International audienceACLY links energy metabolism provided by catabolic pathways to biosynthesis. ACLY, which has been found to be overexpressed in many cancers, converts citrate into acetyl-CoA and OAA. The first of these molecules supports protein acetylation, in particular that of histone, and de novo lipid synthesis, and the last one sustains the production of aspartate (required for nucleotide and polyamine synthesis) and the regeneration of NADPH,H+(consumed in redox reaction and biosynthesis). ACLY transcription is promoted by SREBP1, its activity is stabilized by acetylation and promoted by AKT phosphorylation (stimulated by growth factors and glucose abundance). ACLY plays a pivotal role in cancer metabolism through the potential ...
International audienceCitrate plays a central role in cancer cells’ metabolism and regulation. Deriv...
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...
International audienceACLY links energy metabolism provided by catabolic pathways to biosynthesis. A...
International audienceACLY links energy metabolism provided by catabolic pathways to biosynthesis. A...
ATP citrate lyase (ACLY) is a cytosolic homotetrameric enzyme that catalyzes the conversion of citra...
ATP citrate lyase (ACLY) is a cytosolic homotetrameric enzyme that catalyzes the conversion of citra...
Citrate is an intermediate in the Krebs cycle and an acetyl donor. Due to its ability to inhibit gl...
Citrate is an intermediate in the Krebs cycle and an acetyl donor. Due to its ability to inhibit gl...
ATP citrate lyase (ACLY) is a key enzyme in cellular metabolism, being the main source of acetyl-Coe...
Citrate is an intermediate in the Krebs cycle and an acetyl donor. Due to its ability to inhibit gl...
Citrate is an intermediate in the Krebs cycle and an acetyl donor. Due to its ability to inhibit gl...
International audienceCitrate plays a central role in cancer cells’ metabolism and regulation. Deriv...
Increased fatty acid synthesis is required to meet the demand for membrane expansion of rapidly grow...
International audienceCitrate plays a central role in cancer cells’ metabolism and regulation. Deriv...
International audienceCitrate plays a central role in cancer cells’ metabolism and regulation. Deriv...
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...
International audienceACLY links energy metabolism provided by catabolic pathways to biosynthesis. A...
International audienceACLY links energy metabolism provided by catabolic pathways to biosynthesis. A...
ATP citrate lyase (ACLY) is a cytosolic homotetrameric enzyme that catalyzes the conversion of citra...
ATP citrate lyase (ACLY) is a cytosolic homotetrameric enzyme that catalyzes the conversion of citra...
Citrate is an intermediate in the Krebs cycle and an acetyl donor. Due to its ability to inhibit gl...
Citrate is an intermediate in the Krebs cycle and an acetyl donor. Due to its ability to inhibit gl...
ATP citrate lyase (ACLY) is a key enzyme in cellular metabolism, being the main source of acetyl-Coe...
Citrate is an intermediate in the Krebs cycle and an acetyl donor. Due to its ability to inhibit gl...
Citrate is an intermediate in the Krebs cycle and an acetyl donor. Due to its ability to inhibit gl...
International audienceCitrate plays a central role in cancer cells’ metabolism and regulation. Deriv...
Increased fatty acid synthesis is required to meet the demand for membrane expansion of rapidly grow...
International audienceCitrate plays a central role in cancer cells’ metabolism and regulation. Deriv...
International audienceCitrate plays a central role in cancer cells’ metabolism and regulation. Deriv...
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...