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61.
Stirm, L. et al.: miRNA signatures in maternal whole blood cells of women with gestational diabetes. Diabetologia 59, S47-S47 (2016)
62.
Willmann, S. et al.: The global gene expression profile of the secondary transition during pancreatic development. Mech. Dev. 139, 51-64 (2016)
63.
Wittmann, A. et al.: Sphingomyelin synthase 1 is essential for male fertility in mice. PLoS ONE 11:e0164298 (2016)
64.
Berti, L. et al.: Fibroblast growth factor 21 is elevated in metabolically unhealthy obesity and affects lipid deposition, adipogenesis, and adipokine secretion of human abdominal subcutaneous adipocytes. Mol. Metab. 4, 519-527 (2015)
65.
Bönisch, C. ; Huypens, P. & Beckers, J.: Vererbung von Merkmalen außerhalb der primären Sequenz der DNA. BioSpektrum 21, 20-21 (2015)
66.
Bönisch, C. et al.: Dexamethasone treatment alters insulin, leptin, and adiponectin levels in male mice as observed in DIO but does not lead to alterations of metabolic phenotypes in the offspring. Mamm. Genome 27, 17-28 (2015)
67.
Deng, T.* et al.: Functional compensation among HMGN variants modulates the DNase I hypersensitive sites at enhancers. Genome Res. 25, 1295-1308 (2015)
68.
Fukunaga-Kalabis, M.* et al.: MSX1-induced neural crest-like reprograming promotes melanoma progression. J. Invest. Dermatol. 135, S111 (2015)
69.
Fukusumi, Y. et al.: Dickkopf3 promotes the differentiation of a rostrolateral midbrain dopaminergic neuronal subset in vivo and from pluripotent stem cells in vitro in the mouse. J. Neurosci. 35, 13385-13401 (2015)
70.
Götz, M. ; Sirko, S. ; Beckers, J. & Irmler, M.: Reactive astrocytes as neural stem or progenitor cells: In vivo lineage, In vitro potential, and genome-wide expression analysis. Glia 63, 1452-1468 (2015)
71.
Halama, A. et al.: Metabolic switch during adipogenesis: From branched chain amino acid catabolism to lipid synthesis. Arch. Biochem. Biophys. 589, 93-107 (2015)
72.
Hansen, J.S.* et al.: Type 2 diabetes alters metabolic and transcriptional signatures of glucose and amino acid metabolism during exercise and recovery. Diabetologia 58, 1845-1854 (2015)
73.
Horsch, M. et al.: Cox4i2, Ifit2, and Prdm11 mutant mice: Effective selection of genes predisposing to an altered airway inflammatory response from a large compendium of mutant mouse lines. PLoS ONE 10:e0134503 (2015)
74.
Keeney, J.G.* et al.: Generation of mice lacking DUF1220 protein domains: Effects on fecundity and hyperactivity. Mamm. Genome 26, 33-42 (2015)
75.
Kessler, T.* et al.: ADAMTS-7 inhibits re-endothelialization of injured arteries and promotes vascular remodeling via cleavage of thrombospondin-1. Circulation 131, 1191-1201 (2015)
76.
Keyhani-Nejad, F.* et al.: Nutritional strategy to prevent fatty liver and insulin resistance independent from obesity by reducing glucose-dependent insulinotropic polypeptide responses in mice. Diabetologia 58, 374-383 (2015)
77.
Lagouge, M.* et al.: SLIRP regulates the rate of mitochondrial protein synthesis and protects LRPPRC from degradation. PLoS Genet. 11:e1005423 (2015)
78.
Linnemann, J. et al.: Quantification of regenerative potential in primary human mammary epithelial cells. Development 142, 3239-3251 (2015)
79.
Masserdotti, G. et al.: Transcriptional mechanisms of proneural factors and REST in regulating neuronal reprogramming of astrocytes. Cell Stem Cell 17, 74-88 (2015)
80.
Neschen, S. et al.: Metformin supports the antidiabetic effect of a sodium glucose cotransporter 2 inhibitor by suppressing endogenous glucose production in diabetic mice. Diabetes 64, 284-290 (2015)