Target intelligence / Profile preview

Factor inhibiting hypoxia-inducible factor 1 (FIH-1) (FIH-1)

Target
FIH-1
Molecular classification
Enzyme, 2-oxoglutarate-dependent dioxygenase, Asparaginyl hydroxylase
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Overview

Factor inhibiting hypoxia-inducible factor 1 (FIH-1) is a 2-oxoglutarate-dependent dioxygenase that acts as a key negative regulator of the hypoxia-inducible factor (HIF) transcriptional complex (UniProt: Q9NWT6) [1]. It functions by hydroxylating a specific asparagine residue (Asn-803 in human HIF-1α) within the C-terminal transactivation domain of HIF-alpha subunits (PubMed: 11836526) [2]. This modification prevents the recruitment of the p300/CBP co-activators, thereby suppressing the transcriptional activity of HIF under normoxic conditions (Wikipedia: Factor inhibiting HIF) [3]. While prolyl hydroxylases (PHDs) primarily regulate HIF stability through degradation, FIH serves as a secondary mechanism to fine-tune the activity of the HIF protein that escapes degradation (PubMed: 25611106) [4]. Pharmacological inhibition of FIH is being explored for treating conditions like anemia, ischemic diseases, and metabolic disorders by enhancing the adaptive response to low oxygen (Nature Reviews Molecular Cell Biology) [5]. However, therapeutic targeting of FIH presents challenges, as sustained HIF activation may promote angiogenesis and survival in tumor cells, potentially facilitating cancer progression (PubMed: 12150925) [6].

Other names
HIF1ANHypoxia-inducible factor 1-alpha inhibitorFIH1Peptide-asparagine dioxygenaseAsparaginyl hydroxylase FIH
02

Mechanism of action

Inhibition of the asparaginyl hydroxylase activity of FIH prevents the hydroxylation of the C-terminal transactivation domain (CAD) of HIF-alpha subunits. This lack of hydroxylation allows for the recruitment of p300/CBP co-activators to the HIF complex, thereby increasing the transcription of hypoxia-responsive genes such as EPO and VEGF (PubMed: 11836526) [2].

03

Biological functions

Oxygen sensingRegulation of transcriptionCellular metabolismAngiogenesisErythropoiesis
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Disease associations

CancerAnemiaMetabolic syndromeIschemic heart diseasePeripheral artery disease
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Safety considerations

Potential for promoting tumor growth and metastasis due to increased angiogenesis (PubMed: 12150925) [6]Risk of systemic metabolic disturbancesOff-target inhibition of other 2-oxoglutarate-dependent dioxygenasesPotential for erythrocytosis if EPO is over-stimulated
06

Interacting drugs

Dimethyloxalylglycine (DMOG)

4 more in the full profile.

07

Biomarkers

HIF-1 alpha protein levelsVascular endothelial growth factor (VEGF) levelsErythropoietin (EPO) levelsAsn-803 hydroxylation status of HIF-1 alpha

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