protein kinase activity and phosphorylation.
  • Growth stimulation also increased kinase activity but with different phosphorylation patterns.
  • RSV transformation markedly altered NHC protein phosphorylation, increasing high molecular weight phosphoproteins (78K, 82K).
  • A significant increase in phosphotyrosine residues was observed in NHC proteins from transformed cells.
  • Specific 80K phosphoproteins lacked phosphotyrosine, indicating they are not direct substrates of pp60src kinase.

Conclusions:

  • RSV infection induces distinct changes in NHC protein phosphorylation compared to normal growth stimulation.
  • RSV transformation leads to increased phosphorylation of specific high molecular weight proteins.
  • The study identified novel phosphoproteins in RSV-transformed cells, with some not being direct targets of pp60src kinase.

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