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Selective cleavage of the heregulin receptor ErbB-4 by protein kinase C activation
M Vecchi1, J Baulida, G Carpenter
1Departments of Biochemistry and Medicine, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-0146, USA.
Abstract:
The 180-kDa transmembrane tyrosine kinase ErbB-4 is a receptor for the growth factor heregulin. 125I-Heregulin binding to NIH 3T3 cells overexpressing the ErbB-4 receptor is rapidly decreased by 12-O-tetradecanoylphorbol-13-acetate (TPA) pretreatment. Immunologic analysis demonstrates that TPA treatment of cells induces the proteolytic cleavage of ErbB-4, producing an 80-kDa cytoplasmic domain fragment, which contains a low level of phosphotyrosine, and a 120-kDa ectodomain fragment, which is released into the extracellular medium. Cleavage of ErbB-4 was also enhanced by other protein kinase C activators, i.e. platelet-derived growth factor, ionomycin, and synthetic diacylglycerol, while protein kinase C inhibition or down-regulation suppressed the TPA stimulation of ErbB-4 degradation. TPA did not induce the degradation of related receptors (ErbB-1, ErbB-2, and ErbB-3) in the EGF receptor family. The phorbol ester-induced cleavage of ErbB-4 occurs within or close to the ectodomain, as the 80-kDa cytoplasmic domain fragment is recognized by antibody to the ErbB-4 carboxyl terminus and is membrane-associated. Coprecipitation experiments show that, while the 80-kDa ErbB-4 fragment is associated with the SH2-containing molecules PLC-gamma1 and Shc, TPA did not induce the phosphorylation of these substrates in intact cells. In addition, kinase assays in vitro indicate that the 80-kDa fragment is not an active tyrosine kinase. These results show that protein kinase C negatively regulates heregulin signaling through the ErbB-4 receptor by the activation of a selective proteolytic mechanism.
Insights
Protein kinase C activation triggers the breakdown of the ErbB-4 receptor, a key player in heregulin signaling. This selective cleavage mechanism negatively regulates growth factor pathways.
Area of Science:
- Cell Biology
- Molecular Biology
- Signal Transduction
Background:
- ErbB-4 is a transmembrane tyrosine kinase receptor for the growth factor heregulin.
- Heregulin binding to ErbB-4 initiates signaling pathways crucial for cell growth and development.
Purpose of the Study:
- To investigate the effect of 12-O-tetradecanoylphorbol-13-acetate (TPA) on ErbB-4 receptor activity and stability.
- To elucidate the mechanism by which protein kinase C (PKC) influences ErbB-4 signaling.
Main Methods:
- Treatment of NIH 3T3 cells overexpressing ErbB-4 with TPA and other PKC activators.
- Immunologic analysis to detect proteolytic cleavage products of ErbB-4.
- Coprecipitation and in vitro kinase assays to assess protein interactions and enzymatic activity.
Main Results:
- TPA treatment induced proteolytic cleavage of ErbB-4, generating 80-kDa cytoplasmic and 120-kDa ectodomain fragments.
- Cleavage was enhanced by PKC activators and suppressed by PKC inhibition, indicating a PKC-dependent mechanism.
- The 80-kDa cytoplasmic fragment associated with PLC-gamma1 and Shc but was not actively phosphorylated or a tyrosine kinase.
Conclusions:
- PKC activation negatively regulates heregulin signaling via ErbB-4 through a selective proteolytic cleavage mechanism.
- This pathway is specific to ErbB-4 and does not affect other related receptors like ErbB-1, ErbB-2, and ErbB-3.