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Physiological function, disease expression and drug effects vary by time-of-day. Clock disruption in mice results in cardio-metabolic, immunological and neurological dysfunction; circadian misalignment using forced desynchrony increases cardiovascular risk factors in humans. Here we integrated data ...
2018-05-16 | MTBLS656 | MetaboLights
This SuperSeries is composed of the following subset Series: GSE29704: Two transcription factors are necessary for iron homeostasis in a salt-dwelling archaeon [gene expression data] GSE29705: Two transcription factors are necessary for iron homeostasis in a salt-dwelling archaeon [ChIP-chip data] R...
ORGANISM(S): Halobacterium sp. NRC-1 
The ATR-CHK1 signalling pathway responds to single strand DNA breaks and is required for cancer cells to survive the high levels of DNA replication stress and genomic instability resulting from the activity of oncogenes such as MYC. For this reason, inhibitors of CHK1 have great potential as anti-c...
ORGANISM(S): Mus musculus (Mouse) 
2022-10-19 | PXD026203 | Pride
Because iron toxicity and deficiency are equally life threatening, maintaining intracellular iron levels within a narrow optimal range is critical for nearly all known organisms. However, regulatory mechanisms that establish homeostasis are not well understood in organisms that dwell in environments...
ORGANISM(S): Halobacterium sp. NRC-1 
Because iron toxicity and deficiency are equally life threatening, maintaining intracellular iron levels within a narrow optimal range is critical for nearly all known organisms. However, regulatory mechanisms that establish homeostasis are not well understood in organisms that dwell in environments...
ORGANISM(S): Halobacterium sp. NRC-1 
Missense mutations in transcription factor GATA1 underlie several distinct forms of anemia and thrombocytopenia. Clinical severity depends on the site and type of substitution, and distinct substiutions of the same residue produce disparate phenotypes. To investigate the effect of GATA1 missense mut...
ORGANISM(S): Mus musculus 
Gene regulatory networks play an important role in coordinating biochemical fluxes through diverse metabolic pathways. The modulation of enzyme levels enables efficient utilization of limited resources as organisms dynamically acclimate to nutritional fluctuations in their environment. Here we hav...
ORGANISM(S): Halobacterium sp. NRC-1 
Gene regulatory networks play an important role in coordinating biochemical fluxes through diverse metabolic pathways. The modulation of enzyme levels enables efficient utilization of limited resources as organisms dynamically acclimate to nutritional fluctuations in their environment. Here we hav...
ORGANISM(S): Halobacterium sp. NRC-1 
Gene regulatory networks play an important role in coordinating biochemical fluxes through diverse metabolic pathways. The modulation of enzyme levels enables efficient utilization of limited resources as organisms dynamically acclimate to nutritional fluctuations in their environment. Here we hav...
ORGANISM(S): Halobacterium sp. NRC-1 
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