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 kn...
YAP/TAZ are nuclear effectors of the Hippo pathway regulating organ growth and tumorigenesis. Yet, t...
TAZ is a WW domain containing a transcription coactivator that modulates mesenchymal differentiation...
Dysregulated Hippo pathway signaling promotes the onset of aggressive cancers through the induced nu...
YAP and its paralog protein TAZ are downstream effectors of the Hippo pathway. Both are amplified in...
YAP and its paralog protein TAZ are downstream effectors of the Hippo pathway. Both are amplified in...
The acquisition of invasive properties in melanoma is associated with a high proclivity for metastas...
Melanoma is an aggressive tumor with a high degree of metastasis and limited therapeutic options. Y...
The Hippo pathway is a well-conserved signaling pathway composed of a series of kinases, ending in t...
YAP and TAZ are highly related transcriptional regulators pervasively activated in human malignancie...
Melanoma, a malignant neoplasm of melanocytes, is the most lethal form of skin cancer. A majority of...
The skin is a squamous epithelium that is continuously renewed by a population of basal layer stem/p...
Melanoma is usually driven by mutations in BRAF or NRAS, which trigger hyperactivation of MAPK signa...
YAP and TAZ are key downstream regulators of the Hippo pathway, regulating cell proliferation and di...
The Hippo pathway is a central regulator of organ size and tissue homeostasis. Hippo kinases and ada...
The transcriptional co-activators YAP (or YAP1) and TAZ (or WWTR1) are frequently activated during t...
YAP/TAZ are nuclear effectors of the Hippo pathway regulating organ growth and tumorigenesis. Yet, t...
TAZ is a WW domain containing a transcription coactivator that modulates mesenchymal differentiation...
Dysregulated Hippo pathway signaling promotes the onset of aggressive cancers through the induced nu...
YAP and its paralog protein TAZ are downstream effectors of the Hippo pathway. Both are amplified in...
YAP and its paralog protein TAZ are downstream effectors of the Hippo pathway. Both are amplified in...
The acquisition of invasive properties in melanoma is associated with a high proclivity for metastas...
Melanoma is an aggressive tumor with a high degree of metastasis and limited therapeutic options. Y...
The Hippo pathway is a well-conserved signaling pathway composed of a series of kinases, ending in t...
YAP and TAZ are highly related transcriptional regulators pervasively activated in human malignancie...
Melanoma, a malignant neoplasm of melanocytes, is the most lethal form of skin cancer. A majority of...
The skin is a squamous epithelium that is continuously renewed by a population of basal layer stem/p...
Melanoma is usually driven by mutations in BRAF or NRAS, which trigger hyperactivation of MAPK signa...
YAP and TAZ are key downstream regulators of the Hippo pathway, regulating cell proliferation and di...
The Hippo pathway is a central regulator of organ size and tissue homeostasis. Hippo kinases and ada...
The transcriptional co-activators YAP (or YAP1) and TAZ (or WWTR1) are frequently activated during t...
YAP/TAZ are nuclear effectors of the Hippo pathway regulating organ growth and tumorigenesis. Yet, t...
TAZ is a WW domain containing a transcription coactivator that modulates mesenchymal differentiation...
Dysregulated Hippo pathway signaling promotes the onset of aggressive cancers through the induced nu...