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ATP domain

" in MedChemExpress (MCE) Product Catalog:

27

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Antibodies

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-12134
    Poloxin
    3 Publications Verification

    Polo-like Kinase (PLK) Cancer
    Poloxin is a non-ATP competitive Polo-like Kinase 1 (PLK1) inhibitor that targets the polo-box domain, with an IC50 of appr 4.8 μM.
    Poloxin
  • HY-B0795
    MHY1485
    Maximum Cited Publications
    123 Publications Verification

    mTOR Autophagy Cancer
    MHY1485 is a potent cell-permeable mTOR activator that targets the ATP domain of mTOR. MHY1485 inhibits autophagy by suppression of fusion between autophagosomes and lysosomes .
    MHY1485
  • HY-17537
    APY29
    5+ Cited Publications

    IRE1 Cancer
    APY29, an ATP-competitive inhibitor, is an allosteric modulator of IRE1α which inhibits IRE1α autophosphorylation by binding to the ATP-binding pocket with IC50 of 280 nM. APY29 acts as a ligand that allosterically activates IRE1α adjacent RNase domain .
    APY29
  • HY-153692

    DNA/RNA Synthesis Cancer
    WRN inhibitor 1 (example 7) is a Wemer Syndrome ATP dependent helicase enzyme (WRN) inhibitor that inhibits WRN helicase domain activity. WRN inhibitor 1 has the potential to study cancer .
    WRN inhibitor 1
  • HY-160519

    Bacterial Antibiotic Infection
    Targocil-II (Compound 2) is an ABC transporter inhibitor with a IC50 value of 137 nM. Targocil-II prevents ATP hydrolysis by binding to allosteric sites of the TM domain. Targocil-II has (antibacterial) activity .
    Targocil-II
  • HY-12283
    Rostafuroxin
    1 Publications Verification

    PST 2238

    Na+/K+ ATPase RSV Cardiovascular Disease
    Rostafuroxin (PST 2238), a digitoxigenin derivative, is an orally active and potent Na +,K +-ATPase (ATP1A1) antognist. Rostafuroxin binds specifically to the ATP1A1 extracellular domain and blocks respiratory syncytial virus (RSV)-triggered EGFR Tyr845 phosphorylation. Rostafuroxin has antihypertensive and anti-RSV activity .
    Rostafuroxin
  • HY-112292
    GW806742X
    10+ Cited Publications

    Mixed Lineage Kinase VEGFR Others
    GW806742X, an ATP mimetic and a potent MLKL (Mixed Lineage Kinase Domain-Like protein) inhibitor, binds the MLKL pseudokinase domain with a Kd of 9.3 μM. GW806742X has activity against VEGFR2 (IC50=2 nM). GW806742X retards MLKL membrane translocation and inhibits necroptosis .
    GW806742X
  • HY-112292A
    GW806742X hydrochloride
    10+ Cited Publications

    Mixed Lineage Kinase VEGFR Cancer
    GW806742X hydrochloride, an ATP mimetic and a potent MLKL (Mixed Lineage Kinase Domain-Like protein) inhibitor, binds the MLKL pseudokinase domain with a Kd of 9.3 μM. GW806742X hydrochloride has activity against VEGFR2 (IC50=2 nM). GW806742X hydrochloride retards MLKL membrane translocation and inhibits necroptosis .
    GW806742X hydrochloride
  • HY-N13059

    Antibiotic Infection
    Waldiomycin is an antibiotic that can be isolated from Streptomyces sp. MK844-mF10 that has inhibitory effects on low GC-content Gram-positive bacteria. Waldiomycin inhibits the activity of WalK kinase by targeting its ATP-binding domain, thereby blocking the WalK/WalR signal transduction system, which plays a role in cell growth and division .
    Waldiomycin
  • HY-106723

    HSP Cancer
    AMP-PCP is an ATP analogue and can bind to Hsp90 N-terminal domain with a Kd value of 3.8 μM. AMP-PCP binding favors the formation of the active homodimer of Hsp90 .
    AMP-PCP
  • HY-120097

