Kr-POK (ZBTB7c) is a kidney cancer-related POK transcription factor that not only represses transcription of CDKN1A but also increases expression of FASN. However, precisely how Kr-POK affects cell metabolism by controlling gene expression in response to an energy source in rapidly proliferating cells remains unknown. In this study, we characterized the molecular and functional features of Kr-POK in the context of tumor growth and glutamine metabolism. We found that cells expressing Kr-POK shRNA exhibited more severe cell death than control cells in glucose-deprived medium, and that knockdown of Kr-POK decreased glutamine uptake. Glutamine is critical for tumor cell proliferation. Glutaminase (GLS1), which is activated by p-STAT1, catalyzes...
SummaryTumor cells have high-energetic and anabolic needs and are known to adapt their metabolism to...
Tumor cells display fundamental changes in metabolism and nutrient uptake in order to utilize additi...
Tumors reprogram pathways of nutrient acquisition and metabolism to meet their bioenergetic needs an...
The BTB/POZ family of proteins has been implicated in multiple biological processes, including tumou...
Transcriptional regulation by p53 is thought to play a role in its ability to suppress tumorigenesis...
Transcriptional regulation by p53 is thought to play a role in its ability to suppress tumorigenesis...
Kr-pok (kidney cancer-related POZ domain and Krüppel-like protein) is a new proto-oncogenic POZ-doma...
Objective: Cancer cells convert more glucose into lactate than healthy cells, what contributes to th...
[eng] In this thesis, tumor metabolic reprogramming has been exploited in order to propose new targe...
Several hallmarks of cancer cells are their display of metabolic changes and enhanced proliferation....
Alternative pathways of metabolism endowed cancer cells with metabolic stress. Inhibiting the relate...
Although aerobic glycolysis (the Warburg effect) is a hallmark of cancer, key questions, including w...
Identifying contexts in which cancer cells become addicted to specific nutrients is critical for dev...
Although aerobic glycolysis (the Warburg effect) is a hallmark of cancer, key questions, including w...
Glutamine can play a critical role in cellular growth in multiple cancers. Glutamine‐addicted cancer...
SummaryTumor cells have high-energetic and anabolic needs and are known to adapt their metabolism to...
Tumor cells display fundamental changes in metabolism and nutrient uptake in order to utilize additi...
Tumors reprogram pathways of nutrient acquisition and metabolism to meet their bioenergetic needs an...
The BTB/POZ family of proteins has been implicated in multiple biological processes, including tumou...
Transcriptional regulation by p53 is thought to play a role in its ability to suppress tumorigenesis...
Transcriptional regulation by p53 is thought to play a role in its ability to suppress tumorigenesis...
Kr-pok (kidney cancer-related POZ domain and Krüppel-like protein) is a new proto-oncogenic POZ-doma...
Objective: Cancer cells convert more glucose into lactate than healthy cells, what contributes to th...
[eng] In this thesis, tumor metabolic reprogramming has been exploited in order to propose new targe...
Several hallmarks of cancer cells are their display of metabolic changes and enhanced proliferation....
Alternative pathways of metabolism endowed cancer cells with metabolic stress. Inhibiting the relate...
Although aerobic glycolysis (the Warburg effect) is a hallmark of cancer, key questions, including w...
Identifying contexts in which cancer cells become addicted to specific nutrients is critical for dev...
Although aerobic glycolysis (the Warburg effect) is a hallmark of cancer, key questions, including w...
Glutamine can play a critical role in cellular growth in multiple cancers. Glutamine‐addicted cancer...
SummaryTumor cells have high-energetic and anabolic needs and are known to adapt their metabolism to...
Tumor cells display fundamental changes in metabolism and nutrient uptake in order to utilize additi...
Tumors reprogram pathways of nutrient acquisition and metabolism to meet their bioenergetic needs an...