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Click Chemistry

Cat. No. Product Name Target Research Areas Chemical Structure
  • 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-P99666

    IFNAR Infection Cancer
    Interferon alfa-2b is a type I interferon that activates novel genes and exerts potent antiviral and antiproliferative activity on target cells. Signaling by Interferon alfa-2b requires receptor-dependent activation of Stat1 and Stat2 to form a heterodimeric STAT that binds to the DNA-binding protein IRF-9 (p48) and forms ISGF-3 (IFN-stimulated gene factor 3). The driver genes are then further activated by ISGF-3 to achieve antiviral function .
    Interferon alfa-2b
  • HY-W014983

    Bacterial Infection Metabolic Disease
    Neryl acetate is an essential oil component. Neryl acetate upregulates genes associated with epidermal differentiation, skin barrier formation and ceramide synthesis; it also increases filaggrin expression, total lipid and ceramide contents. Neryl acetate acts as the core driver mediating the skin barrier-forming and antibacterial effects of Helichrysum italicum essential oil .
    Neryl acetate
  • HY-173552

    Molecular Glues Histone Acetyltransferase BCL6 Cancer
    TCIP3 is a bivalent molecular glue with with dual binding to p300/CBP and BCL6. TCIP3 redirects p300 and CBP to activate programmed cell death genes normally repressed by the oncogenic driver, BCL6. TCIP3 can be used for the study of diffuse large B cell lymphomas (DLBCLs). TCIP3 exhibits no toxicity in non-transformed tonsillar lymphocytes or fibroblasts .
    TCIP3
  • HY-149241

    SHP2 Cancer
    SHP2-IN-13 is a highly selective and orally active SHP2 “tunnel site” allosteric inhibitor with an IC50 of 83.0 nM. SHP2-IN-13 has the potential for cancers bearing RTK oncogenic drivers and SHP2-related diseases research.
    SHP2-IN-13
  • HY-125244

    Histone Methyltransferase Cancer
    LEM-14-1189, a LEM-14 (HY-114340) derivative, is a NSDs inhibitor with IC50s of 418 μM (NSD1), 111 μM (NSD2), and 60 μM (NSD3), respectively. The NSDs, histone lysine methyltransferases (HMTases), are oncoproteins, drivers of a number of tumors. LEM-14-1189 can be used for multiple myeloma (MM) research .
    LEM-14-1189
  • HY-179277

    Adenosine Receptor Cardiovascular Disease
    MIPS3526 is a potent and selective A2B adenosine receptor (A2BR) agonist with a pEC50 of 10.17 (EC50 of 58 pM). MIPS3526 shows highly receptor subtype selective versus the A1R, A2AR, and A3R. MIPS3526 ameliorates angiotensin II stimulating effects in both cardiac myocytes and fibroblasts. MIPS3526 can be used for the study of cardiovascular disease including heart failure where cardiac remodeling is a major driver .
    MIPS3526
  • HY-E70696

    EGFR Cancer
    EGFR is a driver of tumorigenesis. EGFR is mainly found in an auto-inhibited, dimerization-incompetent, state at the plasma membrane (PM). Ligand binding promotes receptor dimerization, which determines a series of structural rearrangements that are conveyed to the cytoplasmic domain allowing the formation of asymmetric dimers between the two juxtaposed catalytic domains. EGFR has multiple mutants. EGFR C797S/L858R Recombinant Human Active Protein Kinase is a recombinant EGFR C797S/L858R protein that can be used to study EGFR C797S/L858R-related functions .
    EGFR C797S/L858R Recombinant Human Active Protein Kinase
  • HY-144138

    Estrogen Receptor/ERR Cancer
    Estrogen receptor antagonist 2 is a selective estrogen receptor downregulator. Estrogen (E2) and estrogen alpha receptor (ERα) are important drivers of breast cancer development. Estrogen receptor antagonist 2 has the potential for the research of breast cancer diseases (extracted from patent WO2021228210A1, compound 3) .
    Estrogen receptor antagonist 2
  • HY-144137

