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Characterization of cyclic AMP-resistant Chinese hamster ovary cell mutants lacking type I protein kinase

Insights

Chinese hamster ovary cell mutants resistant to cyclic AMP (cAMP) lack functional type I protein kinase. This suggests type I kinase is not essential for cell growth, with defects in subunit association.

Area of Science:

  • Cell Biology
  • Biochemistry
  • Genetics

Background:

  • Mutants of Chinese hamster ovary cells resistant to cyclic AMP (cAMP) were previously identified.
  • These mutants exhibit altered cAMP-stimulated protein kinase activity and cAMP binding.

Purpose of the Study:

  • To genetically and biochemically characterize three cAMP-resistant Chinese hamster ovary cell mutants.
  • To elucidate the role of cyclic AMP-dependent protein kinase (PKA) in cell growth.

Main Methods:

  • Genetic analysis to determine complementation groups.
  • Assay of cAMP-stimulated protein kinase activity using histone substrate.
  • Measurement of cyclic [3H]AMP binding.
  • Photoaffinity labeling with 8-azidoadenosine 3':5'-[32P]monophosphate.
  • Chromatographic analysis (DEAE-cellulose and Sephadex).

Main Results:

  • Mutants fall into two recessive complementation groups.
  • Complementation group I shows 7-10% of wild-type protein kinase activity; group II shows 31%.
  • All mutants exhibit 30-50% of wild-type cAMP binding.
  • All three mutants lack type I PKA and have reduced type II PKA activity.
  • Regulatory subunits of both PKA types are present in mutant extracts.

Conclusions:

  • Type I cyclic AMP-dependent protein kinase is not essential for normal Chinese hamster ovary cell growth.
  • The defect in these mutants involves the failure of the catalytic subunit to associate with regulatory subunits.

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