Target intelligence / Profile preview

tRNA (cytosine-5)-methyltransferase (DNMT2) (DNMT2)

Target
DNMT2
Molecular classification
Enzyme, RNA methyltransferase, DNA (cytosine-5)-methyltransferase homolog
01

Overview

DNMT2 (tRNA (cytosine-5)-methyltransferase) is an evolutionarily conserved enzyme initially identified due to its sequence similarity to DNA methyltransferases. Despite its name and homology, DNMT2’s primary biological function in mammals and many eukaryotes is to methylate cytosine 38 on specific tRNAs (notably tRNA^Asp^, tRNA^Gly^, and tRNA^Val^) at the 5-position, contributing to tRNA stability and accuracy of protein synthesis rather than to DNA methylation[1][3][5][6]. Structurally, DNMT2 contains all canonical motifs of DNA-(cytosine 5)-methyltransferases and uses catalytic mechanisms akin to its DNA-methylating relatives, but biochemical studies have shown only extremely weak or absent DNA methylation activity in vivo. Functionally, DNMT2 is essential for protecting tRNA from endonuclease cleavage, thereby securing codon fidelity and correct translation, which is particularly important in stem cell differentiation and hematopoiesis[3]. DNMT2 has also been implicated in cellular stress responses and potentially in disease states where tRNA or translation regulation is disrupted. No direct pharmacological inhibitors or drugs targeting DNMT2 have been described to date.

Other names
Dnmt2Trdmt1DNA methyltransferase homolog 2tRNA aspartic acid methyltransferase 1TRDMT1tRNA methyltransferase DNMT2
02

Mechanism of action

Inhibitors would be expected to block cytosine-5 methylation of tRNA and alter translation fidelity As of now, no direct small-molecule drugs known to target DNMT2 specifically

03

Biological functions

RNA modification (cytosine-5 methylation of tRNA)Maintenance of tRNA stabilityRegulation of translation and protein synthesis fidelityProtection of tRNAs from endonucleolytic cleavage
04

Disease associations

Cancer (dysregulation of methylation pathways may contribute)Hematopoietic disorders (due to defects in stem and progenitor cell differentiation)Other (role in stress responses and potential involvement in various cellular processes)
05

Safety considerations

Loss of protein translation fidelityPotential impact on hematopoiesis and stem cell function[3]Uncharacterized off-target effects if inhibited
06

Biomarkers

tRNA Asp, Gly, and Val site-specific C38 methylation status (as indicator of DNMT2 activity)[3]Methylation patterns of tRNA as readout of DNMT2 function

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