Target intelligence / Profile preview

DNA (cytosine-5)-methyltransferase 3 beta (DNMT3B)

Target
DNMT3B
Molecular classification
Enzyme (specifically, methyltransferase), Epigenetic modifier (de novo DNA methyltransferase), Histone modification-associated protein
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Overview

DNA (cytosine‐5)‐methyltransferase 3 beta (DNMT3B) is an enzyme encoded by the DNMT3B gene. It catalyzes de novo cytosine methylation at CpG sites across the genome—a key epigenetic modification required for embryonic development, X-chromosome inactivation, imprinting, chromatin structure maintenance, and long-term transcriptional repression. Unlike maintenance methyltransferases such as DNMT1, which preserve existing patterns after replication, DNMT3B establishes new patterns during early development. Mutations cause immunodeficiency-centromeric instability-facial anomalies syndrome (ICF syndrome) due to defective lymphocyte maturation from aberrant DNA methylation. Overexpression or dysregulation contributes directly to oncogenesis by promoting abnormal gene silencing—especially tumor suppressor genes—and supports cancer cell survival. As such, it has emerged as both a biomarker and therapeutic target across several malignancies including multiple myeloma. Pharmacologic inhibition aims either at reversing pathological hypermethylation or sensitizing tumors resistant to standard therapies; however, safety concerns remain regarding potential disruption of normal epigenetic programming.

Other names
DNMT3BDNA methyltransferase HsaIIIBDNA MTase HsaIIIBDnmt3bM.HsaIIIB
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Mechanism of action

Drugs targeting DNMT3B generally act as inhibitors, blocking its ability to catalyze the transfer of a methyl group to cytosine residues in DNA. This leads to hypomethylation, reactivation of silenced genes (including tumor suppressors), and can induce apoptosis in cancer cells where DNMT3B is essential for survival.

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Biological functions

Establishment of genome-wide de novo DNA methylation patterns during developmentRegulation of gene expression via CpG methylationChromatin structure modulationTranscriptional repression/gene silencingCell fate determination during embryogenesis and neural crest development
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Disease associations

Cancer (essential for cancer cell survival; aberrant expression linked to tumorigenesis)Immunodeficiency-centromeric instability-facial anomalies syndrome (ICF syndrome)Drug resistance in multiple myeloma and other cancers
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Safety considerations

Off-target effects due to global hypomethylation may lead to genomic instability.Potential impact on normal stem cell function or developmental processes due to broad role in epigenetic regulation.Risk of immune dysfunction if normal gene silencing is disrupted.
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Interacting drugs

Decitabine

2 more in the full profile.

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Biomarkers

Predictive markers for drug response or relapse risk in multiple myeloma and other cancers.Diagnostic markers for ICF syndrome.

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