1. Signaling Pathways
  2. Epigenetics
  3. DNA Methyltransferase

DNA Methyltransferase

DNMTs; DNA MTases

DNA methyltransferases (DNMTs) are a family of “writer” enzymes responsible for DNA methylation that is the addition of a methyl group to the carbon atom number five (C5) of cytosine. Mammalians encode five DNMTs: DNMT1, DNMT2, DNMT3A-DNMT3B (de novo methyltransferases), and DNMTL. DNMT1, DNMT3A, and DNMT3B are the three active enzymes that maintain DNA methylation. DNMT3L has no catalytic activity and functions as a regulator of DNMT3A and DNMT3B, whereas DNMT2 acts as a tRNA transferase rather than a DNA methyltransferase.

DNA methylation is a vital modification process in the control of genetic information, which contributes to the epigenetics by regulating gene expression without changing the DNA sequence. In prokaryotes, DNA methylation is essential for transcription, the direction of post-replicative mismatch repair, the regulation of DNA replication, cell-cycle control, bacterial virulence, and differentiating self and non-self DNA. In mammalians, DNA methylation is crucial in many key physiological processes, including the inactivation of the X-chromosome, imprinting, and the silencing of germline-specific genes and repetitive elements.

Cat. No. Product Name Effect Purity Chemical Structure
  • HY-A0004
    Decitabine
    Inhibitor 99.97%
    Decitabine (NSC 127716) is an orally active deoxycytidine analogue antimetabolite and a DNA methyltransferase inhibitor. Decitabine incorporates into DNA in place of cytosine can covalently trap DNA methyltransferase to DNA causing irreversible inhibition of the enzyme. Decitabine induces cell G2/M arrest and cell apoptosis. Decitabine has potent anticancer activity.
    Decitabine
  • HY-10586
    5-Azacytidine
    Inhibitor 99.91%
    5-Azacytidine (Azacitidine; 5-AzaC; Ladakamycin) is a nucleoside analogue of cytidine that specifically inhibits DNA methylation. 5-Azacytidine is incorporated into DNA to covalently trap DNA methyltransferases and contributes to reverse epigenetic changes. 5-Azacytidine induces cell autophagy.
    5-Azacytidine
  • HY-135146
    GSK-3484862
    Inhibitor 99.95%
    GSK-3484862 is a non-covalent inhibitor for DNA methyltransferase (Dnmt1). GSK-3484862 induces DNA hypomethylation to against cancer. GSK-3484862 mediates dramatic demethylation in murine embryonic stem cells with minimal non-specific toxicity.
    GSK-3484862
  • HY-112288
    C188-9
    Inhibitor 99.84%
    C188-9 (TTI-101) is a STAT3 inhibitor with a Kd value of 4.7 nM. C188-9 targets the SH2 domain of STAT3, blocks the processes of STAT3 ligand binding, receptor recruitment, homodimerization and phosphorylation, and regulates STAT3-mediated genes associated with tumorigenesis and radioresistance. C188-9 regulates STAT1-mediated genes related to radioresistance and reduces the activation level of STAT1. C188-9 downregulates the expression of DNMT1, enhances DAC-induced demethylation and re-expression of RASSF1A, and simultaneously potentiates the anti-tumor effect of DAC on pancreatic cancer cells. C188-9 inhibits both anchorage-dependent and anchorage-independent growth of cancer cells, induces Apoptosis, blocks the growth of tumor xenografts, and suppresses muscle atrophy. C188-9 maintains muscle mass, increases body weight and improves grip strength in tumor-bearing mice. C188-9 can be used in research related to head and neck squamous cell carcinoma, pancreatic cancer, sepsis-related skeletal muscle wasting, non-small cell lung cancer, acute myeloid leukemia and cancer cachexia.
    C188-9
  • HY-139664
    GSK-3685032
    Inhibitor 99.41%
    GSK-3685032 is a non-time-dependent, noncovalently, first-in-class reversible DNMT1-selective inhibitor, with an IC50 of 0.036 μM. GSK-3685032 induces robust loss of DNA methylation, transcriptional activation, and cancer cell growth inhibition.
    GSK-3685032
  • HY-177963
    NV914
    Inhibitor 98.98%
    NV914 is an inhibitor of FTSJ1 (tryptophan tRNA-specific 2'-O-methyltransferase) that inhibits the methyltransferase activity of FTSJ1, induces translational readthrough of premature termination codons, and enables genes carrying nonsense mutations to synthesize full-length proteins. NV914 belongs to translational readthrough-inducing compounds (TRIDs). NV914 exhibits translational readthrough activity against nonsense mutations in in vitro systems, does not induce readthrough of natural termination codons, and restores CFTR protein expression. NV914 shows favorable acute oral tolerance in mice, with low health risks and good safety profiles. NV914 is applicable to research related to cystic fibrosis and Shwachman-Diamond syndrome.
    NV914
  • HY-179409
    MC3817
    Inhibitor
    MC3817 is a selective DNMT1 inhibitor. MC3817 inhibits DNMT1 and DNMT3A/3L with IC50s of 0.044 μM and > 10μM, respectively. MC3817 inhibits P53-dependent cancer cell proliferation, induces apoptosis and DNA damage MC3817 elevates cleaved Caspase 3, P53, and γH2AX. MC3817 can be used in non-small cell lung cancer, colon cancer, cervical cancer, triple-negative breast cancer and histiocytic lymphoma research.
