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Published on: July 17, 2019
Uncoupling of the LKB1-AMPKalpha energy sensor pathway by growth factors and oncogenic BRAF
Rosaura Esteve-Puig1, Francesc Canals, Núria Colomé
1Animal Models and Cancer Laboratory, Medical Oncology Research Program, Vall d'Hebron Research Institute-VHIO, Vall d'Hebron Hospital, Barcelona, Spain.
Background:
Understanding the biochemical mechanisms contributing to melanoma development and progression is critical for therapeutical intervention. LKB1 is a multi-task Ser/Thr kinase that phosphorylates AMPK controlling cell growth and apoptosis under metabolic stress conditions. Additionally, LKB1(Ser428) becomes phosphorylated in a RAS-Erk1/2-p90(RSK) pathway dependent manner. However, the connection between the RAS pathway and LKB1 is mostly unknown.
Methodology/Principal Findings:
Using the UV induced HGF transgenic mouse melanoma model to investigate the interplay among HGF signaling, RAS pathway and PI3K pathway in melanoma, we identified LKB1 as a protein directly modified by HGF induced signaling. A variety of molecular techniques and tissue culture revealed that LKB1(Ser428) (Ser431 in the mouse) is constitutively phosphorylated in BRAF(V600E) mutant melanoma cell lines and spontaneous mouse tumors with high RAS pathway activity. Interestingly, BRAF(V600E) mutant melanoma cells showed a very limited response to metabolic stress mediated by the LKB1-AMPK-mTOR pathway. Here we show for the first time that RAS pathway activation including BRAF(V600E) mutation promotes the uncoupling of AMPK from LKB1 by a mechanism that appears to be independent of LKB1(Ser428) phosphorylation. Notably, the inhibition of the RAS pathway in BRAF(V600E) mutant melanoma cells recovered the complex formation and rescued the LKB1-AMPKalpha metabolic stress-induced response, increasing apoptosis in cooperation with the pro-apoptotic proteins Bad and Bim, and the down-regulation of Mcl-1.
Conclusions/Significance:
These data demonstrate that growth factor treatment and in particular oncogenic BRAF(V600E) induces the uncoupling of LKB1-AMPKalpha complexes providing at the same time a possible mechanism in cell proliferation that engages cell growth and cell division in response to mitogenic stimuli and resistance to low energy conditions in tumor cells. Importantly, this mechanism reveals a new level for therapeutical intervention particularly relevant in tumors harboring a deregulated RAS-Erk1/2 pathway.
Insights
Oncogenic BRAF mutations in melanoma disrupt the LKB1-AMPK pathway, hindering responses to metabolic stress. Inhibiting the RAS pathway restores LKB1-AMPK function, promoting apoptosis and offering a new therapeutic target.
Area of Science:
- Cancer Biology
- Molecular Oncology
- Melanoma Pathogenesis
Background:
- Understanding melanoma's biochemical drivers is key for effective therapies.
- LKB1 kinase regulates cell growth and apoptosis under metabolic stress.
- LKB1 phosphorylation is linked to the RAS-Erk1/2-p90(RSK) pathway, but their connection is unclear.
Purpose of the Study:
- To investigate the interplay between HGF signaling, RAS, and PI3K pathways in melanoma.
- To identify how RAS pathway activation affects LKB1 function in melanoma.
- To explore therapeutic strategies targeting the RAS-LKB1-AMPK axis in melanoma.
Main Methods:
- Utilized a UV-induced HGF transgenic mouse melanoma model.
- Employed molecular techniques and tissue culture to study LKB1 phosphorylation.
- Assessed the impact of RAS pathway inhibition on LKB1-AMPK complex formation and function.
Main Results:
- Identified LKB1 as a direct target of HGF-induced signaling in melanoma.
- Constitutive LKB1(Ser428) phosphorylation observed in BRAF(V600E) mutant melanoma with high RAS activity.
- BRAF(V600E) mutation uncouples AMPK from LKB1, impairing metabolic stress response, independent of LKB1(Ser428) phosphorylation.
Conclusions:
- Oncogenic BRAF(V600E) disrupts LKB1-AMPK complexes, promoting cell proliferation and resistance to low energy.
- RAS pathway activation leads to LKB1-AMPK uncoupling, a novel mechanism in melanoma.
- Targeting the RAS-Erk1/2 pathway offers a therapeutic strategy for BRAF-mutant melanoma.
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