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FIH-1 is an asparaginyl hydroxylase enzyme that regulates the transcriptional activity of hypoxia-inducible factor

Genes & Development · 2002 · Vol. 16(12) · pp. 1466–1471
David LandoDaniel J. PeetJeffrey J. GormanDean A. WhelanMurray L. WhitelawRichard K. Bruick

Abstract

Mammalian cells adapt to hypoxic conditions through a transcriptional response pathway mediated by the hypoxia-inducible factor, HIF. HIF transcriptional activity is suppressed under normoxic conditions by hydroxylation of an asparagine residue within its C-terminal transactivation domain, blocking association with coactivators. Here we show that the protein FIH-1, previously shown to interact with HIF, is an asparaginyl hydroxylase. Like known hydroxylase enzymes, FIH-1 is an Fe(II)-dependent enzyme that uses molecular O(2) to modify its substrate. Together with the recently discovered prolyl hydroxylases that regulate HIF stability, this class of oxygen-dependent enzymes comprises critical regulatory components of the hypoxic response pathway.

Cancer, Hypoxia, and MetabolismHigh Altitude and HypoxiaRNA modifications and cancerTransactivationBiologyHydroxylationEnzymeAsparagineBiochemistryTranscription factorHypoxia-inducible factorsHypoxia-Inducible Factor 1Cell biology

MeSH terms

Endothelial PAS Domain-Containing Protein 1Amino Acid SequenceAnimalsHypoxiaAsparagineCell LineGlutathione TransferaseHumansMixed Function OxygenasesHydroxylationIronKetoglutaric AcidsMolecular Sequence DataOxygenPlasmids

Funding

  • McKnight Foundation
  • National Institutes of Health
Citations
1,520
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