Direct stimulation of ERBB2 highlights a novel cytostatic signaling pathway driven by the receptor Thr701 phosphorylation

Author:

Gaviraghi Marco,Rabellino Andrea,Andolfo Annapaola,Brand Matthias,Brombin Chiara,Bagnato Paola,De Feudis Giuseppina,Raimondi Andrea,Locatelli Alberta,Tosoni Daniela,Mazza Davide,Gianni Luca,Tonon Giovanni,Yarden Yosef,Tacchetti Carlo,Daniele Tiziana

Abstract

AbstractERBB2 is a ligand-less tyrosine kinase receptor expressed at very low levels in normal tissues; when overexpressed, it is involved in malignant transformation and tumorigenesis in several carcinomas. In cancer cells, ERBB2 represents the preferred partner of other members of the ERBB receptor family, leading to stronger oncogenic signals, by promoting both ERK and AKT activation. The identification of the specific signaling downstream of ERBB2 has been impaired by the lack of a ligand and of an efficient way to selectively activate the receptor. In this paper, we found that antibodies (Abs) targeting different epitopes on the ERBB2 extracellular domain foster the activation of ERBB2 homodimers, and surprisingly induce a unique cytostatic signaling cascade promoting an ERK-dependent ERBB2 Thr701 phosphorylation, leading to AKT de-phosphorylation, via PP2A Ser/Thr phosphatases. Furthermore, the immunophilin Cyclophilin A plays a crucial role in this pathway, acting as a negative modulator of AKT de-phosphorylation, possibly by competing with Ser/Thr phosphatases for binding to AKT. Altogether, our data show that Ab recognizing ERBB2 extracellular domain function as receptor agonists, promoting ERBB2 homodimer activation, leading to an anti-proliferative signaling. Thus, the ultimate outcome of ERBB2 activity might depend on the dimerization status: pro-oncogenic in the hetero-, and anti-oncogenic in the homo-dimeric form.

Funder

Associazione Italiana Ricerca sul Cancro

Compagnia San Paolo

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference65 articles.

1. Press, M. F., Cordon-Cardo, C. & Slamon, D. J. Expression of the HER-2/neu proto-oncogene in normal human adult and fetal tissues. Oncogene 5, 953–962 (1990).

2. Segatto, O., Lonardo, F., Pierce, J. H., Bottaro, D. P. & Di Fiore, P. P. The role of autophosphorylation in modulation of erbB-2 transforming function. New Biol. 2, 187–195 (1990).

3. Hudziak, R. M., Schlessinger, J. & Ullrich, A. Increased expression of the putative growth factor receptor p185HER2 causes transformation and tumorigenesis of NIH 3T3 cells. Proc. Natl. Acad. Sci. U.S.A. 84, 7159–7163 (1987).

4. Mayer, I. A. Treatment of HER2-positive metastatic breast cancer following initial progression. Clin. Breast Cancer 9(Suppl 2), S50–S57 (2009).

5. Arteaga, C. L. & Engelman, J. A. ERBB receptors: from oncogene discovery to basic science to mechanism-based cancer therapeutics. Cancer Cell 25, 282–303 (2014).

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