Tyrosine phosphorylation of caldesmon is required for binding to the Shc.Grb2 complex

Z Wang1, A J Danielsen, N J Maihle

  • 1Tumor Biology Program, Department of Biochemistry and Molecular Biology, Mayo Clinic, Rochester, Minnesota 55905, USA.

Insights

S3-v-erbB oncogene causes tyrosine phosphorylation of caldesmon (CaD), a protein involved in cell structure. Tyr-27 and Tyr-393 are key phosphorylation sites, with Tyr-27 mediating interaction with the Shc.Grb2 complex.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cell Biology

Background:

  • S3-v-erbB is a retroviral oncogene encoding a mutant epidermal growth factor receptor.
  • S3-v-erbB induces sarcomas in vivo and transforms fibroblasts in vitro.
  • Previous studies linked S3-v-erbB expression to tyrosine phosphorylation of caldesmon (CaD).

Purpose of the Study:

  • Identify tyrosine phosphorylation sites on CaD.
  • Elucidate the functional role of CaD tyrosine phosphorylation in S3-v-erbB oncogenic signaling.
  • Determine how CaD phosphorylation affects its interaction with signaling complexes.

Main Methods:

  • Generated mutant CaD proteins with tyrosine residues replaced by phenylalanine.
  • Utilized a CaD null cell line (DF1 cells) and transient transfection assays.
  • Analyzed CaD-Shc.Grb2 complex interactions.

Main Results:

  • Tyr-27 and Tyr-393 were identified as the major tyrosine phosphorylation sites on CaD.
  • Tyr-27 is located in the myosin binding domain; Tyr-393 is near actin binding/inhibition domains.
  • Tyrosine phosphorylation of CaD enhances its binding to the Shc.Grb2 complex, with Tyr-27 being critical for this interaction.

Conclusions:

  • Major CaD tyrosine phosphorylation sites are in functional domains (myosin and actin binding).
  • Tyr-27 is the primary site for CaD interaction with the Shc.Grb2 signaling complex.
  • CaD tyrosine phosphorylation plays a significant role in S3-v-erbB oncogenic signaling pathways.

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