International audienceWhile the major drivers of melanoma initiation, including activation of NRAS/BRAF and loss of PTEN or CDKN2A, have been identified, the role of key transcription factors that impose altered transcriptional states in response to deregulated signaling is not well understood. The POU domain transcription factor BRN2 is a key regulator of melanoma invasion, yet its role in melanoma initiation remains unknown. Here, in a Braf V600E Pten F/+ context, we show that BRN2 haplo-insufficiency promotes melanoma initiation and metastasis. However, metastatic colonization is less efficient in the absence of Brn2. Mechanistically, BRN2 directly induces PTEN expression and in consequence represses PI3K signaling. Moreover, MITF, a BRN...
Phenotypic plasticity drives cancer progression, impacts treatment response, and is a major driver o...
MITF-M and PAX3 are proteins central to the establishment and transformation of the melanocyte linea...
Melanoma is the most aggressive skin cancer with high recurrence and low survival rate. In addition ...
International audienceWhile the major drivers of melanoma initiation, including activation of NRAS/B...
International audienceThe origin of tumor heterogeneity is poorly understood, yet it represents a ma...
The POU domain family of transcription factors play a central role in embryogenesis and are highly e...
Constitutive activation of the Wnt/beta-catenin signaling pathway is a notable feature of a large mi...
Melanoma tumors are highly heterogeneous, comprising of many cell populations that vary in their pot...
POU domain transcription factors are critical regulators of many developmental processes, and can al...
Loss of the CDKN2A tumor suppressor is associated with melanoma metastasis, but the mechanisms conne...
Melanoma tumors are highly heterogeneous, comprising of different cell types that vary in their pote...
Deregulation of transcription arising from mutations in key signaling pathways is a hallmark of canc...
MITF-M and PAX3 are proteins central to the establishment and transformation of the melanocyte linea...
Several parallels between stem cell biology and tumour behaviour have been discovered in recent time...
Phenotypic plasticity drives cancer progression, impacts treatment response, and is a major driver o...
MITF-M and PAX3 are proteins central to the establishment and transformation of the melanocyte linea...
Melanoma is the most aggressive skin cancer with high recurrence and low survival rate. In addition ...
International audienceWhile the major drivers of melanoma initiation, including activation of NRAS/B...
International audienceThe origin of tumor heterogeneity is poorly understood, yet it represents a ma...
The POU domain family of transcription factors play a central role in embryogenesis and are highly e...
Constitutive activation of the Wnt/beta-catenin signaling pathway is a notable feature of a large mi...
Melanoma tumors are highly heterogeneous, comprising of many cell populations that vary in their pot...
POU domain transcription factors are critical regulators of many developmental processes, and can al...
Loss of the CDKN2A tumor suppressor is associated with melanoma metastasis, but the mechanisms conne...
Melanoma tumors are highly heterogeneous, comprising of different cell types that vary in their pote...
Deregulation of transcription arising from mutations in key signaling pathways is a hallmark of canc...
MITF-M and PAX3 are proteins central to the establishment and transformation of the melanocyte linea...
Several parallels between stem cell biology and tumour behaviour have been discovered in recent time...
Phenotypic plasticity drives cancer progression, impacts treatment response, and is a major driver o...
MITF-M and PAX3 are proteins central to the establishment and transformation of the melanocyte linea...
Melanoma is the most aggressive skin cancer with high recurrence and low survival rate. In addition ...