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61.
Zeigerer, A.: NAFLD - A rising metabolic disease. Mol. Metab. 50:101274 (2021)
62.
Bartke, T. & Schneider, R.: You are what you eat-How nutrition and metabolism shape the genome through epigenetics. Mol. Metab. 38:100987 (2020)
63.
Bheda, P.: Metabolic transcriptional memory. Mol. Metab. 38:100955 (2020)
64.
Carrat, G.R.* et al.: The type 2 diabetes gene product STARD10 is a phosphoinositide-binding protein that controls insulin secretory granule biogenesis. Mol. Metab. 40:101015 (2020)
65.
Erener, S.: Diabetes, infection risk and COVID-19. Mol. Metab. 39:101044 (2020)
66.
Fritzen, A.M.* et al.: ApoA-1 improves glucose tolerance by increasing glucose uptake into heart and skeletal muscle independently of AMPKα2. Mol. Metab. 35:100949 (2020)
67.
Huang, S.S.Y.* et al.: Differential regulation of the immune system in a brain-liver-fats organ network during short-term fasting. Mol. Metab. 40:101038 (2020)
68.
Kaltenecker, D. et al.: STAT5 is required for lipid breakdown and beta-adrenergic responsiveness of brown adipose tissue. Mol. Metab. 40:101026 (2020)
69.
Kappel, B.A.* et al.: Cross-omics analysis revealed gut microbiome-related metabolic pathways underlying atherosclerosis development after antibiotics treatment. Mol. Metab. 36:100976 (2020)
70.
Klymenko, O.* et al.: Histone deacetylase 5 regulates interleukin 6 secretion and insulin action in skeletal muscle. Mol. Metab. 42:101062 (2020)
71.
Leiss, V.* et al.: Lack of Gαi2 proteins in adipocytes attenuates diet-induced obesity. Mol. Metab. 40:101029 (2020)
72.
Lindermayr, C. ; Rudolf, E.E. ; Durner, J. & Groth, M.: Interactions between metabolism and chromatin in plant models. Mol. Metab. 38:100951 (2020)
73.
Lindermayr, C. ; Rudolf, E.E. ; Durner, J. & Groth, M.: Corrigendum to “Interactions between metabolism and chromatin in plant models” [Mol Metab 38 (Aug 2020) 100951] Mol. Metab. 42:100951 (2020)
74.
Mziaut, H. et al.: MiR-132 controls pancreatic beta cell proliferation and survival through Pten/Akt/Foxo3 signaling. Mol. Metab. 31, 150-162 (2020)
75.
Okun, J.G.* et al.: Molecular regulation of urea cycle function by the liver glucocorticoid receptor (vol 4, pg 732, 2015). Mol. Metab. 41:101068 (2020)
76.
Prade, V.M. et al.: De novo discovery of metabolic heterogeneity with immunophenotype-guided imaging mass spectrometry. Mol. Metab. 36:100953 (2020)
77.
Riedel, E.O.* et al.: Functional changes of the liver in the absence of growth hormone (GH) action - Proteomic and metabolomic insights from a GH receptor deficient pig model. Mol. Metab. 36:100978 (2020)
78.
Schäfer, M et al.: Ataxin-10 is part of a cachexokine cocktail triggering cardiac metabolic dysfunction in cancer cachexia (vol 5, 67, 2015). Mol. Metab. 35:100970 (2020)
79.
Wittrisch, S.* et al.: NPY1R-targeted peptide-mediated delivery of a dual PPAR alpha/gamma agonist to adipocytes enhances adipogenesis and prevents diabetes progression. Mol. Metab. 31, 163-180 (2020)
80.
Backman, M.* et al.: Multi-omics insights into functional alterations of the liver in insulin-deficient diabetes mellitus. Mol. Metab. 26, 30-44 (2019)