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Differential localization patterns of myristoylated and nonmyristoylated c-Src proteins in interphase and mitotic

T David-Pfeuty1, S Bagrodia, D Shalloway

  • 1Institut Curie-Biologie, Centre Universitaire, Orsay, France.

Insights

Myristoylation of pp60c-src regulates its cellular localization. Preventing myristoylation allows the nonmyristoylated pp60c-src mutant to translocate to the nucleus, suggesting myristoylation may prevent unregulated nuclear entry.

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Biochemistry

Background:

  • Myristoylation is crucial for pp60c-src membrane attachment and transforming activity.
  • The antibody mAb327 recognizes both myristoylated and nonmyristoylated forms of pp60c-src.

Purpose of the Study:

  • To investigate the impact of myristoylation on pp60c-src localization within NIH 3T3 cells.
  • To compare the subcellular distribution of myristoylated pp60c-src and its nonmyristoylated mutant (pp60c-src/myr-).

Main Methods:

  • Immunofluorescence microscopy was employed to visualize protein localization.
  • Cells were analyzed during different phases of the cell cycle (interphase, G2, mitosis) and under specific arrest conditions (G0, G1/S).
  • Pretritonization was used to assess the detergent insolubility of protein pools.

Main Results:

  • Myristoylated pp60c-src localizes to the plasma membrane and centrosome during interphase.
  • Nonmyristoylated pp60c-src/myr- is primarily cytoplasmic and also found in the nucleus during interphase.
  • pp60c-src/myr- translocates to the nucleus in late G2/early prophase and associates with spindle components during mitosis, unlike pp60c-src.
  • Cytoplasmic pp60c-src/myr- is detergent-soluble, while its nuclear pool is detergent-insoluble.

Conclusions:

  • Myristoylation may serve to prevent the unregulated nuclear transport of pp60c-src.
  • The nonmyristoylated form of pp60c-src exhibits distinct nuclear and mitotic localization patterns.
  • A subfraction of wild-type pp60c-src might enter the nucleus and perform functions there under specific conditions.

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