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Updated: Aug 5, 2026

Pull-down of Calmodulin-binding Proteins
Published on: January 23, 2012
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.
Abstract:
S3-v-erbB is a retroviral oncogene that encodes a ligand-independent, transforming mutant of the epidermal growth factor receptor. This oncogene has been shown to be sarcomagenic in vivo and to transform fibroblasts in vitro. Our previous studies (McManus, M. J., Lingle, W. L., Salisbury, J. L., and Maihle, N. J. (1997) Proc. Natl. Acad. Sci. U. S. A. 94, 11351-11356) showed that expression of S3-v-erbB in primary fibroblasts results in the tyrosine phosphorylation of caldesmon (CaD), an actin- and calmodulin-binding protein. This phosphorylation is transformation-associated, and the phosphorylated form of CaD is associated with a signaling complex consisting of Shc, Grb2, and Sos in transformed fibroblasts. To identify the tyrosine phosphorylation site(s) in the CaD molecule and to further elucidate the functional role of CaD tyrosine phosphorylation in S3-v-ErbB oncogenic signaling, we have generated a series of mutant CaDs in which one or more tyrosine residues have been replaced with phenylalanine. Using a CaD null cell line, DF1 cells (an immortalized chicken embryo fibroblast cell line), and transient transfection assays, we demonstrated that Tyr-27 and Tyr-393 are the major sites of tyrosine phosphorylation on CaD. Interestingly, Tyr-27 is located within the myosin binding domain of CaD, and Tyr-393 is adjacent to one of the major actin binding and actomyosin ATPase inhibitory domains. Our studies also show that the tyrosine phosphorylation of CaD enhances its binding to the Shc.Grb2 complex. Specifically, replacement of Tyr-27, but not of Tyr-165 or Tyr-393, significantly reduces the ability of CaD to interact with the Shc. Grb2 complex. Together, these studies demonstrate that the major sites of tyrosine phosphorylation on CaD are located in the myosin and actin binding domains of CaD and that Tyr-27 is the major tyrosine phosphorylation site through which CaD interacts with the Shc.Grb2 complex.
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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