The circadian clock controls the physiological function of tissues through the regulation of thousands of genes in a cell-type-specific manner. The core cellular circadian clock is a transcription–translation negative feedback loop, which can recruit epigenetic regulators to facilitate temporal control of gene expression. Histone methyltransferase, mixed lineage leukemia gene 3 (MLL3) was reported to be required for the maintenance of circadian oscillations in cultured cells. Here, we test the role of MLL3 in circadian organization in whole animals. Using mice expressing catalytically inactive MLL3, we show that MLL3 methyltransferase activity is in fact not required for circadian oscillations in vitro in a range of tissues, nor for the mai...
SummaryIn the core mammalian circadian negative feedback loop, the BMAL1-CLOCK complex activates the...
Summary: Transcriptional regulation of circadian rhythms is essential for lipid metabolic homeostasi...
The mammalian molecular circadian clock is composed of a transcriptional-translational feedback loop...
The circadian clock controls the physiological function of tissues through the regulation of thousan...
The circadian clock controls the physiological function of tissues through the regulation of thousan...
The circadian clock controls the transcription of hundred genes through specific chromatin remodelin...
The circadian clock controls the transcription of hundreds of genes through specific chromatin-remod...
The circadian clock controls the transcription of hundreds of genes through specific chromatin-remod...
AbstractWe have examined posttranslational regulation of clock proteins in mouse liver in vivo. The ...
We have examined posttranslational regulation of clock proteins in mouse liver in vivo. The mouse PE...
Many aspects of mammalian physiology display circadian--or once daily--rhythms, such as heart rate, ...
The circadian clock controls a large variety of neuronal, endocrine, behavioural and physiological r...
Epigenetic changes, such as DNA methylation or histone modification, can remodel the chromatin and r...
AbstractWe have examined posttranslational regulation of clock proteins in mouse liver in vivo. The ...
SummaryThe eukaryotic biological clock involves a negative transcription-translation feedback loop i...
SummaryIn the core mammalian circadian negative feedback loop, the BMAL1-CLOCK complex activates the...
Summary: Transcriptional regulation of circadian rhythms is essential for lipid metabolic homeostasi...
The mammalian molecular circadian clock is composed of a transcriptional-translational feedback loop...
The circadian clock controls the physiological function of tissues through the regulation of thousan...
The circadian clock controls the physiological function of tissues through the regulation of thousan...
The circadian clock controls the transcription of hundred genes through specific chromatin remodelin...
The circadian clock controls the transcription of hundreds of genes through specific chromatin-remod...
The circadian clock controls the transcription of hundreds of genes through specific chromatin-remod...
AbstractWe have examined posttranslational regulation of clock proteins in mouse liver in vivo. The ...
We have examined posttranslational regulation of clock proteins in mouse liver in vivo. The mouse PE...
Many aspects of mammalian physiology display circadian--or once daily--rhythms, such as heart rate, ...
The circadian clock controls a large variety of neuronal, endocrine, behavioural and physiological r...
Epigenetic changes, such as DNA methylation or histone modification, can remodel the chromatin and r...
AbstractWe have examined posttranslational regulation of clock proteins in mouse liver in vivo. The ...
SummaryThe eukaryotic biological clock involves a negative transcription-translation feedback loop i...
SummaryIn the core mammalian circadian negative feedback loop, the BMAL1-CLOCK complex activates the...
Summary: Transcriptional regulation of circadian rhythms is essential for lipid metabolic homeostasi...
The mammalian molecular circadian clock is composed of a transcriptional-translational feedback loop...