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acetylated histones

" in MedChemExpress (MCE) Product Catalog:
Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-145550

    BI894999

    Epigenetic Reader Domain Cancer
    Amredobresib is a potent inhibitor of BET. Amredobresib inhibits the binding of bromodomains to acetylated lysines on histone H3 and H4 and thus acts as important regulators of gene transcription. Amredobresib is useful for the research of acute myeloid leukemia (AML) and cancer (extracted from patent WO2019145410A1 and WO2021175824A1) .
    Amredobresib
  • HY-16531
    YF-2
    2 Publications Verification

    Histone Acetyltransferase Neurological Disease Cancer
    YF-2 is a highly selective, blood-brain-barrier permeable histone acetyltransferase activator, acetylates H3 in the hippocampus, with EC50s of 2.75 μM, 29.04 μM and 49.31 μM for CBP, PCAF, and GCN5, respectively, shows no effect on HDAC. Anti-cancer and anti-Alzheimer's disease .
    YF-2
  • HY-155329

    HDAC Inflammation/Immunology
    GK718 is a HDAC1/3 inhibitor (IC50: 259 and 139 nM respectively). GK718 increased acetylated histone H3 level in cells. GK718 inhibits Bleomycin (HY-108345) induced pulmonary fibrosis in mice .
    GK718
  • HY-116227

    Epigenetic Reader Domain Inflammation/Immunology
    (2S,3R)-LP99 is a potent and selective BRD7 and BRD9 inhibitor with an KD of 99 nM for BRD9. (2S,3R)-LP99 inhibits the association of BRD7 and BRD9 to acetylated histones in vitro and in cells. (2S,3R)-LP99 demonstrates that BRD7/9 plays a role in regulating pro-inflammatory cytokine secretion .
    (2S,3R)-LP99
  • HY-149306

    Histone Acetyltransferase MDM-2/p53 Cancer
    MS78 is an acetylation targeting chimera (AceTAC) that acetylates the p53 tumor suppressor protein. MS78 recruits histone acetyltransferase p300/CBP to acetylate the p53Y220C mutant. MS78 upregulates TRAIL apoptotic genes and downregulates DNA damage response pathways. MS78 contains a CBP/p300 binder, a p53Y220C binder and a linker .
    MS78
  • HY-16531A
    YF-2 hydrochloride
    2 Publications Verification

    Histone Acetyltransferase Neurological Disease Cancer
    YF-2 hydrochloride is a highly selective, blood-brain-barrier permeable histone acetyltransferase activator, acetylates H3 in the hippocampus, with EC50s of 2.75 μM, 29.04 μM and 49.31 μM for CBP, PCAF, and GCN5, respectively, shows no effect on HDAC. Anti-cancer and anti-Alzheimer's disease .
    YF-2 hydrochloride
  • HY-125236

    Epigenetic Reader Domain Cancer
    BET-IN-19 (Compound 146) is a BET inhibitor. BET-IN-19 inhibits hlL-6 mRNA transcription (IC50 ≤ 0.3 uM), and c-myc activity in human AML MV4-11 cell (IC50 ≤ 0.3 uM)。BET-IN-19 inhibits tetra-acetylated histone H4 binding to BRD4 bromodomain 1 (IC50 ≤ 0.3 uM) .
    BET-IN-19
  • HY-156091

    PI3K HDAC Cancer
    PI3Kα/HDAC6-IN-1 (compound 21j) is a dual PI3Kα/HDAC6 inhibitor with IC50 of 2.9 and 26 nM, respectively. PI3Kα/HDAC6-IN-1 also inhibits AKT(Ser473) phosphorylation and induces the accumulation of acetylated α-tubulin without affecting acetylated histones H3 and H4. PI3Kα/HDAC6-IN-1 efficiently inhibits L-363 cell line (IC50=0.17 μM) and has good anti-cancer activity .
    PI3Kα/HDAC6-IN-1
  • HY-W015239

    Others Inflammation/Immunology Cancer
    KAT8-IN-1 is a lysine (K) acetyltransferase 8 (KAT8) inhibitor, with IC50s of 141 μM (KAT8), 221 μM (KAT2B), 106 μM (KAT3B), respectively. KAT8 inhibits histone acetyltransferases (HATs), and could result in disease states, such as cancer or inflammatory diseases .
    KAT8-IN-1
  • HY-151532

    Epigenetic Reader Domain Cancer
    PBRM1-BD2-IN-5 is a potent PBRM1 Bromodomain inhibitor with Kd values of 1.5 μM and 3.9 μM for PBRM1-BD2 and PBRM1-BD5, respectively, and an IC50 value of 0.26 μM for PBRM1-BD2. PBRM1-BD2-IN-5 reduces the binding of full-length PBRM1 within the PBAF complex in cell lysates to acetylated histone peptide. PBRM1-BD2-IN-5 can be used to research anticancer .
    PBRM1-BD2-IN-5
  • HY-132242

    SFN-NAC

    HDAC Apoptosis Cancer
    DL-Sulforaphane N-acetyl-L-cysteine (SFN-NAC) is an orally active HDAC inhibitor and metabolite of sulforaphane (HY-13755) with longer half-life and better blood-brain barrier permeability. DL-Sulforaphane N-acetyl-L-cysteine activates autophagy-mediated downregulation of α-tubulin expression through the ERK pathway and can be used in cancer research .
    DL-Sulforaphane N-acetyl-L-cysteine

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