Project description:Transcript data from liver receptor homolog-1 (LRH-1) WT and LRH-1 K289R livers from mice fasted for 24h followed by 6h refed. We used microarrays to detail the global program of gene expression underlying hepatic function under refed conditions.
Project description:Transcript data from LRH-1 hep+/+ and LRH-1 hep-/- livers from mice fed ad libitum and sacrificed at 7 am We used microarrays to detail the global programme of gene expression underlying hepatic function in ad libitum fed mice.
Project description:Transcript data from LRH-1 WT and LRH-1 K289R livers from mice fed ad libitum and sacrificed at 7 am We used microarrays to detail the global programme of gene expression underlying hepatic function in ad libitum fed mice.
Project description:Transcript data from LRH-1 hep+/+ and LRH-1 hep-/- livers from mice fed ad libitum and sacrificed at 7 am We used microarrays to detail the global programme of gene expression underlying hepatic function in ad libitum fed mice. 17-19-week-old mice were fed ad libitum, sacrificed at 7 am, and livers snap-frozen in liquid nitorgen for RNA extraction and hybridization on Affymetrix microarrays.
Project description:Transcript data from LRH-1 WT and LRH-1 K289R livers from mice fed ad libitum and sacrificed at 7 am We used microarrays to detail the global programme of gene expression underlying hepatic function in ad libitum fed mice. 17-19-week-old mice were fed ad libitum, sacrificed at 7 am, and livers snap-frozen in liquid nitorgen for RNA extraction and hybridization on Affymetrix microarrays.
Project description:Damaging mutations in LXRalpha are associated with hepatotoxicity. We generated mice homozygous for a dominant-negative mutation in LXRalpha (LXRalpha-W441R) and discovered they develop severe liver injury when fed a Western diet, though knockout mice develop little to no liver injury. To examine this in further detail, we performed Bulk RNA-seq of livers from LXRalpha knockout and LXRalpha p.W441R knockin mice after 8 weeks of western diet (TD.88137).
Project description:The analysis examined the effects of a global ERK1 and/or tamoxifen-inducible, hepatocyte-specific ERK2 knockout on the liver transcriptome. Transcriptomes from the livers with a ERK1/2 double knockout were compared to the livers of mice with an ERK1 or ERK2 knockout.