BioGPS
  • Home
  • Help
  • Plugins
  • Datasets
  • Sign Up
  • Login
Examples: Gene Symbol(s), Gene Ontology, Splicing plugins, Melanoma datasets
advanced
Home › Dataset Library › Proteomic analysis of native hepatocyte nuclear factor-4{alpha} (HNF4{alpha}) isoforms, phosphorylation status, and interactive cofactors.

Dataset: Proteomic analysis of native hepatocyte nuclear factor-4{alpha} (HNF4{alpha}) isoforms, phosphorylation status, and interactive cofactors.

Hepatocyte nuclear factor-4α (HNF4α, NR2A1) is a nuclear receptor which has a critical role in hepatocyte differentiation and the...

Registered by ArrayExpress Uploader
View Dataset

Hepatocyte nuclear factor-4α (HNF4α, NR2A1) is a nuclear receptor which has a critical role in hepatocyte differentiation and the maintenance of homeostasis in the adult liver. However, a detailed understanding of native HNF4α in the steady state remains to be elucidated. Here we report the native HNF4α isoforms, phosphorylation status and complexes in the steady state, as shown by shotgun proteomics in HepG2 hepatocarcinoma cells. Shotgun proteomic analysis revealed the complexity of native HNF4α, including multiple phosphorylation sites and inter-isoform heterodimerization. The associating complexes identified by label-free semi-quantitative proteomic analysis include the following: the DNA-dependent protein kinase catalytic subunit, histone acetyltransferase complexes, mRNA splicing complex, other nuclear receptor coactivator complexes, the chromatin remodeling complex, and the nucleosome remodeling and histone deacetylation complex. Among the associating proteins, GRB10 interacting GYF protein 2 (GIGYF2, PERQ2) is a new candidate cofactor in metabolic regulation. Moreover, an unexpected heterodimerization of HNF4α and Hepatocyte nuclear factor-4γ was found. A biochemical and genome-wide analysis of transcriptional regulation showed that this heterodimerization activates gene transcription. The genes thus transcribed include the cell death-inducing DEF45-like effector b (CIDEB) gene, which is an important regulator of lipid metabolism in the liver. This suggests that the analysis of the distinctive stoichiometric balance of native HNF4α and its cofactor complexes described here is important for an accurate understanding of transcriptional regulation. This SuperSeries is composed of the SubSeries listed below. Refer to individual Series.

Species:
human

Samples:
9

Source:
E-GEOD-18990

PubMed:
21047794

Updated:
Dec.12, 2014

Registered:
Sep.15, 2014


Factors: (via ArrayExpress)
Sample CHIP ANTIBODY
GSM446264 not specified
GSM446264 not specified
GSM446264 not specified
GSM446264 not specified
GSM446264 not specified
GSM446264 not specified
GSM446264 not specified
GSM446264 not specified
GSM446264 not specified

Tags

  • cell
  • chromatin
  • genome
  • hepatocyte
  • histone
  • lipid
  • liver
  • nucleosome
  • protein

Other Formats

JSON    XML
  • About
  • Blog
  • Help
  • FAQ
  • Downloads
  • API
  • iPhone App
  • Email updates
© 2025 The Scripps Research Institute. All rights reserved. (ver 94eefe6 )
  • Terms of Use