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Further characterization of the P85gag-mos -associated protein kinase activity

Virology
|October 15, 1984
PubMed

Insights

The gag-mos hybrid protein from ts110 MoMuSV possesses intrinsic protein kinase activity, phosphorylating gag-mos and gag proteins. This activity is heat-labile and linked to the gag-mos gene product, not just a cellular kinase.

Area of Science:

  • Molecular Biology
  • Virology
  • Biochemistry

Background:

  • The ts110 Moloney murine sarcoma virus (MoMuSV) encodes a gag-mos hybrid protein, P85gag-mos.
  • Understanding the function and regulation of viral oncoproteins is crucial in cancer research.

Purpose of the Study:

  • To investigate the protein kinase activity associated with the P85gag-mos hybrid protein.
  • To determine if this kinase activity is an intrinsic function of P85gag-mos or a co-purifying cellular enzyme.
  • To characterize the thermosensitive (ts) defect in ts110 MoMuSV related to kinase activity.

Main Methods:

  • Immune complex kinase assays using [gamma-32P]ATP and manganese cofactor.
  • Immunoprecipitation with anti-mos and anti-gag antisera.
  • Analysis of P100gag-mos from a ts110 revertant.
  • Temperature shift experiments in ts110-infected cells (6m2) and revertant-infected cells (NRK 54-5A4).

Main Results:

  • P85gag-mos exhibits associated protein kinase activity, phosphorylating P85gag-mos and P58gag.
  • The kinase activity is resistant to high salt and detergent elution, suggesting it's intrinsic or tightly bound.
  • A second, functional thermosensitive defect in ts110 affects the heat lability of the P85-associated kinase activity.
  • Thermal inactivation of the P85 kinase precedes morphological reversion and decreased P85gag-mos concentration upon temperature shift.

Conclusions:

  • The P85gag-mos-associated kinase activity is likely an intrinsic function of the gag-mos gene product, not merely an adherent cellular kinase.
  • This kinase activity is thermosensitive and plays a role in the cellular transformation process mediated by ts110 MoMuSV.
  • The findings provide insights into the mechanism of oncogenesis by MoMuSV and the regulation of viral protein function.

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