Circadian Clock Control by SUMOylation of BMAL1
- 26 August 2005
- journal article
- other
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 309 (5739) , 1390-1394
- https://doi.org/10.1126/science.1110689
Abstract
The molecular machinery that governs circadian rhythmicity is based on clock proteins organized in regulatory feedback loops. Although posttranslational modification of clock proteins is likely to finely control their circadian functions, only limited information is available to date. Here, we show that BMAL1, an essential transcription factor component of the clock mechanism, is SUMOylated on a highly conserved lysine residue (Lys259) in vivo. BMAL1 shows a circadian pattern of SUMOylation that parallels its activation in the mouse liver. SUMOylation of BMAL1 requires and is induced by CLOCK, the heterodimerization partner of BMAL1. Ectopic expression of a SUMO-deficient BMAL1 demonstrates that SUMOylation plays an important role in BMAL1 circadian expression and clock rhythmicity. This reveals an additional level of regulation within the core mechanism of the circadian clock.Keywords
This publication has 28 references indexed in Scilit:
- SUMO and ubiquitin in the nucleus: different functions, similar mechanisms?Genes & Development, 2004
- SUMOylation regulates nucleo-cytoplasmic shuttling of Elk-1The Journal of cell biology, 2004
- Post-translational modification by the small ubiquitin-related modifier SUMO has big effects on transcription factor activityCurrent Opinion in Genetics & Development, 2003
- Time zones: a comparative genetics of circadian clocksNature Reviews Genetics, 2001
- Sumo, ubiquitin's mysterious cousinNature Reviews Molecular Cell Biology, 2001
- GENETICS OF THE MAMMALIAN CIRCADIAN SYSTEM: Photic Entrainment, Circadian Pacemaker Mechanisms, and Posttranslational RegulationAnnual Review of Genetics, 2000
- A new protease required for cell-cycle progression in yeastNature, 1999
- Molecular Bases for Circadian ClocksCell, 1999
- SUMO-1 Modification of IκBα Inhibits NF-κB ActivationMolecular Cell, 1998
- SUMO-1 Modification and Its Role in Targeting the Ran GTPase-activating Protein, RanGAP1, to the Nuclear Pore ComplexThe Journal of cell biology, 1998