Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Crosstalk between PIM and LKB1 kinases regulates AMPK phosphorylation and tumorigenic growth

View through CrossRef
Abstract Background The oncogenic PIM kinases and the tumor-suppressive LKB1 kinase have both been implicated in the regulation of cell growth and metabolism, albeit in opposite directions. Here we investigated whether these kinases interact with each other to influence AMPK phosphorylation and tumorigenic growth of prostate and breast cancer cells. Methods We first determined how PIM and LKB1 kinases affect AMPK phosphorylation levels. We then used in vitro kinase assays to demonstrate that LKB1 is phosphorylated by PIM kinases, and site-directed mutagenesis to identify the PIM target sites in LKB1. The cellular functions of PIM and LKB1 kinases were evaluated using either pan-PIM inhibitors or CRISPR/Cas9 genomic editing, with which all three PIM family members and/or LKB1 were knocked out from PC3 prostate and MCF7 breast cancer cell lines. In addition to cell proliferation assays, we examined the effects of PIM and/or LKB1 loss on tumor growth using the chick embryo chorioallantoic membrane (CAM) xenograft model. Results We provide both genetic and pharmacological evidence to demonstrate that inhibition of PIM expression or activity increases phosphorylation of AMPK at Thr172 in both PC3 and MCF7 cells, but not in their derivatives lacking LKB1. This is explained by our observation that all three PIM family kinases can phosphorylate LKB1 at Ser334. Wild-type LKB1, but not its phosphodeficient derivative, can restore PIM inhibitor-induced AMPK phosphorylation in LKB1 knock-out cells. In the CAM model, loss of LKB1 enhances tumorigenicity of PC3 xenografts, while cells lacking both LKB1 and PIMs exhibit slower proliferation rates and form smaller tumors. Conclusion PIM kinases are novel negative regulators of LKB1 that affect AMPK phosphorylation in an LKB1-dependent fashion. The impairment of cell proliferation and tumor growth in cells lacking both LKB1 and PIMs indicates that there is significant crosstalk between the signaling pathways regulated by these kinases in the context of cancer. These data also suggest that PIM inhibitors may be a rational therapeutic option to restrict growth of LKB1-deficient tumors.
Title: Crosstalk between PIM and LKB1 kinases regulates AMPK phosphorylation and tumorigenic growth
Description:
Abstract Background The oncogenic PIM kinases and the tumor-suppressive LKB1 kinase have both been implicated in the regulation of cell growth and metabolism, albeit in opposite directions.
Here we investigated whether these kinases interact with each other to influence AMPK phosphorylation and tumorigenic growth of prostate and breast cancer cells.
Methods We first determined how PIM and LKB1 kinases affect AMPK phosphorylation levels.
We then used in vitro kinase assays to demonstrate that LKB1 is phosphorylated by PIM kinases, and site-directed mutagenesis to identify the PIM target sites in LKB1.
The cellular functions of PIM and LKB1 kinases were evaluated using either pan-PIM inhibitors or CRISPR/Cas9 genomic editing, with which all three PIM family members and/or LKB1 were knocked out from PC3 prostate and MCF7 breast cancer cell lines.
In addition to cell proliferation assays, we examined the effects of PIM and/or LKB1 loss on tumor growth using the chick embryo chorioallantoic membrane (CAM) xenograft model.
Results We provide both genetic and pharmacological evidence to demonstrate that inhibition of PIM expression or activity increases phosphorylation of AMPK at Thr172 in both PC3 and MCF7 cells, but not in their derivatives lacking LKB1.
This is explained by our observation that all three PIM family kinases can phosphorylate LKB1 at Ser334.
Wild-type LKB1, but not its phosphodeficient derivative, can restore PIM inhibitor-induced AMPK phosphorylation in LKB1 knock-out cells.
In the CAM model, loss of LKB1 enhances tumorigenicity of PC3 xenografts, while cells lacking both LKB1 and PIMs exhibit slower proliferation rates and form smaller tumors.
Conclusion PIM kinases are novel negative regulators of LKB1 that affect AMPK phosphorylation in an LKB1-dependent fashion.
The impairment of cell proliferation and tumor growth in cells lacking both LKB1 and PIMs indicates that there is significant crosstalk between the signaling pathways regulated by these kinases in the context of cancer.
These data also suggest that PIM inhibitors may be a rational therapeutic option to restrict growth of LKB1-deficient tumors.

Related Results

Abstract 1270: Identification and functional analysis of Pim-1 kinase substrates in prostate cancer
Abstract 1270: Identification and functional analysis of Pim-1 kinase substrates in prostate cancer
Abstract Protein kinases constitute one of the largest and most pleiotropic families of proteins. Mutations leading to activation of protein kinases and loss of func...
Nouveau regard sur la signalisation AMPK : multiples fonctions de nouveaux interacteurs
Nouveau regard sur la signalisation AMPK : multiples fonctions de nouveaux interacteurs
La protéine kinase activée par AMP (AMPK) est un senseur et régulateur central de l'état énergétique cellulaire, mais ces voies de signalisation ne sont pour le moment que partiell...
LKB1: Can We Target an Hidden Target? Focus on NSCLC
LKB1: Can We Target an Hidden Target? Focus on NSCLC
LKB1 (liver kinase B1) is a master regulator of several processes such as metabolism, proliferation, cell polarity and immunity. About one third of non-small cell lung cancers (NSC...
PIM Kinases in Multiple Myeloma
PIM Kinases in Multiple Myeloma
Multiple myeloma (MM) remains an incurable disease and novel therapeutic agents/approaches are urgently needed. The PIM (Proviral insertion in murine malignancies) serine/threonine...

Back to Top