    Estrogen Receptor/ERR Cancer
    Estrogen receptor antagonist 1 is a selective estrogen receptor antagonist. Estrogen (E2) and estrogen alpha receptor (ERα) are important drivers of breast cancer development. Estrogen receptor antagonist 1 has the potential for the research of breast cancer diseases (extracted from patent WO2021249533A1, compound 4) .
    Estrogen receptor antagonist 1
  • HY-132913

    Biochemical Assay Reagents Cancer
    Cyclopropenone probe 1 can specifically and efficiently modify a triple-negative breast cancer driver, glutathione S-transferase pi-1 (GSTP1), by covalently binding at the catalytic active site. Cyclopropenone probe 1 is a click chemistry reagent, it contains an Alkyne group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing Azide groups.
    Cyclopropenone probe 1
  • HY-W014983R

    Reference Standards Bacterial Infection Metabolic Disease
    Neryl acetate (Standard) is the analytical standard of Neryl acetate. This product is intended for research and analytical applications. Neryl acetate is an essential oil component. Neryl acetate upregulates genes associated with epidermal differentiation, skin barrier formation and ceramide synthesis; it also increases filaggrin expression, total lipid and ceramide contents. Neryl acetate acts as the core driver mediating the skin barrier-forming and antibacterial effects of Helichrysum italicum essential oil .
    Neryl acetate (Standard)
  • HY-E70720

    FGFR Cancer
    FGFR3 activating mutations are drivers of malignancy in several human tissues, including bladder, lung, cervix, and blood. FGFR3 K650M is a mutant of FGFR3. FGFR3 K650M Recombinant Human Active Protein Kinase is a recombinant FGFR3 K650M protein that can be used to study FGFR3 K650M-related functions .
    FGFR3 K650M Recombinant Human Active Protein Kinase
  • HY-E70719

    FGFR Cancer
    FGFR3 activating mutations are drivers of malignancy in several human tissues, including bladder, lung, cervix, and blood. FGFR3 K650E is a mutant of FGFR3 that may be present in multiple myeloma cell lines. FGFR3 K650E Recombinant Human Active Protein Kinase is a recombinant FGFR3 K650E protein that can be used to study FGFR3 K650E-related functions .
    FGFR3 K650E Recombinant Human Active Protein Kinase
  • HY-E70704

    EGFR Cancer
    EGFR is a driver of tumorigenesis. EGFR is mainly found in an auto-inhibited, dimerization-incompetent, state at the plasma membrane (PM). Ligand binding promotes receptor dimerization, which determines a series of structural rearrangements that are conveyed to the cytoplasmic domain allowing the formation of asymmetric dimers between the two juxtaposed catalytic domains. EGFR has multiple mutants. EGFR G719C Recombinant Human Active Protein Kinase is a recombinant EGFR G719C protein that can be used to study EGFR G719C-related functions .
    EGFR G719C Recombinant Human Active Protein Kinase
  • HY-E70706

    EGFR Cancer
    EGFR is a driver of tumorigenesis. EGFR is mainly found in an auto-inhibited, dimerization-incompetent, state at the plasma membrane (PM). Ligand binding promotes receptor dimerization, which determines a series of structural rearrangements that are conveyed to the cytoplasmic domain allowing the formation of asymmetric dimers between the two juxtaposed catalytic domains. EGFR has multiple mutants. EGFR L718Q Recombinant Human Active Protein Kinase is a recombinant EGFR L718Q protein that can be used to study EGFR L718Q-related functions .
    EGFR L718Q Recombinant Human Active Protein Kinase
  • HY-E70695

    EGFR Cancer
    EGFR is a driver of tumorigenesis. EGFR is mainly found in an auto-inhibited, dimerization-incompetent, state at the plasma membrane (PM). Ligand binding promotes receptor dimerization, which determines a series of structural rearrangements that are conveyed to the cytoplasmic domain allowing the formation of asymmetric dimers between the two juxtaposed catalytic domains. EGFR has multiple mutants. EGFR C797S Recombinant Human Active Protein Kinase is a recombinant EGFR C797S protein that can be used to study EGFR C797S-related functions .
    EGFR C797S Recombinant Human Active Protein Kinase
  • HY-E70707

