Epidermal Growth Factor Receptor 1 (EGFR1) and Its Variant EGFRvIII Regulate TATA-Binding Protein Expression through Distinct Pathways

Author:

Fromm Jody A.1,Johnson Sandra A. S.1,Johnson Deborah L.1

Affiliation:

1. Department of Biochemistry and Molecular Biology, University of Southern California, Keck School of Medicine and Norris Comprehensive Cancer Center, 2011 Zonal Avenue, Los Angeles, California 90033

Abstract

ABSTRACT The epidermal growth factor receptor (EGFR) family regulates essential biological processes. Various epithelial tumors are linked to EGFR overexpression or expression of variant forms, such as the EGFR1 variant, EGFRvIII. Perturbations in expression of the transcription initiation factor, TATA-binding protein (TBP), alter cellular growth properties. Here we demonstrate that EGFR1 and EGFRvIII, but not HER2, induce TBP expression at a transcriptional level through distinct mechanisms. EGFR1 enhances the phosphorylation and function of Elk-1, recruiting it to the TBP promoter. In contrast, EGFRvIII robustly induces c-jun expression, stimulating recruitment of c-fos/c-jun to an overlapping AP-1 site. Enhancing c-jun expression alone induces TBP promoter activity through the AP-1 site. To determine the underlying mechanism for differences in Elk-1 function and c-jun expression by these receptors, we inhibited the internalization of EGFR1. Persistent EGFR1 cell surface occupancy mimics EGFRvIII-mediated effects on Elk-1 and c-jun and switches the requirement of Elk-1 to AP-1 for TBP promoter induction. Together, these studies define a new molecular mechanism for the regulation of TBP expression. In addition, we identify distinct molecular targets of EGFR1 and EGFRvIII and demonstrate the importance of receptor internalization in distinguishing their specific functions.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

Reference65 articles.

1. Antonyak, M. A., D. K. Moscatello, and A. J. Wong. 1998. Constitutive activation of c-Jun N-terminal kinase by a mutant epidermal growth factor receptor. J. Biol. Chem.273:2817-2822.

2. Batra, S. K., S. Castelino-Prabhu, C. J. Wikstrand, X. Zhu, P. A. Humphrey, H. S. Friedman, and D. D. Bigner. 1995. Epidermal growth factor ligand-independent, unregulated, cell-transforming potential of a naturally occurring human mutant EGFRvIII gene. Cell Growth Differ.6:1251-1259.

3. Bigner, S. H., P. A. Humphrey, A. J. Wong, B. Vogelstein, J. Mark, H. S. Friedman, and D. D. Bigner. 1990. Characterization of the epidermal growth factor receptor in human glioma cell lines and xenografts. Cancer Res.50:8017-8022.

4. Bonaccorsi, L., D. Nosi, M. Muratori, L. Formigli, G. Forti, and E. Baldi. 2007. Altered endocytosis of epidermal growth factor receptor in androgen receptor positive prostate cancer cell lines. J. Mol. Endocrinol.38:51-66.

5. Cantin, G. T., J. L. Stevens, and A. J. Berk. 2003. Activation domain-mediator interactions promote transcription preinitiation complex assembly on promoter DNA. Proc. Natl. Acad. Sci. USA100:12003-12008.

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