SummaryMechanisms of metabolic flexibility enable cells to survive under stressful conditions and can thwart therapeutic responses. Acetyl-coenzyme A (CoA) plays central roles in energy production, lipid metabolism, and epigenomic modifications. Here, we show that, upon genetic deletion of Acly, the gene coding for ATP-citrate lyase (ACLY), cells remain viable and proliferate, although at an impaired rate. In the absence of ACLY, cells upregulate ACSS2 and utilize exogenous acetate to provide acetyl-CoA for de novo lipogenesis (DNL) and histone acetylation. A physiological level of acetate is sufficient for cell viability and abundant acetyl-CoA production, although histone acetylation levels remain low in ACLY-deficient cells unless supple...
SummaryA functional genomics study revealed that the activity of acetyl-CoA synthetase 2 (ACSS2) con...
Differentiation of myeloid progenitor cells into macrophages is accompanied by increased PU.1 concen...
Increased fatty acid synthesis is required to meet the demand for membrane expansion of rapidly grow...
SummaryMechanisms of metabolic flexibility enable cells to survive under stressful conditions and ca...
Mechanisms of metabolic flexibility enable cells to survive under stressful conditions and can thwar...
Acetyl-CoA is a key metabolic intermediate with an important role in transcriptional regulation. The...
Acetyl-CoA is a key metabolic intermediate with an important role in transcriptional regulation. The...
Increased fatty acid synthesis is required to meet the demand for membrane expansion of rapidly grow...
Increased fatty acid synthesis is required to meet the demand for membrane expansion of rapidly grow...
Changes in environmental factors, diet, and genetics all influence metabolism, which is frequently d...
Changes in environmental factors, diet, and genetics all influence metabolism, which is frequently d...
Changes in environmental factors, diet, and genetics all influence metabolism, which is frequently d...
Changes in environmental factors, diet, and genetics all influence metabolism, which is frequently d...
The metabolite acetyl-CoA is necessary in almost all organic life. Cytosolic acetyl-CoA is crucial f...
A functional genomics study revealed that the activity of acetyl-CoA synthetase 2 (ACSS2) contribute...
SummaryA functional genomics study revealed that the activity of acetyl-CoA synthetase 2 (ACSS2) con...
Differentiation of myeloid progenitor cells into macrophages is accompanied by increased PU.1 concen...
Increased fatty acid synthesis is required to meet the demand for membrane expansion of rapidly grow...
SummaryMechanisms of metabolic flexibility enable cells to survive under stressful conditions and ca...
Mechanisms of metabolic flexibility enable cells to survive under stressful conditions and can thwar...
Acetyl-CoA is a key metabolic intermediate with an important role in transcriptional regulation. The...
Acetyl-CoA is a key metabolic intermediate with an important role in transcriptional regulation. The...
Increased fatty acid synthesis is required to meet the demand for membrane expansion of rapidly grow...
Increased fatty acid synthesis is required to meet the demand for membrane expansion of rapidly grow...
Changes in environmental factors, diet, and genetics all influence metabolism, which is frequently d...
Changes in environmental factors, diet, and genetics all influence metabolism, which is frequently d...
Changes in environmental factors, diet, and genetics all influence metabolism, which is frequently d...
Changes in environmental factors, diet, and genetics all influence metabolism, which is frequently d...
The metabolite acetyl-CoA is necessary in almost all organic life. Cytosolic acetyl-CoA is crucial f...
A functional genomics study revealed that the activity of acetyl-CoA synthetase 2 (ACSS2) contribute...
SummaryA functional genomics study revealed that the activity of acetyl-CoA synthetase 2 (ACSS2) con...
Differentiation of myeloid progenitor cells into macrophages is accompanied by increased PU.1 concen...
Increased fatty acid synthesis is required to meet the demand for membrane expansion of rapidly grow...