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Results for "

MLL-rearrange

" in MedChemExpress (MCE) Product Catalog:

22

Inhibitors & Agonists

2

Peptides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-136175
    Revumenib
    Maximum Cited Publications
    15 Publications Verification

    SNDX-5613

    Epigenetic Reader Domain Cancer
    Revumenib (SNDX-5613) is a potent and specific Menin-MLL inhibitor with a binding Ki of 0.149 nM and a cell based IC50 of 10-20 nM. Revumenib can be used for the research of MLL-rearranged (MLL-r) acute leukemias, including acute lymphoblastic leukemia (ALL) and acute myeloid leukemia (AML) .
    Revumenib
  • HY-16993
    OICR-9429
    Maximum Cited Publications
    15 Publications Verification

    Apoptosis WDR5 Cancer
    OICR-9429, a chemical probe, is high affinity WD repeat domain 5 (WDR5) inhibitor, competitively blocks WDR5 interaction with MLL protein via binding the central peptide-binding pocket of WDR5. OICR-9429 can suppress histone H3K4 trimethylation and can be used for the research of various cancers including non-MLL-rearranged leukaemia, colon, pancreatic, prostate cancer and bladder cancer (BCa) .
    OICR-9429
  • HY-15227
    EPZ004777
    5+ Cited Publications

    Histone Methyltransferase Apoptosis Inflammation/Immunology Cancer
    EPZ004777 is an effective and selective DOT1L inhibitor, with IC50 being 0.4 nM. EPZ004777 reduces the levels of H3K79me2 and H3K79me1, significantly down-regulating the expression of HOXA9 and MEIS1. EPZ004777 selectively inhibits the proliferation of MLL rearrangement cells and promotes the differentiation and subsequent apoptosis (apoptosis) of leukemia cells. EPZ004777 can be used for the study of leukemia .
    EPZ004777
  • HY-15650
    SGC0946
    10+ Cited Publications

    Histone Methyltransferase Cancer
    SGC0946 is a selective DOT1L inhibitor with an IC50 value of 0.3 nM. By inhibiting DOT1L, SGC0946 can induce G1 phase arrest, suppress cell self-renewal and metastatic potential, and induce cell differentiation in cancer cells. SGC0946 can be used in the research of tumors such as leukemia and breast cancer, and also serves as a probe to further investigate the cellular mechanisms of DOT1L in normal and diseased cells .
    SGC0946
  • HY-156794

    DSP-5336

    Epigenetic Reader Domain FLT3 Cancer
    Enzomenib (DSP-5336) is an orally active Menin inhibitor (IC50=1.4 nM, Kd=6.0 nM). Enzomenib disrupts the interaction between Menin and KMT2A/MLL fusion proteins, specifically inhibits the expression of leukemia driver genes such as HOX/MEIS1, and upregulates ITGAM. Enzomenib effectively induces cell differentiation, inhibits tumor cell proliferation, and suppresses primitive cell colony formation. Enzomenib reduces disease burden and prolongs survival, but causes adverse reactions including differentiation syndrome and QTc interval prolongation. Enzomenib is used for research on relapsed/refractory acute myeloid leukemia, acute lymphoblastic leukemia, and other hematologic malignancies with mixed lineage leukemia (MLL) rearrangements or NPM1 mutations .
    Enzomenib
  • HY-162250

    PROTACs Histone Methyltransferase Cancer
    MS8847 is a PROTAC degrader and antiproliferative agent targeting EZH2 (DC50=34.4 nM in EOL-1 MLL-rAML cells). MS8847 recruits the E3 ligase von Hippel-Lindau (VHL) to mediate the degradation of EZH2 via the ubiquitin-proteasome system. MS8847 induces antiproliferative effects in MLL-rearranged acute myeloid leukemia cells and inhibits the growth of triple-negative breast cancer cell lines or 3D triple-negative breast cancer models. MS8847 is applicable to research related to MLL-rearranged acute myeloid leukemia and triple-negative breast cancer .
    MS8847
  • HY-15222
    Menin-MLL inhibitor MI-2
    4 Publications Verification

    Epigenetic Reader Domain Apoptosis Cancer
    Menin-MLL inhibitor MI-2 is a competitive and selective Menin-MLL interaction inhibitor with an IC50 value of 446 nM and a Ki value of 158 nM. Menin-MLL inhibitor MI-2 downregulates the expression of target genes such as HOXA9 and MEIS1, inhibits proliferation of leukemia cells and induces apoptosis and differentiation. Menin-MLL inhibitor MI-2 is proming for rasearch of MLL-rearranged acute leukemias (e.g., AML, ALL) .
    Menin-MLL inhibitor MI-2
  • HY-P3245A

