Target intelligence / Profile preview

Ferredoxin--NADP(+) reductase (FNR)

Target
FNR
Molecular classification
Enzyme, Oxidoreductase, Flavoenzyme, Iron-sulfur protein reductase
01

Overview

Ferredoxin--NADP(+) reductase (FNR) is a flavin adenine dinucleotide (FAD)-dependent enzyme that facilitates the transfer of electrons between nicotinamide adenine dinucleotide phosphate (NADPH) and the iron-sulfur protein ferredoxin. In photosynthetic organisms, it is crucial for the final step of linear electron transport, while in non-photosynthetic organisms and the apicoplast of parasites, it operates in reverse to provide reducing power for essential biosynthetic pathways like isoprenoid and iron-sulfur cluster assembly. This enzyme is considered a major therapeutic target for treating infections caused by apicomplexan parasites, such as Plasmodium falciparum (malaria) and Toxoplasma gondii (toxoplasmosis), because the parasite version is plant-like and significantly different from the human mitochondrial ortholog, adrenodoxin reductase. In humans, the equivalent enzyme (FDXR) is vital for steroidogenesis and bile acid synthesis, and its dysfunction is linked to sensory neuropathies. Research into FNR inhibitors, including phenothiazines and various experimental compounds, aims to disrupt parasite metabolism while maintaining selectivity over the essential human enzyme. Consequently, FNR serves as a focal point for the development of novel antiparasitic agents with unique mechanisms of action.

Other names
Adrenodoxin reductaseFerredoxin reductaseFerredoxin--NADP(+) oxidoreductaseNADPH:adrenodoxin oxidoreductaseNADPH--ferredoxin reductasePlastidic-type ferredoxin--NADP(+) reductase
02

Mechanism of action

Enzyme inhibition that blocks electron transfer between NADPH and the FAD cofactor or prevents the productive protein-protein interaction between the reductase and ferredoxin.

03

Biological functions

Electron transferRedox homeostasisIsoprenoid precursor biosynthesisIron-sulfur cluster biogenesisSteroid hormone biosynthesisFatty acid metabolism
04

Disease associations

MalariaToxoplasmosisAuditory neuropathy and optic atrophy (ANOA)Steroid biosynthesis disorders
05

Safety considerations

Off-target inhibition of human mitochondrial Adrenodoxin reductase (FDXR)Disruption of systemic steroid hormone biosynthesisPotential mitochondrial toxicity and oxidative stressImpairment of bile acid and vitamin D metabolism
06

Interacting drugs

Chlorpromazine

4 more in the full profile.

07

Biomarkers

Parasite loadSerum steroid hormone levelsCellular NADPH/NADP+ ratioMitochondrial redox potential

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