    EGFR Cancer
    EGFR is a driver of tumorigenesis. EGFR is mainly found in an auto-inhibited, dimerization-incompetent, state at the plasma membrane (PM). Ligand binding promotes receptor dimerization, which determines a series of structural rearrangements that are conveyed to the cytoplasmic domain allowing the formation of asymmetric dimers between the two juxtaposed catalytic domains. EGFR has multiple mutants. EGFR L858R Recombinant Human Active Protein Kinase is a recombinant EGFR L858R protein that can be used to study EGFR L858R-related functions .
    EGFR L858R Recombinant Human Active Protein Kinase
  • HY-E70708

    EGFR Cancer
    EGFR is a driver of tumorigenesis. EGFR is mainly found in an auto-inhibited, dimerization-incompetent, state at the plasma membrane (PM). Ligand binding promotes receptor dimerization, which determines a series of structural rearrangements that are conveyed to the cytoplasmic domain allowing the formation of asymmetric dimers between the two juxtaposed catalytic domains. EGFR has multiple mutants. EGFR L861Q Recombinant Human Active Protein Kinase is a recombinant EGFR L861Q protein that can be used to study EGFR L861Q-related functions .
    EGFR L861Q Recombinant Human Active Protein Kinase
  • HY-E70705

    EGFR Cancer
    EGFR is a driver of tumorigenesis. EGFR is mainly found in an auto-inhibited, dimerization-incompetent, state at the plasma membrane (PM). Ligand binding promotes receptor dimerization, which determines a series of structural rearrangements that are conveyed to the cytoplasmic domain allowing the formation of asymmetric dimers between the two juxtaposed catalytic domains. EGFR has multiple mutants. EGFR G719S Recombinant Human Active Protein Kinase is a recombinant EGFR G719S protein that can be used to study EGFR G719S-related functions .
    EGFR G719S Recombinant Human Active Protein Kinase
  • HY-E70709

    EGFR Cancer
    EGFR is a driver of tumorigenesis. EGFR is mainly found in an auto-inhibited, dimerization-incompetent, state at the plasma membrane (PM). Ligand binding promotes receptor dimerization, which determines a series of structural rearrangements that are conveyed to the cytoplasmic domain allowing the formation of asymmetric dimers between the two juxtaposed catalytic domains. EGFR has multiple mutants. EGFR T790M Recombinant Human Active Protein Kinase is a recombinant EEGFR T790M protein that can be used to study EGFR T790M-related functions .
    EGFR T790M Recombinant Human Active Protein Kinase
  • HY-E70703

    EGFR Cancer
    EGFR is a driver of tumorigenesis. EGFR is mainly found in an auto-inhibited, dimerization-incompetent, state at the plasma membrane (PM). Ligand binding promotes receptor dimerization, which determines a series of structural rearrangements that are conveyed to the cytoplasmic domain allowing the formation of asymmetric dimers between the two juxtaposed catalytic domains. EGFR has multiple mutants. EGFR d752-759 Recombinant Human Active Protein Kinase is a recombinant EGFR d752-759 protein that can be used to study EGFR d752-759-related functions .
    EGFR d752-759 Recombinant Human Active Protein Kinase
  • HY-E70697

    EGFR Cancer
    EGFR is a driver of tumorigenesis. EGFR is mainly found in an auto-inhibited, dimerization-incompetent, state at the plasma membrane (PM). Ligand binding promotes receptor dimerization, which determines a series of structural rearrangements that are conveyed to the cytoplasmic domain allowing the formation of asymmetric dimers between the two juxtaposed catalytic domains. EGFR has multiple mutants. EGFR d746-750 Recombinant Human Active Protein Kinase is a recombinant EGFR d746-750 protein that can be used to study EGFR d746-750-related functions .
    EGFR d746-750 Recombinant Human Active Protein Kinase
  • HY-E70711

    EGFR Cancer
    EGFR is a driver of tumorigenesis. EGFR is mainly found in an auto-inhibited, dimerization-incompetent, state at the plasma membrane (PM). Ligand binding promotes receptor dimerization, which determines a series of structural rearrangements that are conveyed to the cytoplasmic domain allowing the formation of asymmetric dimers between the two juxtaposed catalytic domains. EGFR has multiple mutants. EGFR T790M/L858R Recombinant Human Active Protein Kinase is a recombinant EGFR T790M/L858R protein that can be used to study EGFR T790M/L858R-related functions .
    EGFR T790M/L858R Recombinant Human Active Protein Kinase
  • HY-E70701

