Krützfeldt, Jan

Up a level
Export as [feed] RSS
Group by: Date | Item Type | Refereed | No Grouping

Journal Article

Krützfeldt, Jan; Christ, Emanuel R (2011). [Diagnosis and therapy of hyperthyreosis]. Therapeutische Umschau, 68(6), pp. 297-301. Bern: Huber 10.1024/0040-5930/a000168

Krützfeldt, Jan (2010). Regulation of wingless-type MMTV integration site family (WNT) signalling in pancreatic islets from wild-type and obese mice. Diabetologia, 53(1), pp. 123-7. Heidelberg: Springer 10.1007/s00125-009-1578-2

Krützfeldt, Jan; Kuwajima, Satoru; Braich, Ravi; Rajeev, Kallanthottathil G; Pena, John; Tuschl, Thomas; Manoharan, Muthiah; Stoffel, Markus (2007). Specificity, duplex degradation and subcellular localization of antagomirs. Nucleic acids research, 35(9), pp. 2885-92. London: Information Retrieval Ltd. 10.1093/nar/gkm024

Krützfeldt, Jan; Stoffel, Markus (2006). MicroRNAs: a new class of regulatory genes affecting metabolism. Cell metabolism, 4(1), pp. 9-12. Cambridge, Mass.: Cell Press 10.1016/j.cmet.2006.05.009

Krützfeldt, Jan; Poy, Matthew N; Stoffel, Markus (2006). Strategies to determine the biological function of microRNAs. Nature genetics, 38 Suppl, S14-S19. New York, N.Y.: Nature America 10.1038/ng1799

Akpinar, Pinar; Kuwajima, Satoru; Krützfeldt, Jan; Stoffel, Markus (2005). Tmem27: a cleaved and shed plasma membrane protein that stimulates pancreatic beta cell proliferation. Cell metabolism, 2(6), pp. 385-97. Cambridge, Mass.: Cell Press 10.1016/j.cmet.2005.11.001

Krützfeldt, Jan; Rajewsky, Nikolaus; Braich, Ravi; Rajeev, Kallanthottathil G; Tuschl, Thomas; Manoharan, Muthiah; Stoffel, Markus (2005). Silencing of microRNAs in vivo with 'antagomirs'. Nature, 438(7068), pp. 685-9. London: Macmillan Journals Ltd. 10.1038/nature04303

Poy, Matthew N; Eliasson, Lena; Krutzfeldt, Jan; Kuwajima, Satoru; Ma, Xiaosong; Macdonald, Patrick E; Pfeffer, Sébastien; Tuschl, Thomas; Rajewsky, Nikolaus; Rorsman, Patrik; Stoffel, Markus (2004). A pancreatic islet-specific microRNA regulates insulin secretion. Nature, 432(7014), pp. 226-30. London: Macmillan Journals Ltd. 10.1038/nature03076

Otani, Kenichi; Kulkarni, Rohit N; Baldwin, Aaron C; Krutzfeldt, Jan; Ueki, Kohjiro; Stoffel, Markus; Kahn, C Ronald; Polonsky, Kenneth S (2004). Reduced beta-cell mass and altered glucose sensing impair insulin-secretory function in betaIRKO mice. American journal of physiology - endocrinology and metabolism, 286(1), E41-9. Bethesda, Md.: American Physiological Society 10.1152/ajpendo.00533.2001

Kausch, C; Staiger, H; Staiger, K; Krützfeldt, J; Matthaei, S; Häring, H-U; Stumvoll, M (2003). Skeletal muscle cells from insulin-resistant (non-diabetic) individuals are susceptible to insulin desensitization by palmitate. Hormone and metabolic research, 35(10), pp. 570-6. Stuttgart: Thieme

Strack, Volker; Krützfeldt, Jan; Kellerer, Monika; Ullrich, Axel; Lammers, Reiner; Häring, Hans-Ulrich (2002). The Protein-tyrosine-phosphatase SHP2 is phosphorylated on serine residues 576 and 591 by protein kinase C isoforms alpha, beta 1, beta 2, and eta. Biochemistry, 41(2), pp. 603-8. Washington, D.C.: American Chemical Society 10.1021/bi011327v

Kausch, C; Krützfeldt, J; Witke, A; Rettig, A; Bachmann, O; Rett, K; Matthaei, S; Machicao, F; Häring, H U; Stumvoll, M (2001). Effects of troglitazone on cellular differentiation, insulin signaling, and glucose metabolism in cultured human skeletal muscle cells. Biochemical and biophysical research communications, 280(3), pp. 664-74. Orlando, Fla.: Academic Press 10.1006/bbrc.2000.4216

Krützfeldt, J; Raasch, W; Klein, H H (2000). Ramipril increases the protein level of skeletal muscle IRS-1 and alters protein tyrosine phosphatase activity in spontaneously hypertensive rats. Naunyn-Schmiedeberg's archives of pharmacology, 362(1), pp. 1-6. Berlin: Springer 10.1007/s002100000234

Krützfeldt, J; Kausch, C; Volk, A; Klein, H H; Rett, K; Häring, H U; Stumvoll, M (2000). Insulin signaling and action in cultured skeletal muscle cells from lean healthy humans with high and low insulin sensitivity. Diabetes, 49(6), pp. 992-8. Alexandria, Va.: American Diabetes Association 10.2337/diabetes.49.6.992

Bossenmaier, B; Strack, V; Stoyanov, B; Krützfeldt, J; Beck, A; Lehmann, R; Kellerer, M; Klein, H; Ullrich, A; Lammers, R; Häring, H U (2000). Serine residues 1177/78/82 of the insulin receptor are required for substrate phosphorylation but not autophosphorylation. Diabetes, 49(6), pp. 889-95. Alexandria, Va.: American Diabetes Association 10.2337/diabetes.49.6.889

Strack, V; Hennige, A M; Krützfeldt, J; Bossenmaier, B; Klein, H H; Kellerer, M; Lammers, R; Häring, H U (2000). Serine residues 994 and 1023/25 are important for insulin receptor kinase inhibition by protein kinase C isoforms beta2 and theta. Diabetologia, 43(4), pp. 443-9. Heidelberg: Springer 10.1007/s001250051327

Krützfeldt, J; Grünweller, A; Raasch, W; Drenckhan, M; Klein, H H (1999). Microtiter well assays for protein tyrosine phosphatase activities directed against phosphorylated insulin receptor or insulin receptor substrate-1. Analytical biochemistry, 271(1), pp. 97-9. San Diego, Calif.: Elsevier 10.1006/abio.1999.4115

Provide Feedback