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Multiple Functional Motifs Are Required for the Tumor Suppressor Activity of a Constitutively-Active ErbB4 Mutant
Richard M Gallo1, Ianthe N Bryant2, Christopher P Mill3
1Department of Medicinal Chemistry and Molecular Pharmacology, Purdue University College of Pharmacy & Purdue University Center for Cancer Research, West Lafayette, IN 47907, USA ; Department of Microbiology and Immunology, Indiana University School of Medicine, Indianapolis, IN 46206 USA.
Abstract:
ErbB4 (HER4) is a member of the ErbB family of receptor tyrosine kinases, which includes the Epidermal Growth Factor Receptor (EGFR/ErbB1), ErbB2 (HER2/Neu), and ErbB3 (HER3). Mounting evidence indicates that ErbB4, unlike EGFR or ErbB2, functions as a tumor suppressor in many human malignancies. Previous analyses of the constitutively-dimerized and -active ErbB4 Q646C mutant indicate that ErbB4 kinase activity and phosphorylation of ErbB4 Tyr1056 are both required for the tumor suppressor activity of this mutant in human breast, prostate, and pancreatic cancer cell lines. However, the cytoplasmic region of ErbB4 possesses additional putative functional motifs, and the contributions of these functional motifs to ErbB4 tumor suppressor activity have been largely underexplored. Here we demonstrate that ErbB4 BH3 and LXXLL motifs, which are thought to mediate interactions with Bcl family proteins and steroid hormone receptors, respectively, are required for the tumor suppressor activity of the ErbB4 Q646C mutant. Furthermore, abrogation of the site of ErbB4 cleavage by gamma-secretase also disrupts the tumor suppressor activity of the ErbB4 Q646C mutant. This last result suggests that ErbB4 cleavage and subcellular trafficking of the ErbB4 cytoplasmic domain may be required for the tumor suppressor activity of the ErbB4 Q646C mutant. Indeed, here we demonstrate that mutants that disrupt ErbB4 kinase activity, ErbB4 phosphorylation at Tyr1056, or ErbB4 cleavage by gamma-secretase also disrupt ErbB4 trafficking away from the plasma membrane and to the cytoplasm. This supports a model for ErbB4 function in which ErbB4 tumor suppressor activity is dependent on ErbB4 trafficking away from the plasma membrane and to the cytoplasm, mitochondria, and/or the nucleus.
Insights
ErbB4 (HER4) acts as a tumor suppressor in cancers. Its BH3 and LXXLL motifs, cleavage by gamma-secretase, and trafficking to the cytoplasm are crucial for this activity.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- ErbB4 (HER4) is a receptor tyrosine kinase in the ErbB family.
- Unlike EGFR or ErbB2, ErbB4 functions as a tumor suppressor in various human cancers.
- The tumor suppressor role of ErbB4's cytoplasmic functional motifs remains largely unexplored.
Purpose of the Study:
- To investigate the role of ErbB4's BH3 and LXXLL motifs in its tumor suppressor activity.
- To determine if ErbB4 cleavage by gamma-secretase is necessary for its tumor suppressor function.
- To elucidate the relationship between ErbB4 trafficking and its tumor suppressor activity.
Main Methods:
- Utilized the ErbB4 Q646C mutant to study functional motifs.
- Assessed the impact of mutations in BH3, LXXLL motifs, and the gamma-secretase cleavage site on tumor suppressor activity.
- Tracked ErbB4 subcellular localization using mutant analysis.
Main Results:
- ErbB4 BH3 and LXXLL motifs are essential for the tumor suppressor activity of the ErbB4 Q646C mutant.
- Disruption of ErbB4 cleavage by gamma-secretase abrogates its tumor suppressor function.
- Mutations affecting kinase activity, Tyr1056 phosphorylation, or gamma-secretase cleavage impair ErbB4 trafficking from the plasma membrane.
Conclusions:
- ErbB4's tumor suppressor activity relies on its BH3 and LXXLL motifs.
- ErbB4 cleavage and subsequent cytoplasmic trafficking are critical for its tumor suppressor function.
- ErbB4 tumor suppressor activity is linked to its translocation from the plasma membrane to intracellular compartments like the cytoplasm, mitochondria, or nucleus.
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