    Apoptosis Cancer
    HXR9 hydrochloride is a cell-permeable peptide and a competitive antagonist of HOX/PBX interaction. HXR9 hydrochloride antagonizes the interaction between HOX and a second transcrip-tion factor (PBX), which binds to HOX proteins in paralogue groups1 to 8. HXR9 hydrochloride selectively decreases cell proliferation and promotes apoptosis in cells with a high level of expression of the HOXA/PBX3 genes, such as MLL-rearranged leukemic cells .
    HXR9 hydrochloride
  • HY-15227A
    EPZ004777 hydrochloride
    5+ Cited Publications

    Histone Methyltransferase Apoptosis Inflammation/Immunology Cancer
    EPZ004777 hydrochloride is an effective and selective DOT1L inhibitor, with IC50 being 0.4 nM. EPZ004777 hydrochloride reduces the levels of H3K79me2 and H3K79me1, significantly down-regulating the expression of HOXA9 and MEIS1. EPZ004777 hydrochloride selectively inhibits the proliferation of MLL rearrangement cells and promotes the differentiation and subsequent apoptosis (apoptosis) of leukemia cells. EPZ004777 hydrochloride can be used for the study of leukemia .
    EPZ004777 hydrochloride
  • HY-114410

    Mitochondrial Metabolism Cancer
    CCI-006 is a selective inhibitor and chemosensitizer of MLL-rearranged leukemia cells, by inhibits mitochondrial respiration resulting in insurmountable mitochondrial depolarization and a pro-apoptotic unfolded protein response (UPR) in a subset of MLL-r leukemia cells .
    CCI-006
  • HY-P3245

    Apoptosis Cancer
    HXR9 is a cell-permeable peptide and a competitive antagonist of HOX/PBX interaction. HXR9 antagonizes the interaction between HOX and a second transcrip-tion factor (PBX), which binds to HOX proteins in paralogue groups1 to 8. HXR9 selectively decreases cell proliferation and promotes apoptosis in cells with a high level of expression of the HOXA/PBX3 genes, such as MLL-rearranged leukemic cells .
    HXR9
  • HY-114162B

    SNDX-50469 mesylate

    Epigenetic Reader Domain Apoptosis Cancer
    VTP50469 mesylate is a potent, and selective Menin-MLL1 inhibitor that effectively targets MLL-rearranged and NPM1c+ leukemia. VTP50469 mesylate selectively kills cell lines with MLL rearrangements and NPM1c+ mutations. VTP50469 mesylate displaces Menin from protein complexes and inhibits MLL's chromatin occupancy at specific genes, leading to significant changes in gene expression, differentiation, and apoptosis. VTP50469 demonstrates dramatic reductions in leukemia burden in patient-derived xenograft models of MLL-r acute myeloid leukemia and MLL-r acute lymphoblastic leukemia, with some mice remaining disease-free for over a year post-treatment.
    VTP50469 mesylate
  • HY-15222A

    Epigenetic Reader Domain Apoptosis Cancer
    Menin-MLL inhibitor MI-2 dihydrochloride is a competitive and selective Menin-MLL interaction inhibitor with an IC50 value of 446 nM and a Ki value of 158 nM. Menin-MLL inhibitor MI-2 dihydrochloride downregulates the expression of target genes such as HOXA9 and MEIS1, inhibits proliferation of leukemia cells and induces apoptosis and differentiation. Menin-MLL inhibitor MI-2 dihydrochloride is proming for rasearch of MLL-rearranged acute leukemias (e.g., AML, ALL) .
    Menin-MLL inhibitor MI-2 dihydrochloride
  • HY-122698

    Apoptosis Cancer
    CCI-007 is a small molecule with cytotoxic activity against infant leukemia with MLL rearrangements, with IC50 values of 2.5-6.2 μM in sensitive cells .
    CCI-007
  • HY-15650A

    Histone Methyltransferase Cancer
    SGC0946 TFA is a selective DOT1L inhibitor with an IC50 value of 0.3 nM. By inhibiting DOT1L, SGC0946 TFA can induce G1 phase arrest, suppress cell self-renewal and metastatic potential, and induce cell differentiation in cancer cells. SGC0946 TFA can be used in the research of tumors such as leukemia and breast cancer, and also serves as a probe to further investigate the cellular mechanisms of DOT1L in normal and diseased cells .
    SGC0946 TFA
  • HY-181790

