The activation function-1 of hepatocyte nuclear factor-4 is an acidic activator that mediates interactions through bulky hydrophobic residues
- 1 June 2001
- journal article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 356 (2) , 635-42
- https://doi.org/10.1042/0264-6021:3560635
Abstract
The hepatocyte nuclear factor-4 (HNF-4) contains two transcription activation domains. One domain, activation function-1 (AF-1), consists of the extreme N-terminal 24 amino acids and functions as a constitutive autonomous activator of transcription. This short transactivator belongs to the class of acidic activators, and it is predicted to adopt an amphipathic alpha-helical structure. Transcriptional analysis of sequential point mutations of the negatively charged residues (Asp and Glu) revealed a stepwise decrease in activity, while mutation of all acidic residues resulted in complete loss of transcriptional activity. Mutations of aromatic and hydrophobic amino acids surrounding the negatively charged residues had a much more profound effect than mutations of acidic amino acids, since even a single mutation of these residues resulted in a dramatic decrease in transactivation, thus demonstrating the importance of hydrophobic residues in AF-1 activity. Like other acidic activators, the AF-1 of HNF-4 binds the transcription factor IIB and the TATA-binding protein directly in vitro. In addition, the cAMP-response-element-binding-protein, a transcriptional adapter involved in the transactivation of a plethora of transcription factors, interacts with the AF-1 of HNF-4 and co-operates in the process of transactivation by HNF-4. The different protein targets of AF-1 suggest that the AF-1 of HNF-4 may be involved in recruiting both general transcription factors and chromatin remodelling proteins during activation of gene expression.Keywords
This publication has 40 references indexed in Scilit:
- Structure and specificity of nuclear receptor–coactivator interactionsGenes & Development, 1998
- Transactivation of the Human Apolipoprotein CII Promoter by Orphan and Ligand-dependent Nuclear ReceptorsPublished by Elsevier ,1998
- Recruitment of CBP/p300 by the IFNβ Enhanceosome Is Required for Synergistic Activation of TranscriptionMolecular Cell, 1998
- Distal Apolipoprotein C-III Regulatory Elements F to J Act as a General Modular Enhancer for Proximal Promoters That Contain Hormone Response ElementsArteriosclerosis, Thrombosis, and Vascular Biology, 1997
- Mutations in the hepatocyte nuclear factor-4α gene in maturity-onset diabetes of the young (MODY1)Nature, 1996
- Several hydrophobic amino acids in the p53 amino-terminal domain are required for transcriptional activation, binding to mdm-2 and the adenovirus 5 E1B 55-kD protein.Genes & Development, 1994
- How eukaryotic transcriptional activators workNature, 1988
- Structural and functional characterization of the short acidic transcriptional activation region of yeast GCN4 proteinNature, 1988
- Acid blobs and negative noodlesNature, 1988
- Analysis of the accuracy and implications of simple methods for predicting the secondary structure of globular proteinsJournal of Molecular Biology, 1978