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Molecular and Cellular Biology|May 2, 2003
Multiple mechanistically distinct functions of SAGA at the PHO5 promoterSlobodan Barbaric, Hans Reinke, Wolfram HörzJournal of Biological Rhythms|April 1, 2014
HSP90 affects the stability of BMAL1 and circadian gene expressionRebecca Schneider, René M Linka, Hans ReinkeNature Communications|October 9, 2021
Circa-SCOPE: high-throughput live single-cell imaging method for analysis of circadian clock resettingGal Manella, Dan Aizik, Rona Aviram, et al.Biochemistry|May 17, 2006
The crystal structure of NAD(P)H quinone oxidoreductase 1 in complex with its potent inhibitor dicoumarolGad Asher, Orly Dym, Peter Tsvetkov, et al.Plos Biology|December 30, 2021
Ultradian rhythms of AKT phosphorylation and gene expression emerge in the absence of the circadian clock components Per1 and Per2Rona Aviram, Vaishnavi Dandavate, Gal Manella, et al.Proceedings of the National Academy of Sciences of the United States of America|February 28, 2002
NQO1 stabilizes p53 through a distinct pathwayGad Asher, Joseph Lotem, Rachel Kama, et al.Molecular Cell|March 8, 2005
20S proteasomal degradation of ornithine decarboxylase is regulated by NQO1Gad Asher, Zippi Bercovich, Peter Tsvetkov, et al.Proceedings of the National Academy of Sciences of the United States of America|September 17, 2002
Mdm-2 and ubiquitin-independent p53 proteasomal degradation regulated by NQO1Gad Asher, Joseph Lotem, Leo Sachs, et al.Cell Metabolism|October 25, 2016
Rhythmic Oxygen Levels Reset Circadian Clocks through HIF1αYaarit Adamovich, Benjamin Ladeuix, Marina Golik, et al.Proceedings of the National Academy of Sciences of the United States of America|April 6, 2005
Inhibition of NAD(P)H:quinone oxidoreductase 1 activity and induction of p53 degradation by the natural phenolic compound curcuminPeter Tsvetkov, Gad Asher, Veronica Reiss, et al.Pageof 7