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Science'S STKE : Signal Transduction Knowledge Environment|June 15, 2007
In SYNC: the ins and outs of circadian oscillations in calciumTakato Imaizumi, Julian I Schroeder, Steve A KayAnnals of Medicine|September 29, 2018
Prospects for circadian treatment of mood disordersAnisja Hühne, David K Welsh, Dominic LandgrafPlos One|July 27, 2016
Cardiomyocyte Circadian Oscillations Are Cell-Autonomous, Amplified by β-Adrenergic Signaling, and Synchronized in Cardiac Ventricle TissueStephen Beesley, Takako Noguchi, David K WelshMethods in Molecular Biology (Clifton, N.J.)|February 13, 2016
Identification of Arabidopsis Transcriptional Regulators by Yeast One-Hybrid Screens Using a Transcription Factor ORFeomeGhislain Breton, Steve A Kay, José L Pruneda-PazNature Chemical Biology|September 19, 2007
Mammalian circadian signaling networks and therapeutic targetsAndrew C Liu, Warren G Lewis, Steve A KayMolecular and Cellular Neurosciences|May 4, 2002
A P element with a novel fusion of reporters identifies regular, a C2H2 zinc-finger gene downstream of the circadian clockAudra L Scully, Andrew C Zelhof, Steve A KayJournal of Visualized Experiments : Jove|August 9, 2017
A Modified Yeast-one Hybrid System for Heteromeric Protein Complex-DNA Interaction StudiesPrateek Tripathi, José L Pruneda-Paz, Steve A KayProceedings of the National Academy of Sciences of the United States of America|December 12, 2018
Nuclear receptor HNF4A transrepresses CLOCK:BMAL1 and modulates tissue-specific circadian networksMeng Qu, Tomas Duffy, Tsuyoshi Hirota, et al.Molecular Plant|February 19, 2020
Light Perception: A Matter of TimeSabrina E Sanchez, Matias L Rugnone, Steve A KayNature Communications|November 4, 2021
HNF4A defines tissue-specific circadian rhythms by beaconing BMAL1::CLOCK chromatin binding and shaping the rhythmic chromatin landscapeMeng Qu, Han Qu, Zhenyu Jia, et al.Pageof 21