TY - JOUR
T1 - Pro-invasive activity of the hippo pathway effectors YAP and TAZ in cutaneous melanoma
AU - Nallet-Staub, Flore
AU - Marsaud, Véronique
AU - Li, Ling
AU - Gilbert, Cristèle
AU - Dodier, Sophie
AU - Bataille, Véronique
AU - Sudol, Marius
AU - Herlyn, Meenhard
AU - Mauviel, Alain
N1 - Funding Information:
We thank Amélie Crozet, Institut Curie, for help with animal experiments, and Corine Bertolotto, INSERM U895, University of Nice, France, for human melanocyte RNA preparations. We are indebted to Anju Agarwal, consultant histopathologist, West Herts NHS Trust, Herts, UK, who helped with histopathological analysis of human samples. This work was supported by Ligue Nationale Contre le Cancer (Equipe Labellisée LIGUE EL2011-AM), INCa (PLBIO08-126), and a donation from Emile and Henriette Goutière (to AM), and institutional funding from Institut Curie, INSERM, and CNRS. MS was supported by PA Breast Cancer Coalition Grants (#60707 and #920093) and the Geisinger Clinic.
PY - 2014/1
Y1 - 2014/1
N2 - YAP and its paralog protein TAZ are downstream effectors of the Hippo pathway. Both are amplified in many human cancers and promote cell proliferation and epithelial-mesenchymal transition. Little is known about the status of the Hippo pathway in cutaneous melanoma. We profiled Hippo pathway component expression in a panel of human melanoma cell lines and melanocytic lesions, and characterized the capacity of YAP and TAZ to control melanoma cell behavior. YAP and TAZ immuno-staining in human samples revealed mixed cytoplasmic and nuclear staining for both proteins in benign nevi and superficial spreading melanoma. TAZ was expressed at higher levels than YAP1/2 in all cell lines and in those with high invasive potential. Stable YAP or TAZ knockdown dramatically reduced the expression of the classical Hippo target CCN2/connective-tissue growth factor (CTGF), as well as anchorage-independent growth, capacity to invade Matrigel, and ability form lung metastases in mice following tail-vein injection. YAP knockdown also reduced invasion in a model of skin reconstruct. Inversely, YAP overexpression increased melanoma cell invasiveness, associated with increased TEA domain-dependent transcription and CCN2/CTGF expression. Together, these results demonstrate that both YAP and TAZ contribute to the invasive and metastatic capacity of melanoma cells and may represent worthy targets for therapeutic intervention.
AB - YAP and its paralog protein TAZ are downstream effectors of the Hippo pathway. Both are amplified in many human cancers and promote cell proliferation and epithelial-mesenchymal transition. Little is known about the status of the Hippo pathway in cutaneous melanoma. We profiled Hippo pathway component expression in a panel of human melanoma cell lines and melanocytic lesions, and characterized the capacity of YAP and TAZ to control melanoma cell behavior. YAP and TAZ immuno-staining in human samples revealed mixed cytoplasmic and nuclear staining for both proteins in benign nevi and superficial spreading melanoma. TAZ was expressed at higher levels than YAP1/2 in all cell lines and in those with high invasive potential. Stable YAP or TAZ knockdown dramatically reduced the expression of the classical Hippo target CCN2/connective-tissue growth factor (CTGF), as well as anchorage-independent growth, capacity to invade Matrigel, and ability form lung metastases in mice following tail-vein injection. YAP knockdown also reduced invasion in a model of skin reconstruct. Inversely, YAP overexpression increased melanoma cell invasiveness, associated with increased TEA domain-dependent transcription and CCN2/CTGF expression. Together, these results demonstrate that both YAP and TAZ contribute to the invasive and metastatic capacity of melanoma cells and may represent worthy targets for therapeutic intervention.
UR - https://www.scopus.com/pages/publications/84890996895
U2 - 10.1038/jid.2013.319
DO - 10.1038/jid.2013.319
M3 - Article
C2 - 23897276
AN - SCOPUS:84890996895
SN - 0022-202X
VL - 134
SP - 123
EP - 132
JO - Journal of Investigative Dermatology
JF - Journal of Investigative Dermatology
IS - 1
ER -