    MC3817
  • HY-A0084AS
    Procainamide-d4
    Procainamide-d4 (Procaine amide-d4) is the deuterium labeled Procainamide (HY-A0084A). Procainamide (Procaine amide) is a specific and potent inhibitor of DNA methyltransferase 1 (DNMT1), which reactivates the expression of tumor suppressor factors by demethylating tumor suppressor genes. Procainamide induces vacuolization in various cell types and reduces cell proliferation and migration. Procainamide relaxes airway smooth muscle by activating potassium channels. Procainamide can be used in cancer and arrhythmia research.
    Procainamide-d<sub>4</sub>
  • HY-111558
    Bobcat339
    Inhibitor 99.44%
    Bobcat339 is a potent and selective cytosine-based inhibitor of TET enzyme, with IC50s of 33 μM and 73 μM for TET1 and TET2, respectively. Bobcat339 is useful to the field of epigenetics and serves as a starting point for new therapeutics that target DNA methylation and gene transcription.
    Bobcat339
  • HY-13642
    RG108
    Inhibitor 99.93%
    RG108 (N-Phthalyl-L-tryptophan) is a non-nucleoside DNA methyltransferases (DNMTs) inhibitor (IC50=115 nM) that blocks the DNMTs active site. RG108 (N-Phthalyl-L-tryptophan) causes demethylation and reactivation of tumor suppressor genes, but it does not affect the methylation of centromeric satellite sequences.
    RG108
  • HY-158301
    MY-1B
    Inhibitor 99.94%
    MY-1B is a covalent inhibitor of the RNA Methyltransferase NSUN2 (IC50: 1.3 μM). MY-1B stereoselectively ligands active-site cysteine residues (C271) of NSUN2. MY-1B can stereoselectively and covalently bind to PSME1, disrupting the proteasome regulatory complex and downregulating the presentation of specific MHC-I subtypes.
    MY-1B
  • HY-13765
    6-Thioguanine
    Inhibitor 99.54%
    6-Thioguanine (Thioguanine; 2-Amino-6-purinethiol) is an anti-leukemia and immunosuppressant agent, acts as an inhibitor of SARS and MERS coronavirus papain-like proteases (PLpros) and also potently inhibits USP2 activity, with IC50s of 25 μM and 40 μM for Plpros and recombinant human USP2, respectively.
    6-Thioguanine
  • HY-13962
    SGI-1027
    Inhibitor 99.79%
    SGI-1027 is a DNA methyltransferase (DNMT) inhibitor, with IC50s of 7.5 μM, 8 μM, and 12.5 μM for DNMT3B, DNMT3A, and DNMT1 with poly(dI-dC) as substrate.
    SGI-1027
  • HY-111558A
    Bobcat339 hydrochloride
    Inhibitor 99.62%
    Bobcat339 hydrochloride is a potent and selective cytosine-based inhibitor of TET enzyme, with the IC50s of 33 μM and 73 μM for TET1 and TET2, respectively. Bobcat339 hydrochloride is useful to the field of epigenetics and serves as a starting point for new therapeutics that target DNA methylation and gene transcription.
    Bobcat339 hydrochloride
  • HY-163731
    EGR-1-IN-1
    Inhibitor 99.07%
    EGR-1-IN-1 is a EGR-1 inhibitor with an IC50 of 1.86 μM. EGR-1-IN-1 binds to the zinc finger DNA-binding domain of EGR-1 and promotes the dissociation of the EGR-1-DNA complex. EGR-1-IN-1 reduces the mRNA expression levels of EGR-1-regulated inflammatory genes induced by TNFα. EGR-1-IN-1 alleviates atopic dermatitis-like lesions in the ear skin of mice. EGR-1-IN-1 serves as a lead compound for the development of targeted compounds for inflammatory skin diseases. EGR-1-IN-1 can be used in studies related to atopic dermatitis.
    EGR-1-IN-1
  • HY-B0106
    Levetiracetam
    Inhibitor 99.98%
    Levetiracetam, an antiepileptic agent, binds the synaptic vesicle protein SV2A. Levetiracetam enhances Temozolomide effect on glioblastoma stem cell proliferation and apoptosis. Levetiracetam modulates HDAC levels ultimately silencing MGMT, thus increasing Temozolomide effectiveness. A chemosensitizer agent.
    Levetiracetam
  • HY-13420
    Zebularine
    Inhibitor 99.49%
    Zebularine (NSC309132; 4-Deoxyuridine) is a DNA methyltransferase inhibitor. Zebularine also inhibits cytidine deaminase with a Ki of 0.95 μM.
    Zebularine
  • HY-151136
    DY-46-2
    Inhibitor 99.86%
    DY-46-2 is a high potency and selectivity novel non-nucleoside DNA methyltransferase 3A (DNMT3A) inhibitor with an IC50 value of 0.39 μM.
    DY-46-2
  • HY-B2230
    Hinokitiol
    Inhibitor 99.83%
    Hinokitiol is a component of essential oils isolated from Chymacyparis obtusa, reduces Nrf2 expression, and decreases DNMT1 and UHRF1 mRNA and protein expression, with anti-infective, anti-oxidative, and anti-tumor activities.
    Hinokitiol
  • HY-161402
    METTL16-IN-1
    Inhibitor 99.22%
    METTL16-IN-1 is a potent METTL16 inhibitor with an IC50 value of 1.7 μM and a Kd value of 1.35 μM. Mettl16-in-1 inhibits the binding interaction of U6 snRNA deletion and METTL16 MTD with an IC50 value of 2.5 μM. METTL16-IN-1 has antitumor activity.
    METTL16-IN-1
Cat. No. Product Name / Synonyms Application Reactivity

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