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NAT8L (N-Acetyltransferase 8-Like) Accelerates Lipid Turnover and Increases Energy Expenditure in Brown Adipocytes
- Source :
- Journal of Biological Chemistry. 288:36040-36051
- Publication Year :
- 2013
- Publisher :
- Elsevier BV, 2013.
-
Abstract
- NAT8L (N-acetyltransferase 8-like) catalyzes the formation of N-acetylaspartate (NAA) from acetyl-CoA and aspartate. In the brain, NAA delivers the acetate moiety for synthesis of acetyl-CoA that is further used for fatty acid generation. However, its function in other tissues remained elusive. Here, we show for the first time that Nat8l is highly expressed in adipose tissues and murine and human adipogenic cell lines and is localized in the mitochondria of brown adipocytes. Stable overexpression of Nat8l in immortalized brown adipogenic cells strongly increases glucose incorporation into neutral lipids, accompanied by increased lipolysis, indicating an accelerated lipid turnover. Additionally, mitochondrial mass and number as well as oxygen consumption are elevated upon Nat8l overexpression. Concordantly, expression levels of brown marker genes, such as Prdm16, Cidea, Pgc1α, Pparα, and particularly UCP1, are markedly elevated in these cells. Treatment with a PPARα antagonist indicates that the increase in UCP1 expression and oxygen consumption is PPARα-dependent. Nat8l knockdown in brown adipocytes has no impact on cellular triglyceride content, lipogenesis, or oxygen consumption, but lipolysis and brown marker gene expression are increased; the latter is also observed in BAT of Nat8l-KO mice. Interestingly, the expression of ATP-citrate lyase is increased in Nat8l-silenced adipocytes and BAT of Nat8l-KO mice, indicating a compensatory mechanism to sustain the acetyl-CoA pool once Nat8l levels are reduced. Taken together, our data show that Nat8l impacts on the brown adipogenic phenotype and suggests the existence of the NAT8L-driven NAA metabolism as a novel pathway to provide cytosolic acetyl-CoA for lipid synthesis in adipocytes.
- Subjects :
- Male
medicine.medical_specialty
Adipose tissue
Cell Cycle Proteins
Biology
Biochemistry
Gene Expression Regulation, Enzymologic
Ion Channels
Mitochondrial Proteins
Gene Knockout Techniques
Mice
chemistry.chemical_compound
Acetyl Coenzyme A
Acetyltransferases
Internal medicine
medicine
Animals
Humans
Lipolysis
PPAR alpha
Gene Silencing
Molecular Biology
Uncoupling Protein 1
PRDM16
Adipogenesis
Fatty acid metabolism
Lipid metabolism
Cell Biology
Lipid Metabolism
Phosphoproteins
Lipids
Thermogenin
Mitochondria
Up-Regulation
Mice, Inbred C57BL
Kinetics
Protein Transport
Adipocytes, Brown
Phenotype
Endocrinology
chemistry
Lipogenesis
Mitochondrial Size
Energy Metabolism
Microtubule-Associated Proteins
Protein Kinases
Subjects
Details
- ISSN :
- 00219258
- Volume :
- 288
- Database :
- OpenAIRE
- Journal :
- Journal of Biological Chemistry
- Accession number :
- edsair.doi.dedup.....4e40a34ce99cc10d5ad4764c9b7afcb8
- Full Text :
- https://doi.org/10.1074/jbc.m113.491324