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Alpha-ketoglutarate-dependent dioxygenase alkB homolog 7, mitochondrial (ALKBH7)

Target
ALKBH7
Molecular classification
Enzyme, Dioxygenase, Alpha-ketoglutarate-dependent dioxygenase, Mitochondrial matrix protein
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Overview

Alpha-ketoglutarate-dependent dioxygenase alkB homolog 7, mitochondrial (ALKBH7), is a mitochondrial enzyme within the AlkB family that catalyzes oxidative reactions using alpha-ketoglutarate as a co-substrate. Unlike other AlkB family members that primarily target nucleic acids, ALKBH7 appears to act mainly on protein or mitochondrial RNA substrates. It is essential for alkylation- and oxidation-induced programmed necrosis, acting as a pro-death factor by triggering mitochondrial membrane potential collapse and mitochondrial dysfunction, leading to energy depletion and cell death. ALKBH7 regulates the demethylation of certain RNA modifications (e.g., m²²G, m¹A) in mitochondrial tRNAs, thereby affecting mitochondrial RNA processing, translation, and activity. Deficiency in ALKBH7 protects cells from DNA alkylation-induced cell death but causes increased body fat and altered metabolic regulation, suggesting roles in fatty acid metabolism and energy homeostasis. ALKBH7 has also been implicated in the regulation of dialdehyde (glyoxal/methylglyoxal) metabolism in the heart, impacting the tissue’s resilience to ischemia-reperfusion stress. In cancer, genetic alterations and expression patterns of ALKBH7 are linked to prostate cancer and pan-cancer prognosis. While the physiological substrate and direct drug interactions remain unclear, ALKBH7 is considered a potential therapeutic target in cancer, necrosis-associated diseases, and metabolic syndromes.

Other names
ALKBH7alkB homolog 7ABH7SPATA11spermatogenesis-associated protein 11alpha-ketoglutarate-dependent dioxygenase alkB homolog 7, mitochondrialalkylated DNA repair protein alkB homolog 7spermatogenesis cell proliferation-related proteinMGC10974UNQ6002/PRO34564UNQ6002
02

Biological functions

Programmed necrosis (regulated cell death)Fatty acid metabolismDemethylation of mitochondrial RNARegulation of mitochondrial RNA processing and translationCellular homeostasisRegulation of body weight and fat massRegulation of cell proliferation
03

Disease associations

Cancer (notably prostate cancer)ObesityCardiometabolic diseaseCardiac stress/ischemia-reperfusion injuryPotential involvement in necrosis-related diseases
04

Safety considerations

Potential for metabolic disturbances if targeted (as ALKBH7 knockout increases body weight and fat mass)Altered cell death, which could impact tissue homeostasis and increase risk in metabolic or cardiac disease contexts
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Biomarkers

Possibly ALKBH7 genetic status (e.g., SNPs linked to prostate cancer)

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