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Background & Aims: HNF4α is an important transcriptional regulator of hepatocyte and pancreatic function. Hnf4α deletion is embryonically lethal with severe defects in visceral endoderm formation, liver maturation and colon development. However, the precise role of this transcription factor in ma...
ORGANISM(S): Mus musculus 
HNF4α is a nuclear receptor regulating the transcription of genes involved mainly in development, cell differentiation and metabolism. Opposite functions for the two classes of P1 and P2 isoforms of HNF4α have recently been highlighted. These classes include 12 variants of HNF4α that can be expresse...
ORGANISM(S): Homo sapiens (Human) 
2020-04-17 | PXD012146 | Pride
Organoids have the potential to bridge 3D cell culture to tissue physiology by providing a model resembling in vivo organs. We propose here a SILAC method to measure protein expression changes in intestinal organoids under different experimental conditions. With the combined use of quantitative mass...
ORGANISM(S): Mus musculus (Mouse) 
2017-09-05 | PXD004607 | Pride
Studying cell differentiation and transformation allows a better understanding of the mechanisms involved in the initiation and the evolution of cancer. The role of proteins which participate in these processes is dependent on their location within the cell. Determining the subcellular localization ...
ORGANISM(S): Homo sapiens (Human) 
2017-04-19 | PXD004879 | Pride
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