Natural killer (NK) cells are lymphocytes with important anti-tumour functions. Cytokine activation of NK cell glycolysis and oxidative phosphorylation (OXPHOS) are essential for robust NK cell responses. However, the mechanisms leading to this metabolic phenotype are unclear. Here we show that the transcription factor cMyc is essential for IL-2/IL-12-induced metabolic and functional responses in mice. cMyc protein levels are acutely regulated by amino acids; cMyc protein is lost rapidly when glutamine is withdrawn or when system L-amino acid transport is blocked. We identify SLC7A5 as the predominant system L-amino acid transporter in activated NK cells. Unlike other lymphocyte subsets, glutaminolysis and the tricarboxylic acid cycle do no...
Natural killer (NK) cell education is an essential developmental process for NK cell effector functi...
Cellular metabolism and signaling pathways are the key regulators to determine T cell fate, survival...
The study of the metabolism of the immune system is a rapidly advancing field. It is highly dynamic...
Natural killer (NK) cells are lymphocytes with important anti-tumour functions. Cytokine activation ...
It is now known that metabolism, in addition to providing energy and biochemical building blocks, al...
NK cell activation has been shown to be metabolically regulated in vitro; however, the role of metab...
Natural Killer (NK) cells undergo a distinct metabolic response following cytokine stimulation, whic...
Cellular metabolism is dynamically regulated in Natural Killer (NK) cells and strongly influences th...
Natural Killer (NK) cells are important anti-cancer innate immune cells. They are essential for canc...
Natural killer T (NKT) cells operate distinctly different metabolic programming from CD4 T cells, in...
NK cells expressing self-inhibitory receptors display increased functionality compared to NK cells l...
Natural Killer (NK) cells have an important role in immune responses to viruses and tumours. Integr...
Reprogramming cellular metabolism helps support T cell growth and effector function upon activation....
Leukemic cells proliferate faster than non-transformed counterparts. This requires them to change th...
Group 2 innate lymphoid cells (ILC2) are innate counterparts of T helper 2 (Th2) cells that maintain...
Natural killer (NK) cell education is an essential developmental process for NK cell effector functi...
Cellular metabolism and signaling pathways are the key regulators to determine T cell fate, survival...
The study of the metabolism of the immune system is a rapidly advancing field. It is highly dynamic...
Natural killer (NK) cells are lymphocytes with important anti-tumour functions. Cytokine activation ...
It is now known that metabolism, in addition to providing energy and biochemical building blocks, al...
NK cell activation has been shown to be metabolically regulated in vitro; however, the role of metab...
Natural Killer (NK) cells undergo a distinct metabolic response following cytokine stimulation, whic...
Cellular metabolism is dynamically regulated in Natural Killer (NK) cells and strongly influences th...
Natural Killer (NK) cells are important anti-cancer innate immune cells. They are essential for canc...
Natural killer T (NKT) cells operate distinctly different metabolic programming from CD4 T cells, in...
NK cells expressing self-inhibitory receptors display increased functionality compared to NK cells l...
Natural Killer (NK) cells have an important role in immune responses to viruses and tumours. Integr...
Reprogramming cellular metabolism helps support T cell growth and effector function upon activation....
Leukemic cells proliferate faster than non-transformed counterparts. This requires them to change th...
Group 2 innate lymphoid cells (ILC2) are innate counterparts of T helper 2 (Th2) cells that maintain...
Natural killer (NK) cell education is an essential developmental process for NK cell effector functi...
Cellular metabolism and signaling pathways are the key regulators to determine T cell fate, survival...
The study of the metabolism of the immune system is a rapidly advancing field. It is highly dynamic...