Target intelligence / Profile preview

AlkB homolog 3, alpha-ketoglutarate-dependent dioxygenase (ALKBH3)

Target
ALKBH3
Molecular classification
Enzyme, Dioxygenase, DNA repair protein, RNA demethylase
01

Overview

AlkB homolog 3, alpha-ketoglutarate-dependent dioxygenase (ALKBH3) is an enzyme encoded by the human ALKBH3 gene. It belongs to the AlkB family of Fe(II)/2-oxoglutarate-dependent dioxygenases, characterized by a jelly-roll beta-fold and structural domains suited for substrate binding and catalysis[4][1][2]. ALKBH3 directly repairs alkylation-damaged nucleic acids by removing methyl groups from 1-methyladenine and 3-methylcytosine in single-stranded DNA and RNA, contributing to genome and transcriptome integrity, particularly under stress from environmental or therapeutic methylating agents[1][3][4]. ALKBH3 also acts as an RNA demethylase, with activity against N6-methyladenine in tRNA, thereby promoting efficient protein translation and regulating gene expression on the epigenetic level[3]. Overexpression of ALKBH3 is observed in multiple human cancers, where it influences tumor progression, making it a proposed therapeutic and diagnostic target[1][3][5]. Its activity depends on iron and 2-oxoglutarate as cofactors, and it works in conjunction with DNA repair complexes such as the ASCC, further highlighting its central role in alkylation damage response[1]. Although as of now there is limited information on direct pharmacological inhibition, its molecular mechanism suggests that ALKBH3 modulation could have significant therapeutic implications, especially in oncology.

Other names
ALKBH3ABH3DEPC-1DEPC1PCA1hABH3alkB homolog 3
02

Mechanism of action

Oxidative demethylation of 1-methyladenine (m1A) and 3-methylcytosine (m3C) lesions in single-stranded DNA and RNA; Repair of methylation-induced DNA/RNA damage; Epigenetic regulation via RNA demethylation

03

Biological functions

DNA repairRNA demethylationEpigenetic regulationGenome integrity maintenanceProtein translation promotion
04

Disease associations

Cancer (notably tumor progression and oncogenesis)Other (potentially broad, but most information relates to cancer so far)
05

Safety considerations

Potential impact on genome stability if inhibitedUncertain off-target effects due to potential DNA/RNA repair modulation
06

Biomarkers

ALKBH3 expression (proposed cancer biomarker)1-methyladenine (m1A) and 3-methylcytosine (m3C) levels in nucleic acidsN6-methyladenine (N6-meA) in tRNA (potential)

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