Circadian clocks enable organisms to anticipate daily changes in the environment and coordinate temporal rhythms in physiology and behavior with the 24-h day-night cycle. The robust cycling of circadian gene expression is critical for proper timekeeping, and is regulated by transcription factor binding, RNA polymerase II (RNAPII) recruitment and elongation, and post-transcriptional mechanisms. Recently, it has become clear that dynamic alterations in chromatin landscape at the level of histone posttranslational modification and nucleosome density facilitate rhythms in transcription factor recruitment and RNAPII activity, and are essential for progression through activating and repressive phases of circadian transcription. Here, we discuss t...
The search for new genes involved in circadian rhythmicity in Drosophila melanogaster led to the ide...
Circadian-regulated gene expression is predominantly controlled by a transcriptional negative feedba...
Rhythmic histone acetylation underlies the oscillating expression of clock genes in the mammalian ci...
Circadian clocks enable organisms to anticipate daily changes in the environment and coordinate temp...
Daily rhythms in gene expression play a critical role in the progression of circadian clocks, and ar...
<div><p>Daily rhythms in gene expression play a critical role in the progression of circadian clocks...
Circadian clock and chromatin-remodeling complexes are tightly intertwined systems that regulate rhy...
Daily rhythms in gene expression play a critical role in the progression of circadian clocks, and ar...
Circadian clocks enable organisms to anticipate predictable environmental changes over 24-hour day-n...
Like most other organisms, Drosophila display a daily or circadian pattern of physiological outputs ...
<p><i>(A)</i> Western blots showing results of reciprocal co-IP assays to detect interaction of BRM ...
Drosophila is a powerful model to understand the mechanisms underlying circadian rhythms. The Drosop...
Virtually all organisms exhibit rhythmic behaviors that occur with a period of approximately twenty ...
Circadian clocks in eukaryotes rely on transcriptional feedback loops, in which clock genes repress ...
The mammalian circadian clock involves a transcriptional feedback loop in which CLOCK and BMAL1 acti...
The search for new genes involved in circadian rhythmicity in Drosophila melanogaster led to the ide...
Circadian-regulated gene expression is predominantly controlled by a transcriptional negative feedba...
Rhythmic histone acetylation underlies the oscillating expression of clock genes in the mammalian ci...
Circadian clocks enable organisms to anticipate daily changes in the environment and coordinate temp...
Daily rhythms in gene expression play a critical role in the progression of circadian clocks, and ar...
<div><p>Daily rhythms in gene expression play a critical role in the progression of circadian clocks...
Circadian clock and chromatin-remodeling complexes are tightly intertwined systems that regulate rhy...
Daily rhythms in gene expression play a critical role in the progression of circadian clocks, and ar...
Circadian clocks enable organisms to anticipate predictable environmental changes over 24-hour day-n...
Like most other organisms, Drosophila display a daily or circadian pattern of physiological outputs ...
<p><i>(A)</i> Western blots showing results of reciprocal co-IP assays to detect interaction of BRM ...
Drosophila is a powerful model to understand the mechanisms underlying circadian rhythms. The Drosop...
Virtually all organisms exhibit rhythmic behaviors that occur with a period of approximately twenty ...
Circadian clocks in eukaryotes rely on transcriptional feedback loops, in which clock genes repress ...
The mammalian circadian clock involves a transcriptional feedback loop in which CLOCK and BMAL1 acti...
The search for new genes involved in circadian rhythmicity in Drosophila melanogaster led to the ide...
Circadian-regulated gene expression is predominantly controlled by a transcriptional negative feedba...
Rhythmic histone acetylation underlies the oscillating expression of clock genes in the mammalian ci...