Abstract

Malignant melanoma continues to remain a significant health threat, with death often occurring as a result of metastasis. The metastatic phenotype typically is characterized by augmented tumor cell invasion and migration in addition to tumor cell plasticity as shown by vasculogenic mimicry. Therefore, understanding the molecular mechanisms that promote an aggressive phenotype is essential to predicting the likelihood of metastasis at a stage when intervention may be possible. This study focuses on the role of focal adhesion kinase (FAK), a cytoplasmic tyrosine kinase important for many cellular processes, including cell survival, invasion, and migration. We found FAK to be phosphorylated on its key tyrosine residues, Tyr397 and Tyr576, in only aggressive uveal and cutaneous melanoma cells, which correlates with their increased invasion, migration, and vasculogenic mimicry plasticity. Additionally, we confirmed the presence of FAK phosphorylated on Tyr397 and Tyr576 in both cutaneous and uveal melanoma tumors in situ. Examination of a functional role for FAK in aggressive melanoma revealed that disruption of FAK-mediated signal transduction pathways, through the expression of FAK-related nonkinase (FRNK), results in a decrease in melanoma cell invasion, migration, and inhibition of vasculogenic mimicry. Moreover, we found that FRNK expression resulted in a down-regulation of Erk1/2 phosphorylation resulting in a decrease in urokinase activity. Collectively, these data suggest a new mechanism involved in promoting the aggressive melanoma phenotype through FAK-mediated signal transduction pathways, thus providing new insights into possible therapeutic intervention strategies.

Highlights

  • The incidence of malignant melanoma has been steadily increasing

  • Expression of the focal adhesion kinase (FAK)-related nonkinase (FRNK) in aggressive melanoma cells, which acts to disrupt FAK signaling, resulted in an inhibition of melanoma vasculogenic mimicry concomitant with a decrease in melanoma cell invasion and migration. We found this biological effect to be mediated in part through an Erk1/2 signaling pathway that resulted in a down-regulation of urokinase and matrix metalloproteinase (MMP)-2/membrane type 1-MMP (MT1-MMP) activity

  • Given that the urokinase-type plasminogen activator receptor/urokinase signaling pathway has been linked to both FAK and Erk1/2 phosphorylation in many different tumor types [20,21,22], we examined conditioned medium obtained from C8161, two different empty vector C8161-neo clones, and C8161-FRNK-2 cells cultured on three-dimensional type I collagen matrices for 24 and 48 hours for urokinase activity

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Summary

Introduction

The incidence of malignant melanoma has been steadily increasing. Cutaneous melanoma remains more common, uveal melanoma is the primary intraocular tumor occurring in adults with significant morbidity The major health threat arising from malignant melanoma, both cutaneous and uveal, is death from metastatic disease, involving invasion and migration of tumor cells from the primary tumor to a distant site(s) within the body. Note: Supplementary data for this article are available at Cancer Research Online (http://cancerres.aacrjournals.org/). Requests for reprints: Mary J.C. Hendrix, Children’s Memorial Research Center, Feinberg School of Medicine, Northwestern University, 2300 Children’s Plaza, Box 222, Chicago, IL 60614-3394. Phone: 773-755-6528; Fax: 773-755-6534; E-mail: mjchendrix@ childrensmemorial.org

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