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Hypoxia-inducible factor (HIF) asparagine hydroxylase is identical to factor inhibiting HIF (FIH) and is related to the cupin structural family.
- Source :
-
The Journal of biological chemistry [J Biol Chem] 2002 Jul 19; Vol. 277 (29), pp. 26351-5. Date of Electronic Publication: 2002 May 31. - Publication Year :
- 2002
-
Abstract
- Activity of the hypoxia-inducible factor (HIF) complex is controlled by oxygen-dependent hydroxylation of prolyl and asparaginyl residues. Hydroxylation of specific prolyl residues by 2-oxoglutarate (2-OG)-dependent oxygenases mediates ubiquitinylation and proteasomal destruction of HIF-alpha. Hydroxylation of an asparagine residue in the C-terminal transactivation domain (CAD) of HIF-alpha abrogates interaction with p300, preventing transcriptional activation. Yeast two-hybrid assays recently identified factor inhibiting HIF (FIH) as a protein that associates with the CAD region of HIF-alpha. Since FIH contains certain motifs present in iron- and 2-OG-dependent oxygenases we investigated whether FIH was the HIF asparaginyl hydroxylase. Assays using recombinant FIH and HIF-alpha fragments revealed that FIH is the enzyme that hydroxylates the CAD asparagine residue, that the activity is directly inhibited by cobalt(II) and limited by hypoxia, and that the oxygen in the alcohol of the hydroxyasparagine residue is directly derived from dioxygen. Sequence analyses involving FIH link the 2-OG oxygenases with members of the cupin superfamily, including Zn(II)-utilizing phosphomannose isomerase, revealing structural and evolutionary links between these metal-binding proteins that share common motifs.
- Subjects :
- Amino Acid Sequence
Biological Evolution
Cloning, Molecular
Cobalt pharmacology
Humans
Hydroxylation
Hypoxia metabolism
Hypoxia-Inducible Factor 1
Hypoxia-Inducible Factor 1, alpha Subunit
Ketoglutaric Acids metabolism
Mannose-6-Phosphate Isomerase metabolism
Mixed Function Oxygenases
Models, Molecular
Molecular Sequence Data
Peptide Fragments metabolism
Protein Conformation
Sequence Alignment
Spectrometry, Mass, Electrospray Ionization
Transcriptional Activation
Yeasts
Zinc metabolism
Asparagine metabolism
DNA-Binding Proteins metabolism
Nuclear Proteins metabolism
Repressor Proteins metabolism
Transcription Factors
Subjects
Details
- Language :
- English
- ISSN :
- 0021-9258
- Volume :
- 277
- Issue :
- 29
- Database :
- MEDLINE
- Journal :
- The Journal of biological chemistry
- Publication Type :
- Academic Journal
- Accession number :
- 12042299
- Full Text :
- https://doi.org/10.1074/jbc.C200273200