The mitogen-activated protein kinase (MAPK) pathway is frequently aberrantly activated in advanced cancers, including metastatic prostate cancer (CaP). However, activating mutations or gene rearrangements among MAPK signaling components, such as Ras and Raf, are not always observed in cancers with hyperactivated MAPK. The mechanisms underlying MAPK activation in these cancers remain largely elusive. Here we discover that genomic amplification of the PPP1CA gene is highly enriched in metastatic human CaP. We further identify an S6K/PP1α/B-Raf signaling pathway leading to activation of MAPK signaling that is antagonized by the PML tumor suppressor. Mechanistically, we find that PP1α acts as a B-Raf activating phosphatase and that PML suppress...
Genetic alterations that potentiate PI3K signalling are frequent in prostate cancer, yet how differe...
Protein Phosphatase 2A (PP2A) enzymes counteract diverse kinase-driven oncogenic pathways and their ...
Protein phosphorylation is a key mechanism by which normal and cancer cells regulate their main tran...
The proto-oncogene AKT (also known as PKB) is activated in many human cancers, mostly owing to loss ...
BACKGROUND: Recent evidence has implicated the MAP kinase (MAPK) pathway with the development of cas...
Several oncogenes involved in prostate carcinogenesis activate mitogen- activated protein (MAP) kina...
AbstractDual-specificity MAP kinase (MAPK) phosphatases (MKPs or DUSPs) are well-established negativ...
Activating mutations in the RAS family or BRAF frequently occur in many types of human cancers but a...
Cancer research has seen tremendous changes over the past decade. Fast progress in sequencing techno...
SummaryHyperactivation of the PI 3-kinase/AKT pathway is a driving force of many cancers. Here we id...
Protein Phosphatase 2A (PP2A) enzymes counteract diverse kinase-driven oncogenic pathways and their ...
Hyperactivation of the PI 3-kinase/AKT pathway is a driving force of many cancers. Here we identify ...
PIP5K1α has emerged as a promising drug target for the treatment of castration-resistant prostate ca...
Protein phosphatase 2A (PP2A) complexes counteract many oncogenic kinase pathways. In cancer cells, ...
Protein phosphorylation is a key mechanism by which normal and cancer cells regulate their main tran...
Genetic alterations that potentiate PI3K signalling are frequent in prostate cancer, yet how differe...
Protein Phosphatase 2A (PP2A) enzymes counteract diverse kinase-driven oncogenic pathways and their ...
Protein phosphorylation is a key mechanism by which normal and cancer cells regulate their main tran...
The proto-oncogene AKT (also known as PKB) is activated in many human cancers, mostly owing to loss ...
BACKGROUND: Recent evidence has implicated the MAP kinase (MAPK) pathway with the development of cas...
Several oncogenes involved in prostate carcinogenesis activate mitogen- activated protein (MAP) kina...
AbstractDual-specificity MAP kinase (MAPK) phosphatases (MKPs or DUSPs) are well-established negativ...
Activating mutations in the RAS family or BRAF frequently occur in many types of human cancers but a...
Cancer research has seen tremendous changes over the past decade. Fast progress in sequencing techno...
SummaryHyperactivation of the PI 3-kinase/AKT pathway is a driving force of many cancers. Here we id...
Protein Phosphatase 2A (PP2A) enzymes counteract diverse kinase-driven oncogenic pathways and their ...
Hyperactivation of the PI 3-kinase/AKT pathway is a driving force of many cancers. Here we identify ...
PIP5K1α has emerged as a promising drug target for the treatment of castration-resistant prostate ca...
Protein phosphatase 2A (PP2A) complexes counteract many oncogenic kinase pathways. In cancer cells, ...
Protein phosphorylation is a key mechanism by which normal and cancer cells regulate their main tran...
Genetic alterations that potentiate PI3K signalling are frequent in prostate cancer, yet how differe...
Protein Phosphatase 2A (PP2A) enzymes counteract diverse kinase-driven oncogenic pathways and their ...
Protein phosphorylation is a key mechanism by which normal and cancer cells regulate their main tran...