Javascript must be enabled to continue!
NUAK1 coordinates growth factor-dependent activation of mTORC2 and Akt signaling
View through CrossRef
Abstract
Background
mTORC2 is a critical regulator of cytoskeleton organization, cell proliferation, and cancer cell survival. Activated mTORC2 induces maximal activation of Akt by phosphorylation of Ser-473, but regulation of Akt activity and signaling crosstalk upon growth factor stimulation are still unclear.
Results
We identified that NUAK1 regulates growth factor-dependent activation of Akt by two mechanisms. NUAK1 interacts with mTORC2 components and regulates mTORC2-dependent activation of Akt by controlling lysosome positioning and mTOR association with this organelle. A second mechanism involves NUAK1 directly phosphorylating Akt at Ser-473. The effect of NUAK1 correlated with a growth factor-dependent activation of specific Akt substrates. NUAK1 induced the Akt-dependent phosphorylation of FOXO1/3a (Thr-24/Thr-32) but not of TSC2 (Thr-1462). According to a subcellular compartmentalization that could explain NUAK1’s differential effect on the Akt substrates, we found that NUAK1 is associated with early endosomes but not with plasma membrane, late endosomes, or lysosomes. NUAK1 was required for the Akt/FOXO1/3a axis, regulating p21CIP1, p27KIP1, and FoxM1 expression and cancer cell survival upon EGFR stimulation. Pharmacological inhibition of NUAK1 potentiated the cell death effect induced by Akt or mTOR pharmacological blockage. Analysis of human tissue data revealed that NUAK1 expression positively correlates with EGFR expression and Akt Ser-473 phosphorylation in several human cancers.
Conclusions
Our results showed that NUAK1 kinase controls mTOR subcellular localization and induces Akt phosphorylation, demonstrating that NUAK1 regulates the growth factor-dependent activation of Akt signaling. Therefore, targeting NUAK1, or co-targeting it with Akt or mTOR inhibitors, may be effective in cancers with hyperactivated Akt signaling.
Springer Science and Business Media LLC
Title: NUAK1 coordinates growth factor-dependent activation of mTORC2 and Akt signaling
Description:
Abstract
Background
mTORC2 is a critical regulator of cytoskeleton organization, cell proliferation, and cancer cell survival.
Activated mTORC2 induces maximal activation of Akt by phosphorylation of Ser-473, but regulation of Akt activity and signaling crosstalk upon growth factor stimulation are still unclear.
Results
We identified that NUAK1 regulates growth factor-dependent activation of Akt by two mechanisms.
NUAK1 interacts with mTORC2 components and regulates mTORC2-dependent activation of Akt by controlling lysosome positioning and mTOR association with this organelle.
A second mechanism involves NUAK1 directly phosphorylating Akt at Ser-473.
The effect of NUAK1 correlated with a growth factor-dependent activation of specific Akt substrates.
NUAK1 induced the Akt-dependent phosphorylation of FOXO1/3a (Thr-24/Thr-32) but not of TSC2 (Thr-1462).
According to a subcellular compartmentalization that could explain NUAK1’s differential effect on the Akt substrates, we found that NUAK1 is associated with early endosomes but not with plasma membrane, late endosomes, or lysosomes.
NUAK1 was required for the Akt/FOXO1/3a axis, regulating p21CIP1, p27KIP1, and FoxM1 expression and cancer cell survival upon EGFR stimulation.
Pharmacological inhibition of NUAK1 potentiated the cell death effect induced by Akt or mTOR pharmacological blockage.
Analysis of human tissue data revealed that NUAK1 expression positively correlates with EGFR expression and Akt Ser-473 phosphorylation in several human cancers.
Conclusions
Our results showed that NUAK1 kinase controls mTOR subcellular localization and induces Akt phosphorylation, demonstrating that NUAK1 regulates the growth factor-dependent activation of Akt signaling.
Therefore, targeting NUAK1, or co-targeting it with Akt or mTOR inhibitors, may be effective in cancers with hyperactivated Akt signaling.
Related Results
Abstract 1430: CaMKK2 regulates EGF-dependent activation of oncogenic Akt in ovarian cancer cells
Abstract 1430: CaMKK2 regulates EGF-dependent activation of oncogenic Akt in ovarian cancer cells
Abstract
Background-The canonical PI3K/Akt pathway is hyperactive in a variety of cancers including ovarian cancer (OVCa). Using baculovirus-expressed, FPLC-purified...
Abstract B49: mTORC2 directs breast morphogenesis through Rictor-dependent PKCα/Rac1 signaling independent of Akt
Abstract B49: mTORC2 directs breast morphogenesis through Rictor-dependent PKCα/Rac1 signaling independent of Akt
Abstract
Akt phosphorylation is a major driver of cell survival, motility, and proliferation in development and disease, causing increased interest in upstream regul...
Abstract 4616: A novel non-canonical Notch-AKT- NF-κB pathways in triple negative breast cancer cells
Abstract 4616: A novel non-canonical Notch-AKT- NF-κB pathways in triple negative breast cancer cells
Abstract
Triple negative breast cancer (TNBC) is a heterogeneous group of clinically aggressive diseases that account for approximately 15-20% of invasive breast can...
Patterns and Prognostic Impact of PI3K-AKT Pathway Activation, Regulation and Downstream Activity in AML Using Reverse Phase Proteins Arrays (RPPA).
Patterns and Prognostic Impact of PI3K-AKT Pathway Activation, Regulation and Downstream Activity in AML Using Reverse Phase Proteins Arrays (RPPA).
Abstract
Functional activation of the PI3K/AKT signaling pathway provides survival signals to leukemic cells and pathway blockade may facilitate cell death. We have ...
Bases métaboliques du développement neuronal : rôles de la kinase NUAK1 dans la régulation des mitochondries axonales
Bases métaboliques du développement neuronal : rôles de la kinase NUAK1 dans la régulation des mitochondries axonales
La morphogenèse axonale implique une série de processus cellulaires hautement compartimentés, culminant avec la formation de connexions synaptiques fonctionnelles. Notamment, l'all...
Dynamic modelling of the PI3K/mTOR signalling network uncovers biphasic dependence of mTORC1 activation on the mTORC2 subunit Sin1
Dynamic modelling of the PI3K/mTOR signalling network uncovers biphasic dependence of mTORC1 activation on the mTORC2 subunit Sin1
ABSTRACT
The PI3K/mTOR signalling network critically regulates a broad array of important biological processes, including cell growth, metabolism...
Abstract 630: The role of AKT pathway in β-catenin mutated hepatocellular carcinoma
Abstract 630: The role of AKT pathway in β-catenin mutated hepatocellular carcinoma
Abstract
The Wnt/β-catenin and PI3K/AKT pathways are pivotal contributors to the development of the malignant phenotype in cancer. The activated Wnt/β-catenin pathwa...
TLR2-PI3K/Akt Signaling Pathway Involved in Platelet Activation Induced By Group B Streptococci
TLR2-PI3K/Akt Signaling Pathway Involved in Platelet Activation Induced By Group B Streptococci
Abstract
Background
Platelets not only play an important role in the initiation of hemostasis and thrombosis, but also participate in the immune and i...

