Human glioblastoma is the most frequent and aggressive form of brain tumour in the adult population. Proteolytic turnover of tumour suppressors by the ubiquitin-proteasome system is a mechanism that tumour cells can adopt to sustain their growth and invasiveness. However, the identity of ubiquitin-proteasome targets and regulators in glioblastoma are still unknown. Here we report that the RING ligase praja2 ubiquitylates and degrades Mob, a core component of NDR/LATS kinase and a positive regulator of the tumour-suppressor Hippo cascade. Degradation of Mob through the ubiquitin-proteasome system attenuates the Hippo cascade and sustains glioblastoma growth in vivo. Accordingly, accumulation of praja2 during the transition from low- to high-...
The Hippo pathway serves as a key barrier for oncogenic transformation. It acts by limiting the acti...
Protein degradation is an indispensable process for cells which is often deregulated in various dise...
The Hippo tumor suppressor pathway is essential for development and tissue growth control, encompass...
Human glioblastoma is the most frequent and aggressive form of brain tumour in the adult population....
Glioblastoma multiforme (GBM) is the most frequent and aggressive form of primary brain tumor in the...
Proteolysis of MOB1 by the ubiquitin ligase praja2 attenuates Hippo signalling and supports glioblas...
PRAJA, a RING-H2 E3 ligase, is abundantly expressed in brain tissues such as the cerebellum and fron...
The Hippo signaling pathway controls organ development and is also known, in cancer, to have a tumor...
High-grade gliomas represent a group of aggressive brain tumors with poor prognosis due to an inhere...
Evidence suggests that regulated ubiquitination of proteins plays a critical role in the development...
A major determinant of cell fate is regulation of cell cycle. Tight regulation of this process is lo...
<div><p>Evidence suggests that regulated ubiquitination of proteins plays a critical role in the dev...
Abstract A major determinant of cell fate is regulation of cell cycle. Tight regulation of this proc...
Despite recent advances in our understanding of the disease, glioblastoma (GB) continues to have lim...
The kinase suppressor of Ras 1 (KSR1) has a fundamental role in mitogenic signaling by scaffolding c...
The Hippo pathway serves as a key barrier for oncogenic transformation. It acts by limiting the acti...
Protein degradation is an indispensable process for cells which is often deregulated in various dise...
The Hippo tumor suppressor pathway is essential for development and tissue growth control, encompass...
Human glioblastoma is the most frequent and aggressive form of brain tumour in the adult population....
Glioblastoma multiforme (GBM) is the most frequent and aggressive form of primary brain tumor in the...
Proteolysis of MOB1 by the ubiquitin ligase praja2 attenuates Hippo signalling and supports glioblas...
PRAJA, a RING-H2 E3 ligase, is abundantly expressed in brain tissues such as the cerebellum and fron...
The Hippo signaling pathway controls organ development and is also known, in cancer, to have a tumor...
High-grade gliomas represent a group of aggressive brain tumors with poor prognosis due to an inhere...
Evidence suggests that regulated ubiquitination of proteins plays a critical role in the development...
A major determinant of cell fate is regulation of cell cycle. Tight regulation of this process is lo...
<div><p>Evidence suggests that regulated ubiquitination of proteins plays a critical role in the dev...
Abstract A major determinant of cell fate is regulation of cell cycle. Tight regulation of this proc...
Despite recent advances in our understanding of the disease, glioblastoma (GB) continues to have lim...
The kinase suppressor of Ras 1 (KSR1) has a fundamental role in mitogenic signaling by scaffolding c...
The Hippo pathway serves as a key barrier for oncogenic transformation. It acts by limiting the acti...
Protein degradation is an indispensable process for cells which is often deregulated in various dise...
The Hippo tumor suppressor pathway is essential for development and tissue growth control, encompass...