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Bioscience Reports|May 8, 2010
HSG cells, a model in the submandibular clockYoshiaki Onishi
The Journal of Biological Chemistry|January 2, 2003
Interaction of NF-E2 in the human beta-globin locus control region before chromatin remodelingYoshiaki Onishi, Ryoiti Kiyama
Nucleic Acids Research|August 21, 2012
Rhythmic binding of Topoisomerase I impacts on the transcription of Bmal1 and circadian periodYoshiaki Onishi, Yasuhiro Kawano
Nucleic Acids Research|December 22, 2006
A novel E4BP4 element drives circadian expression of mPeriod2Tomoya Ohno, Yoshiaki Onishi, Norio Ishida
Hybridoma and Hybridomics|January 28, 2005
Preparation and characterization of an anti-DNA monoclonal antibody showing size selectivity toward DNA fragmentsYoshiaki Onishi, Megumi Kato, Yoshiro Hanyu
Biochemical and Biophysical Research Communications|February 6, 2007
The negative transcription factor E4BP4 is associated with circadian clock protein PERIOD2Tomoya Ohno, Yoshiaki Onishi, Norio Ishida
Bioscience Reports|May 11, 2017
Epigenetic regulation of the circadian clock: role of 5-aza-2'-deoxycytidineTatsunosuke Tomita, Ryoji Kurita, Yoshiaki Onishi
Current Topics in Medicinal Chemistry|May 31, 2024
Natural Compounds that Modulate Circadian RhythmsTatsunosuke Tomita, Renu Wadhwa, Yoshiaki Onishi
International Journal of Oral Science|November 6, 2019
β-Arrestin 1 (ARRB1) serves as a molecular marker of the peripheral circadian rhythmTatsunosuke Tomita, Taisuke Mori, Yoshiaki Onishi
Cellular Physiology and Biochemistry : International Journal of Experimental Cellular Physiology, Biochemistry, and Pharmacology|April 18, 2012
Lycorine, a candidate for the control of period length in mammalian cellsYoshiaki Onishi, Yasuhiro Kawano, Yoshimitsu Yamazaki
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