Showing results (51-60 of 82) with videos related to
Sort By:
Pageof 9
Cold Spring Harbor Symposia on Quantitative Biology|April 19, 2008
Regulation of circadian gene expression in liver by systemic signals and hepatocyte oscillatorsB Kornmann, O Schaad, H Reinke, et al.Cell|June 1, 1983
Two promoters of different strengths control the transcription of the mouse alpha-amylase gene Amy-1a in the parotid gland and the liverU Schibler, O Hagenbüchle, P K Wellauer, et al.Genes & Development|September 1, 1990
LAP, a novel member of the C/EBP gene family, encodes a liver-enriched transcriptional activator proteinP Descombes, M Chojkier, S Lichtsteiner, et al.Cell|October 6, 1995
A mammalian RNA polymerase II holoenzyme containing all components required for promoter-specific transcription initiationV Ossipow, J P Tassan, E A Nigg, et al.Gene|December 14, 1989
Rapid identification of DNA fragments containing promoters for RNA polymerase IIP H Shaw, R Walter-Sierra, F Tamone, et al.The EMBO Journal|January 10, 1998
The DBP gene is expressed according to a circadian rhythm in the suprachiasmatic nucleus and influences circadian behaviorL Lopez-Molina, F Conquet, M Dubois-Dauphin, et al.Cell|October 1, 1984
Termination of transcription in the mouse alpha-amylase gene Amy-2a occurs at multiple sites downstream of the polyadenylation siteO Hagenbüchle, P K Wellauer, D L Cribbs, et al.Genes & Development|March 25, 2000
CLOCK, an essential pacemaker component, controls expression of the circadian transcription factor DBPJ A Ripperger, L P Shearman, S M Reppert, et al.The Journal of Biological Chemistry|February 21, 1997
Spermatid-specific overexpression of the TATA-binding protein gene involves recruitment of two potent testis-specific promotersE E Schmidt, T Ohbayashi, Y Makino, et al.Nucleic Acids Research|May 29, 2001
Analysis of circadian liver gene expression by ADDER, a highly sensitive method for the display of differentially expressed mRNAsB Kornmann, N Preitner, D Rifat, et al.Pageof 9