PAI-1 Regulates the Invasive Phenotype in Human Cutaneous Squamous Cell Carcinoma

Author:

Freytag Jennifer1,Wilkins-Port Cynthia E.1,Higgins Craig E.1,Carlson J. Andrew2,Noel Agnes3,Foidart Jean-Michel3,Higgins Stephen P.1,Samarakoon Rohan1,Higgins Paul J.1

Affiliation:

1. Center for Cell Biology & Cancer Research, Albany Medical College, 47 New Scotland Avenue, Albany, NY 12208, USA

2. Department of Pathology, Albany Medical College, 47 New Scotland Avenue, Albany, NY 12208, USA

3. Laboratory of Tumor and Developmental Biology, Groupe Interdisciplinaire de Génoprotéomique Appliqué-Cancer, University of Liège, Avenue de l'Hôpital 3, 4000 Liège, Belgium

Abstract

The emergence of highly aggressive subtypes of human cutaneous squamous cell carcinoma (SCC) often reflects increased autocrine/paracrine TGF-βsynthesis and epidermal growth factor receptor (EGFR) amplification. Cooperative TGF-β/EGFR signaling promotes cell migration and induces expression of both proteases and protease inhibitors that regulate stromal remodeling resulting in the acquisition of an invasive phenotype. In one physiologically relevant model of human cutaneous SCC progression, TGF-β1+EGF stimulation increases the production of several matrix metalloproteinases (MMPs), among the most prominent of which is MMP-10—an MMP known to be elevated in SCC in situ. Activation of stromal plasminogen appears to be critical in triggering downstream MMP activity. Paradoxically, PAI-1, the major physiological inhibitor of plasmin generation, is also upregulated under these conditions and is an early event in progression of incipient epidermal SCC. One testable hypothesis proposes that TGF-β1+EGF-dependent MMP-10 elevation directs focalized matrix remodeling events that promote epithelial cell plasticity and tissue invasion. Increased PAI-1 expression serves to temporally and spatially modulate plasmin-initiated pericellular proteolysis, further facilitating epithelial invasive potential. Defining the complex signaling and transcriptional mechanisms that maintain this delicate balance is critical to developing targeted therapeutics for the treatment of human cutaneous malignancies.

Funder

National Institutes of Health

Publisher

Hindawi Limited

Subject

Oncology

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