    EGFR Cancer
    EGFR is a driver of tumorigenesis. EGFR is mainly found in an auto-inhibited, dimerization-incompetent, state at the plasma membrane (PM). Ligand binding promotes receptor dimerization, which determines a series of structural rearrangements that are conveyed to the cytoplasmic domain allowing the formation of asymmetric dimers between the two juxtaposed catalytic domains. EGFR has multiple mutants. EGFR d747-749/A750P Recombinant Human Active Protein Kinase is a recombinant EGFR d747-749/A750P protein that can be used to study EGFR d747-749/A750P-related functions .
    EGFR d747-749/A750P Recombinant Human Active Protein Kinase
  • HY-E70698

    EGFR Cancer
    EGFR is a driver of tumorigenesis. EGFR is mainly found in an auto-inhibited, dimerization-incompetent, state at the plasma membrane (PM). Ligand binding promotes receptor dimerization, which determines a series of structural rearrangements that are conveyed to the cytoplasmic domain allowing the formation of asymmetric dimers between the two juxtaposed catalytic domains. EGFR has multiple mutants. EGFR d746-750/C797S Recombinant Human Active Protein Kinase is a recombinant EGFR d746-750/C797S protein that can be used to study EGFR d746-750/C797S-related functions .
    EGFR d746-750/C797S Recombinant Human Active Protein Kinase
  • HY-E70702

    EGFR Cancer
    EGFR is a driver of tumorigenesis. EGFR is mainly found in an auto-inhibited, dimerization-incompetent, state at the plasma membrane (PM). Ligand binding promotes receptor dimerization, which determines a series of structural rearrangements that are conveyed to the cytoplasmic domain allowing the formation of asymmetric dimers between the two juxtaposed catalytic domains. EGFR has multiple mutants. EGFR d747-752/P753S Recombinant Human Active Protein Kinase is a recombinant EGFR d747-752/P753S protein that can be used to study EGFR d747-752/P753S-related functions .
    EGFR d747-752/P753S Recombinant Human Active Protein Kinase
  • HY-E70718

    FGFR Cancer
    FGFR3 activating mutations are drivers of malignancy in several human tissues, including bladder, lung, cervix, and blood. FGFR3 G697C is a mutant of FGFR3 that may be present in oral squamous cell carcinoma. FGFR3 G697C increases FGFR3 auto-phosphorylation. FGFR3 G697C Recombinant Human Active Protein Kinase is a recombinant FGFR3 G697C protein that can be used to study FGFR3 G697C-related functions .
    FGFR3 G697C Recombinant Human Active Protein Kinase
  • 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
  • HY-E70699

    EGFR Cancer
    EGFR is a driver of tumorigenesis. EGFR is mainly found in an auto-inhibited, dimerization-incompetent, state at the plasma membrane (PM). Ligand binding promotes receptor dimerization, which determines a series of structural rearrangements that are conveyed to the cytoplasmic domain allowing the formation of asymmetric dimers between the two juxtaposed catalytic domains. EGFR has multiple mutants. EGFR d746-750/T790M/C797S Recombinant Human Active Protein Kinase is a recombinant EGFR d746-750/T790M/C797S protein that can be used to study EGFR d746-750/T790M/C797S-related functions .
    EGFR d746-750/T790M/C797S Recombinant Human Active Protein Kinase
  • HY-E70700

    EGFR Cancer
    EGFR is a driver of tumorigenesis. EGFR is mainly found in an auto-inhibited, dimerization-incompetent, state at the plasma membrane (PM). Ligand binding promotes receptor dimerization, which determines a series of structural rearrangements that are conveyed to the cytoplasmic domain allowing the formation of asymmetric dimers between the two juxtaposed catalytic domains. EGFR has multiple mutants. EGFR d746-750/T790M/C797S/L858R Recombinant Human Active Protein Kinase is a recombinant EGFR d746-750/T790M/C797S/L858R protein that can be used to study EGFR d746-750/T790M/C797S/L858R-related functions .
    EGFR d746-750/T790M/C797S/L858R Recombinant Human Active Protein Kinase

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