Paradoxical activation of SREBP1c and de novo lipogenesis by hepatocyte-selective ACLY depletion in obese mice.
Yenilmez, B.; Kelly, M.; Zhang, G.-F.; Wetoska, N.; Ilkayeva, O.; Min, K.; Rowland, L.; DiMarzio, C.; He, W.; Raymond, N.; Lifshitz, L.; Pan, M.; Han, X.; Xie, J.; Friedline, R. H.; Kim, J. K.; Gao, G.; Herman, M. A.; Newgard, C.; Czech, M.
Show abstract
Hepatic steatosis associated with high fat diets, obesity and type 2 diabetes is thought to be the major driver of severe liver inflammation, fibrosis, and cirrhosis. Cytosolic acetyl-coenzyme A (AcCoA), a central metabolite and substrate for de novo lipogenesis (DNL), is produced from citrate by ATP-citrate lyase (ACLY) and from acetate through AcCoA synthase short chain family member 2 (ACSS2). However, the relative contributions of these two enzymes to hepatic AcCoA pools and DNL rates in response to high fat feeding is unknown. We report here that hepatocyte-selective depletion of either ACSS2 or ACLY caused similar 50% decreases in liver AcCoA levels in obese mice, showing that both pathways contribute to generation of this DNL substrate. Unexpectedly however, the hepatocyte ACLY depletion in obese mice paradoxically increased total DNL flux measured by D2O incorporation into palmitate, while in contrast ACSS2 depletion had no effect. The increase in liver DNL upon ACLY depletion was associated with increased expression of nuclear sterol regulatory element-binding protein 1c (SREBP1c) and of its target DNL enzymes. This upregulated DNL enzyme expression explains the increased rate of palmitate synthesis in ACLY depleted livers. Furthermore, this increased flux through DNL may also contribute to the observed depletion of AcCoA levels due to its increased conversion to Malonyl CoA (MalCoA) and palmitate. Together, these data indicate that in HFD fed obese mice, hepatic DNL is not limited by its immediate substrates AcCoA or MalCoA, but rather by activities of DNL enzymes.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Loss of Carnitine Palmitoyltransferase 1a Reduces Docosahexaenoic Acid-Containing Phospholipids and Drives Sexually Dimorphic Liver Disease in Mice 98%
- Dietary sulfur amino acid restriction improves glucose homeostasis through hepatic de novo serine synthesis 97%
- Hepatic Mitochondrial Remodeling is Mechanistically Linked to Insulin Resistance in Nonalcoholic Fatty Liver Disease 96%
Similar papers in this journal
- ANGPTL4 from adipose, but not liver, is responsible for regulating plasma triglyceride partitioning 97%
- Loss of hepatic phosphoenolpyruvate carboxykinase 1 dysregulates metabolic responses to acute exercise but enhances adaptations to exercise training in mice 96%
- Metabolomic and transcriptomic remodeling of bone marrow myeloid cells in response to maternal obesity 96%
Similar papers in this journal
- ABHD4 regulates adipocyte differentiation in vitro but does not affect adipose tissue lipid metabolism in mice 96%
- Hepatocytes deficient in nuclear envelope protein lamina-associated polypeptide 1 are an ideal mammalian system to study intranuclear lipid droplets 95%
- Hepatic Deletion of X-box Binding Protein 1 in Farnesoid X Receptor Null Mice Leads to Enhanced Liver Injury 94%
Similar papers in this journal
Similar papers in this journal
- Creld2 function during unfolded protein response is essential for liver metabolism homeostasis 95%
- Resolvin E1 derived from eicosapentaenoic acid prevents hyperinsulinemia and hyperglycemia in a host genetic manner 95%
- Odd-chain dicarboxylic acid feeding recapitulates the biochemical phenotype of glutaric aciduria type-1 in mice 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.