Target intelligence / Profile preview

ATP synthase F1 subunit alpha, mitochondrial (ATP5F1A)

Target
ATP5F1A
Molecular classification
Enzyme, Mitochondrial protein, Oxidative phosphorylation complex (Complex V), F-type ATPase
01

Overview

ATP synthase F1 subunit alpha, mitochondrial (ATP5F1A), is a nuclear-encoded subunit of mitochondrial ATP synthase (Complex V), located in the inner mitochondrial membrane as part of the F1 sector of the enzyme complex[2][1]. It functions as a key structural component of the catalytic core that drives the synthesis of ATP from ADP and inorganic phosphate during oxidative phosphorylation[2][1][3]. The F1 sector consists of three alpha and three beta subunits, forming a hexamer; while the beta subunits catalyze ATP formation, the alpha subunits provide structural and regulatory roles and are essential for nucleotide binding but are not the primary catalytic sites[4][1]. Mutations in ATP5F1A cause mitochondrial diseases including combined oxidative phosphorylation deficiency 22 (COXPD22) and mitochondrial complex V deficiency (MC5DN4), leading to diverse symptoms ranging from neurodevelopmental disorders to cardiomyopathy and encephalopathy[2]. ATP synthase is a fundamental enzyme universally required for cellular energy metabolism. Inhibitors of this complex, such as oligomycin, are primarily research tools due to the enzyme's systemic importance and associated safety risks in therapeutic targeting[2][1].

Other names
ATP synthase F(1) complex subunit alpha, mitochondrialATP5AATP5A1ATP5AL2ATPMCOXPD22HEL-S-123mMC5DN4MC5DN4AMC5DN4BMOM2OMRORMhATP1ATP synthase alpha chain, mitochondrialATP synthase, H+ transporting, mitochondrial F1 complex, alpha subunit 1
02

Mechanism of action

Enzyme inhibition (e.g., oligomycin inhibits proton flow, halting ATP synthesis); Modulation of catalytic activity (e.g., resveratrol inhibits F1 core, leading to increased AMP and activation of AMPK)[2]

03

Biological functions

ATP synthesisOxidative phosphorylationCellular energy metabolismMaintenance of mitochondrial membrane potential
04

Disease associations

Mitochondrial disease (e.g., combined oxidative phosphorylation deficiency 22 [COXPD22])Neurodevelopmental disordersCardiac dysfunctionEncephalopathy
05

Safety considerations

Inhibition leads to depletion of cellular ATP, causing energy failureTherapeutic targeting risks severe systemic side effects due to ubiquitous essential cellular functionToxicity risk: cardiac, neuronal, muscular compromise if off-target effects occur
06

Interacting drugs

Oligomycin (inhibitor of ATP synthase, binds the Fo portion)

2 more in the full profile.

07

Biomarkers

Lactate levels (biomarker of impaired mitochondrial function)ATP/ADP levels (indicative of mitochondrial bioenergetic function)Genetic variants/mutations in ATP5F1A (for mitochondrial disease diagnosis)[2]

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