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Phosphorylation and inactivation of protein phosphatase 1 by pp60v-src
Abstract:
Protein phosphatase 1, one of four major protein phosphatases involved in cellular regulation, was phosphorylated in vitro by pp60v-src, the transforming gene product of Rous sarcoma virus. Phosphorylation was accompanied by a loss of protein phosphatase activity. The inactivation of protein phosphatase 1 was time-dependent and the extent of inactivation correlated closely with the stoichiometry of phosphorylation. Under optimal conditions, 0.34 +/- 0.01 mol of phosphate were incorporated per mol of protein phosphatase and the activity of the enzyme was decreased by 39 +/- 2%. The inactivation required the presence of both MgATP and pp60v-src. There was no loss of activity when adenosine 5'-[beta gamma-imido]triphosphate was used in place of ATP. Phosphorylation of protein phosphatase 1 occurred exclusively on tyrosine residues and was blocked by specific antibodies to pp60v-src. During preincubation of pp60v-src at 41 degrees C, its protein kinase activity towards casein was lost rapidly. The ability of pp60v-src to phosphorylate and inactivate protein phosphatase 1 declined in parallel with the loss of casein kinase activity. Limited chymotryptic digestion of 32P-labeled protein phosphatase 1 (Mr 37,000) resulted in its quantitative conversion to a Mr 33,000 species. Conversion to this species was accompanied by the loss of 32P-labeling and by reactivation of the protein phosphatase. When various concentrations of chymotrypsin were used in the digestion, there was a close correlation between conversion to the Mr 33,000 species and the restoration of protein phosphatase activity. pp60v-src was unable to phosphorylate or inactivate a partially proteolyzed species of protein phosphatase 1 (Mr 33,000/34,000).
Insights
pp60v-src phosphorylation inactivates protein phosphatase 1, decreasing its activity by 39%. This inactivation, linked to tyrosine phosphorylation, is reversed by chymotryptic digestion, highlighting a regulatory mechanism in cellular processes.
Area of Science:
- Biochemistry
- Molecular Biology
- Cellular Regulation
Background:
- Protein phosphatase 1 (PP1) is a key enzyme in cellular regulation.
- pp60v-src is the transforming gene product of Rous sarcoma virus, known for its kinase activity.
Purpose of the Study:
- To investigate the effect of pp60v-src phosphorylation on Protein phosphatase 1 activity.
- To elucidate the mechanism of PP1 inactivation by pp60v-src.
Main Methods:
- In vitro phosphorylation of PP1 by pp60v-src using MgATP.
- Assessing PP1 activity and phosphate incorporation.
- Chymotryptic digestion of phosphorylated PP1.
- Antibody inhibition studies.
Main Results:
- pp60v-src phosphorylated PP1 on tyrosine residues, leading to a 39% loss of activity.
- Inactivation correlated with phosphorylation stoichiometry and required MgATP.
- Chymotryptic digestion of phosphorylated PP1 restored its activity.
- pp60v-src could not inactivate a partially proteolyzed PP1.
Conclusions:
- pp60v-src directly inactivates Protein phosphatase 1 through tyrosine phosphorylation.
- This phosphorylation-dependent inactivation is reversible via proteolysis.
- pp60v-src kinase activity is essential for PP1 inactivation.