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Biotechnology and Applied Biochemistry|June 8, 2001
Running-buffer composition influences DNA-protein and protein-protein complexes detected by electrophoretic mobility-shift assay (EMSA)K Roder, M SchweizerBiochemical Society Transactions|October 25, 2007
Retinoic acid-mediated transcription and maturation of SREBP-1c regulates fatty acid synthase via cis-elements responsible for nutritional regulationK Roder, M SchweizerBioscience, Biotechnology, and Biochemistry|June 1, 2000
Dependence of rat spot14 promoter activity on NF-Y binding to the inverted CCAAT-element at -100K Roder, S S Wolf, M SchweizerMolecular Biotechnology|December 1, 1995
Determination of the molecular weight of DNA-binding proteins using UV-crosslinking and SDS-PAGES S Wolf, K Roder, M SchweizerArchives of Biochemistry and Biophysics|May 23, 2001
Role of Sp1 and Sp3 in the transcriptional regulation of the fatty acid synthase geneS S Wolf, K Roder, M SchweizerPhysiology & Behavior|July 1, 1996
Conspecific exploration in the T-maze: abnormalities in S100 beta transgenic miceJ K Roder, J C Roder, R GerlaiPhysiology & Behavior|August 1, 1996
Memory and the effect of cold shock in the water maze in S100 beta transgenic miceJ K Roder, J C Roder, R GerlaiEuropean Journal of Biochemistry|April 2, 1999
FIRE3 in the promoter of the rat fatty acid synthase (FAS) gene binds the ubiquitous transcription factors CBF and USF but does not mediate an insulin response in a rat hepatoma cell lineK Roder, S S Wolf, S Sickinger, et al.Biological Chemistry|September 4, 2001
The FIRE3-mediated sterol response of the FAS promoter requires NF-Y/CBF as a coactivatorS S Wolf, K Roder, S Sickinger, et al.Biochemical Society Transactions|November 21, 2002
Transcription factors acting on the promoter of the rat fatty acid synthase geneM Schweizer, K Roder, L Zhang, et al.Pageof 2