    Ligands for Target Protein for PROTAC Histone Methyltransferase Cancer
    DOT1L ligand-2 (Compound 52) is a DOT1L ligand. DOT1L ligand-2 acts as a Ligand for Target Protein for PROTAC, which is used to develop and design degraders of PROTAC DOT1L, such as DOT1L808 (HY-181789). DOT1L ligand-2 is applicable to research related to MLL-rearranged leukemia .
    DOT1L ligand-2
  • HY-136175B

    cis-SNDX-5613

    Epigenetic Reader Domain Cancer
    cis-Revumenib (cis-SNDX-5613) is an isomer of Revumenib (HY-136175). Revumenib (SNDX-5613) is a potent and specific Menin-MLL inhibitor with a binding Ki of 0.149 nM and a cell based IC50 of 10-20 nM. Revumenib can be used for the research of MLL-rearranged (MLL-r) acute leukemias, including acute lymphoblastic leukemia (ALL) and acute myeloid leukemia (AML) .
    cis-Revumenib
  • HY-181787

    PROTACs Histone Methyltransferase Cardiovascular Disease
    DOT1L705 is a PROTAC degrader that targets DOT1L. DOT1L705 recruits the VHL E3 ubiquitin ligase to induce proteasomal degradation of DOT1L. DOT1L705 reduces the viability of leukemia cells. DOT1L705 inhibits H3K79 methylation. DOT1L705 can be used in studies related to MLL-rearranged leukemia .
    DOT1L705
  • HY-181834

    PROTACs Epigenetic Reader Domain Cancer
    PROTAC MLLT1 Degrader-1 is a PROTAC degrader targeting MLLT1. PROTAC MLLT1 Degrader-1 inhibits AML cell proliferation and viability, suppresses tumor growth in human AML xenograft models, and can block the oncogene transcriptional program. PROTAC MLLT1 Degrader-1 can be used for the research of MLL-rearranged acute myeloid leukemia (AML) .
    PROTAC MLLT1 Degrader-1
  • HY-181690

    Epigenetic Reader Domain Cancer
    Menin-MLL-IN-37 is an orally active Menin-MLL protein complex inhibitor with an IC50 of 820.50 nM. Menin-MLL-IN-37 disrupts the interaction between menin and MLL proteins. Menin-MLL-IN-37 induces differentiation of acute myeloid leukemia cells and selectively inhibits the proliferation of MLL-rearranged and DNMT3A/NPM1-mutant leukemia cells. Menin-MLL-IN-37 can be used for the research of acute myeloid leukemia (AML) .
    Menin-MLL-IN-37
  • HY-115619

    Histone Methyltransferase Apoptosis Cancer
    EPZ004777 formate is an effective and selective DOT1L inhibitor, with IC50 being 0.4 nM. EPZ004777 formate reduces the levels of H3K79me2 and H3K79me1, significantly down-regulating the expression of HOXA9 and MEIS1. EPZ004777 formate selectively inhibits the proliferation of MLL rearrangement cells and promotes the differentiation and subsequent apoptosis (apoptosis) of leukemia cells. EPZ004777 formate can be used for the study of leukemia .
    EPZ004777 formate
  • HY-156794A

    DSP-5336 enantiomer

    Drug Isomer FLT3 Epigenetic Reader Domain Cardiovascular Disease Cancer
    Enzomenib enantiomer (DSP-5336 enantiomer) is an enantiomer of Enzomenib (HY-156794). Enzomenib (DSP-5336) is an orally active Menin inhibitor (IC50=1.4 nM, Kd=6.0 nM). Enzomenib disrupts the interaction between Menin and KMT2A/MLL fusion proteins, specifically inhibits the expression of leukemia driver genes such as HOX/MEIS1, and upregulates ITGAM. Enzomenib effectively induces cell differentiation, inhibits tumor cell proliferation, and suppresses primitive cell colony formation. Enzomenib reduces disease burden and prolongs survival, but causes adverse reactions including differentiation syndrome and QTc interval prolongation. Enzomenib is used for research on relapsed/refractory acute myeloid leukemia, acute lymphoblastic leukemia, and other hematologic malignancies with mixed lineage leukemia (MLL) rearrangements or NPM1 mutations .
    Enzomenib enantiomer

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