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Rous sarcoma virus-induced changes in the pattern of phosphorylation of non-histone nuclear proteins
Abstract:
We here studied the protein kinase activity and in vitro phosphorylable sites of non-histone nuclear proteins, 0.4 M NaCl extracts (mostly chromosomal proteins) from chick embryo fibroblasts (CEF), infected or not with a Schmidt Ruppin strain subgroup A of Rous sarcoma virus (RSV). The infection and transformation of chick fibroblasts by RSV induced an increase in kinase activity and endogenous phosphorylation of non-histone chromosomal (NHC) proteins. The stimulation, by a change of medium, of the proliferation of dense cultures of normal chick fibroblasts also induced an increase in the kinase activity and endogenous phosphorylation of NHC proteins. However, two-dimensional gel electrophoresis of the 32P-phosphorylated proteins showed that stimulation due to a change of medium and that due to the expression of transformation were very different. The stimulation by a change of medium increased to a greater or lesser extent the phosphorylation of the different NHC proteins, with no fundamental variations in the pattern of protein phosphorylation. In contrast, RSV infection induced significant changes in the pattern of protein phosphorylation. One of the most striking feature was the large increase of amount and phosphorylation of high molecular weight (HMW) proteins in particular of phosphoproteins having an evaluated molecular weight (MW) of 78 K and 82 K and pI greater than 8.2. The percent of phosphotyrosine residues in NHC proteins was clearly increased when the proteins were extracted from transformed cells instead of normal cells. But the alkaline treatment of two-dimensional gel electrophoresis indicated that the 80 K phosphoproteins did not contain phosphotyrosine residues, and thus cannot be considered as substrates for pp60src kinase.
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.