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1.
Cell Death Dis ; 13(5): 469, 2022 05 18.
Article in English | MEDLINE | ID: mdl-35585049

ABSTRACT

The RAS-BRAF signaling is a major pathway of cell proliferation and their mutations are frequently found in human cancers. Adenylate kinase 2 (AK2), which modulates balance of adenine nucleotide pool, has been implicated in cell death and cell proliferation independently of its enzyme activity. Recently, the role of AK2 in tumorigenesis was in part elucidated in some cancer types including lung adenocarcinoma and breast cancer, but the underlying mechanism is not clear. Here, we show that AK2 is a BRAF-suppressor. In in vitro assays and cell model, AK2 interacted with BRAF and inhibited BRAF activity and downstream ERK phosphorylation. Energy-deprived conditions in cell model and the addition of AMP to cell lysates strengthened the AK2-BRAF interaction, suggesting that AK2 is involved in the regulation of BRAF activity in response to cell metabolic state. AMP facilitated the AK2-BRAF complex formation through binding to AK2. In a panel of HCC cell lines, AK2 expression was inversely correlated with ERK/MAPK activation, and AK2-knockdown or -knockout increased BRAF activity and promoted cell proliferation. Tumors from HCC patients showed low-AK2 protein expression and increased ERK activation compared to non-tumor tissues and the downregulation of AK2 was also verified by two microarray datasets (TCGA-LIHC and GSE14520). Moreover, AK2/BRAF interaction was abrogated by RAS activation in in vitro assay and cell model and in a mouse model of HRASG12V-driven HCC, and AK2 ablation promoted tumor growth and BRAF activity. AK2 also bound to BRAF inhibitor-insensitive BRAF mutants and attenuated their activities. These findings indicate that AK2 monitoring cellular AMP levels is indeed a negative regulator of BRAF, linking the metabolic status to tumor growth.


Subject(s)
Adenosine Monophosphate , Adenylate Kinase , Carcinoma, Hepatocellular , Liver Neoplasms , Proto-Oncogene Proteins B-raf , Adenosine Monophosphate/metabolism , Adenylate Kinase/metabolism , Animals , Carcinogenesis/genetics , Carcinoma, Hepatocellular/enzymology , Carcinoma, Hepatocellular/genetics , Carcinoma, Hepatocellular/pathology , Cell Line, Tumor , Humans , Liver Neoplasms/enzymology , Liver Neoplasms/genetics , Liver Neoplasms/pathology , Mice , Mutation , Proto-Oncogene Proteins B-raf/genetics , Proto-Oncogene Proteins B-raf/metabolism
2.
Cell Rep ; 37(10): 110102, 2021 12 07.
Article in English | MEDLINE | ID: mdl-34879266

ABSTRACT

Toxic amyloid beta (Aß) species cause synaptic dysfunction and neurotoxicity in Alzheimer's disease (AD). As of yet, however, there are no reported regulators for gamma-secretase, which links a risky environment to amyloid accumulation in AD. Here, we report that pyruvate kinase M2 (PKM2) is a positive regulator of gamma-secretase under hypoxia. From a genome-wide functional screen, we identify PKM2 as a gamma-secretase activator that is highly expressed in the brains of both patients and murine models with AD. PKM2 regulates Aß production and the amount of active gamma-secretase complex by changing the gene expression of aph-1 homolog. Hypoxia induces PKM2 expression, thereby promoting gamma-secretase activity. Moreover, transgenic expression of PKM2 in 3xTg AD model mice enhances hippocampal production of Aß and exacerbates the impairment of spatial and recognition memory. Taken together, these findings indicate that PKM2 is an important gamma-secretase regulator that promotes Aß production and memory impairment under hypoxia.


Subject(s)
Alzheimer Disease/enzymology , Behavior, Animal , Brain/enzymology , Endopeptidases/metabolism , Membrane Proteins/metabolism , Memory , Pyruvate Kinase/metabolism , Aged , Aged, 80 and over , Alzheimer Disease/genetics , Alzheimer Disease/physiopathology , Alzheimer Disease/psychology , Amyloid beta-Peptides/metabolism , Animals , Brain/physiopathology , Carrier Proteins/genetics , Carrier Proteins/metabolism , Case-Control Studies , Databases, Genetic , Disease Models, Animal , Endopeptidases/genetics , Female , Gene Expression Regulation, Enzymologic , Humans , Male , Membrane Proteins/genetics , Mice, Inbred C57BL , Mice, Transgenic , Middle Aged , Pyruvate Kinase/genetics , Recognition, Psychology , Signal Transduction , Spatial Memory , Thyroid Hormones/genetics , Thyroid Hormones/metabolism , Transcription, Genetic , Thyroid Hormone-Binding Proteins
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