Markus Stoffel
Markus Stoffel
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Zitiert von
Zitiert von
Combinatorial microRNA target predictions
A Krek, D Grün, MN Poy, R Wolf, L Rosenberg, EJ Epstein, ...
Nature genetics 37 (5), 495-500, 2005
Silencing of microRNAs in vivo with ‘antagomirs’
J Krützfeldt, N Rajewsky, R Braich, KG Rajeev, T Tuschl, M Manoharan, ...
nature 438 (7068), 685-689, 2005
A pancreatic islet-specific microRNA regulates insulin secretion
MN Poy, L Eliasson, J Krutzfeldt, S Kuwajima, X Ma, PE Macdonald, ...
Nature 432 (7014), 226-230, 2004
Leptin activation of Stat3 in the hypothalamus of wild–type and ob/ob mice but not db/db mice
C Vaisse, JL Halaas, CM Horvath, JE Darnell Jr, M Stoffel, JM Friedman
Nature genetics 14 (1), 95-97, 1996
Mechanisms and optimization of in vivo delivery of lipophilic siRNAs
C Wolfrum, S Shi, KN Jayaprakash, M Jayaraman, G Wang, RK Pandey, ...
Nature biotechnology 25 (10), 1149-1157, 2007
MicroRNAs 103 and 107 regulate insulin sensitivity
M Trajkovski, J Hausser, J Soutschek, B Bhat, A Akin, M Zavolan, ...
Nature 474 (7353), 649-653, 2011
Familial hyperglycemia due to mutations in glucokinase--definition of a subtype of diabetes mellitus
P Froguel, H Zouali, N Vionnet, G Velho, M Vaxillaire, F Sun, S Lesage, ...
New England Journal of Medicine 328 (10), 697-702, 1993
A skin microRNA promotes differentiation by repressing ‘stemness’
R Yi, MN Poy, M Stoffel, E Fuchs
Nature 452 (7184), 225-229, 2008
miR-375 maintains normal pancreatic α-and β-cell mass
MN Poy, J Hausser, M Trajkovski, M Braun, S Collins, P Rorsman, ...
Proceedings of the National Academy of Sciences 106 (14), 5813-5818, 2009
Nonsense mutation in the glucokinase gene causes early-onset non-insulin-dependent diabetes mellitus
N Vionnet, M Stoffel, J Takeda, K Yasuda, GI Bell, H Zouali, S Lesage, ...
Nature 356 (6371), 721-722, 1992
G protein-coupled inwardly rectifying K+ channels (GIRKs) mediate postsynaptic but not presynaptic transmitter actions in hippocampal neurons
C Lüscher, LY Jan, M Stoffel, RC Malenka, RA Nicoll
Neuron 19 (3), 687-695, 1997
A Family with Severe Insulin Resistance and Diabetes Due to a Mutation in AKT2
S George, JJ Rochford, C Wolfrum, SL Gray, S Schinner, JC Wilson, ...
Science 304 (5675), 1325-1328, 2004
Assessing the ceRNA hypothesis with quantitative measurements of miRNA and target abundance
R Denzler, V Agarwal, J Stefano, DP Bartel, M Stoffel
Molecular cell 54 (5), 766-776, 2014
Specificity, duplex degradation and subcellular localization of antagomirs
J Krützfeldt, S Kuwajima, R Braich, KG Rajeev, J Pena, T Tuschl, ...
Nucleic acids research 35 (9), 2885-2892, 2007
Whole population, genome-wide mapping of hidden relatedness
A Gusev, JK Lowe, M Stoffel, MJ Daly, D Altshuler, JL Breslow, ...
Genome research 19 (2), 318-326, 2009
Foxa2 regulates lipid metabolism and ketogenesis in the liver during fasting and in diabetes
C Wolfrum, E Asilmaz, E Luca, JM Friedman, M Stoffel
Nature 432 (7020), 1027-1032, 2004
The maturity-onset diabetes of the young (MODY1) transcription factor HNF4α regulates expression of genes required for glucose transport and metabolism
M Stoffel, SA Duncan
Proceedings of the National Academy of Sciences 94 (24), 13209-13214, 1997
Hepatocyte nuclear factor-1α is an essential regulator of bile acid and plasma cholesterol metabolism
DQ Shih, M Bussen, E Sehayek, M Ananthanarayanan, BL Shneider, ...
Nature genetics 27 (4), 375-382, 2001
MicroRNAs: a new class of regulatory genes affecting metabolism
J Krützfeldt, M Stoffel
Cell metabolism 4 (1), 9-12, 2006
β-cell–specific deletion of the Igf1 receptor leads to hyperinsulinemia and glucose intolerance but does not alter β-cell mass
RN Kulkarni, M Holzenberger, DQ Shih, U Ozcan, M Stoffel, ...
Nature genetics 31 (1), 111-115, 2002
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