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1. Deficiency of malate-aspartate shuttle component SLC25A12 induces pulmonary metastasis

2. Subcellular metabolic pathway kinetics are revealed by correcting for artifactual post harvest metabolism

3. Maintaining cytosolic aspartate levels is a major function of the TCA cycle in proliferating cells

4. N-Acetylaspartate Metabolism Outside the Brain: Lipogenesis, Histone Acetylation, and Cancer

5. Adipose triglyceride lipase is a TG hydrolase of the small intestine and regulates intestinal PPARα signaling

6. N ‐acetylaspartate availability is essential for juvenile survival on fat‐free diet and determines metabolic health

8. Oxidized phospholipids on alkyl-amide scaffold demonstrate anti-endotoxin and endothelial barrier-protective properties

9. Quantitative Sub-Cellular Acyl-Coa Analysis Reveals Distinct Nuclear Regulation

10. Quantitative sub-cellular acyl-CoA analysis reveals distinct nuclear regulation

11. N-acetylaspartate improves cell survival when glucose is limiting

12. Quantitative subcellular acyl-CoA analysis reveals distinct nuclear metabolism and isoleucine-dependent histone propionylation

13. Loss of malate-aspartate shuttle component SLC25A12 induces pulmonary metastasis

14. Subcellular metabolic pathway kinetics are revealed by correcting for artifactual post harvest metabolism

15. Cytosolic Aspartate Availability Determines Cell Survival When Glutamine Is Limiting

16. Maintaining cytosolic aspartate levels is a major function of the TCA cycle in proliferating cells

17. N-acetylaspartate pathway is nutrient responsive and coordinates lipid and energy metabolism in brown adipocytes

18. RalA controls glucose homeostasis by regulating glucose uptake in brown fat

19. Loss of ABHD15 Impairs the Anti-lipolytic Action of Insulin by Altering PDE3B Stability and Contributes to Insulin Resistance

20. NAT8L (N-Acetyltransferase 8-Like) Accelerates Lipid Turnover and Increases Energy Expenditure in Brown Adipocytes

21. APMAP interacts with lysyl oxidase-like proteins, and disruption of

22. Critical role of the peroxisomal protein PEX16 in white adipocyte development and lipid homeostasis

23. Liver p53 is stabilized upon starvation and required for amino acid catabolism and gluconeogenesis

24. MicroRNA-30c promotes human adipocyte differentiation and co-repressesPAI-1andALK2

25. Sequential Synthesis and Methylation of Phosphatidylethanolamine Promote Lipid Droplet Biosynthesis and Stability in Tissue Culture and in Vivo

26. Arxes: retrotransposed genes required for adipogenesis

27. Lysosomal acid lipase regulates fatty acid channeling in brown adipose tissue to maintain thermogenesis

28. Characterization of distinct subpopulations of hepatic macrophages in HFD/obese mice

29. Molecular Aspects of Adipoepithelial Transdifferentiation in Mouse Mammary Gland

30. A Gpr120-selective agonist improves insulin resistance and chronic inflammation in obese mice

31. Early structural and metabolic cardiac remodelling in response to inducible adipose triglyceride lipase ablation

32. Enzymatic synthesis of antibody-human serum albumin conjugate for targeted drug delivery using tyrosinase from Agaricus bisporus

33. Nr4a1 is required for fasting-induced down-regulation of Pparγ2 in white adipose tissue

34. Transcriptional regulatory program in wild-type and retinoblastoma gene-deficient mouse embryonic fibroblasts during adipocyte differentiation

35. Reconstruction of gene association network reveals a transmembrane protein required for adipogenesis and targeted by PPARgamma

37. Enzyme catalyzed cross-linking of monoclonal antibody (mAb) and human serum albumin (HSA) for the production of targeted drug delivery devices

38. Metabolite and transcriptome analysis during fasting suggest a role for the p53-Ddit4 axis in major metabolic tissues

39. α/β-hydrolase domain containing protein 15 (ABHD15)--an adipogenic protein protecting from apoptosis.

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