    LIM Kinase (LIMK) Reverse Transcriptase Infection
    R-10015, a broad-spectrum antiviral compound for HIV infection, acts as a potent and selective inhibitor of LIM domain kinase (LIMK) and binds to the ATP-binding pocket, with an IC50 of 38 nM for human LIMK1 .
    R-10015
  • HY-106723A

    HSP Cancer
    AMP-PCP disodium is an ATP analogue and can bind to Hsp90 N-terminal domain with a Kd value of 3.8 μM. AMP-PCP disodium binding favors the formation of the active homodimer of Hsp90 .
    AMP-PCP disodium
  • HY-P2467

    Fluorescent Dye Metabolic Disease
    Biotin-TAT (47-57), a biotin tagged TAT, is a transactivator of transcription. Biotin-TAT (47-57) is one of the most widely used protein transduction domains (PTDs) into different primary cells is ATP- and temperature-dependent, indicating the involvement of endocytosis .
    Biotin-TAT (47-57)
  • HY-103666
    CY-09
    25+ Cited Publications

    NOD-like Receptor (NLR) Inflammation/Immunology
    CY-09 is a selective and direct NLRP3 inhibitor. CY-09 directly binds to the ATP-binding motif of NLRP3 NACHT domain and inhibits NLRP3 ATPase activity, resulting in the suppression of NLRP3 inflammasome assembly and activation .
    CY-09
  • HY-161916

    DNA/RNA Synthesis Cancer
    Polθ-IN-4 (Example 1) is a DNA polymerase theta (Polθ) inhibitor that inhibits Polθ activity by targeting its ATP-dependent helicase domain. Polθ-IN-4 can be utilized in cancer research .
    Polθ-IN-4
  • HY-122184

    HSP Apoptosis Cancer
    PET-16 is a selective HSP70 inhibitor that binds to an allosteric pocket of the substrate-binding domain. PET-16 inhibits the ability of HSP70 to cycle between ATP-bound and ADP-bound states. PET-16 induces apoptosis in multiple myeloma .
    PET-16
  • HY-148757

    CaMK Metabolic Disease
    TIM-063 is a selective and cell-permeable CaMKK inhibitor, ATP competitive inhibitor, can directly target the catalytic domain of CaMKK, with the Ki values of 0.35 μM and 0.2 μM for CaMKKα and CaMKKβ, respectively, the IC50 values are 0.63 μM and 0.96 μM, respectively .
    TIM-063
  • HY-127111
    NDI-091143
    2 Publications Verification

    ATP Citrate Lyase Cancer
    NDI-091143 is a potent and high-affinity human ATP-citrate lyase (ACLY) inhibitor with an IC50 of 2.1 nM (ADP-Glo assay), a Ki of 7.0 nM and a Kd of 2.2 nM. NDI-091143 inhibits ACLY catalysis allosterically, by stabilizing large conformational changes in the citrate domain that indirectly block the binding and recognition of citrate .
    NDI-091143
  • HY-W684904

    TGF-β Receptor Cancer
    LY550410 is a small-molecule ATP-competitive inhibitor against type I TGF-β receptor kinase, which contains heteroaryl rings for potent binding to the kinase-domain active site. LY550410 modulates TGF-β signalling, thereby regulates gene expression and ultimately cell growth. LY550410 is promising for research of cancers .
    LY550410
  • HY-80002
    BMX-IN-1
    5 Publications Verification

    BMX kinase inhibitor

    Btk BMX Kinase Cancer
    BMX-IN-1 is a selective, irreversible inhibitor of bone marrow tyrosine kinase on chromosome X (BMX) that targets Cys 496 in the BMX ATP binding domain with an IC50 of 8 nM, also targets the related Bruton’s tyrosine kinase (BTK) with an IC50 value of 10.4 nM, but is more than 47-656-fold less potent against Blk, JAK3, EGFR, Itk, or Tec activity.
    BMX-IN-1
  • HY-164145

    TGF-β Receptor Others Cancer
    CDD-1653 is a potent and selective BMPR2 inhibitor (IC50=2.8 nM). CDD-1653 reduces the ability of ATP to bind to the kinase domain of BMPR2, thereby affecting the phosphorylation of SMAD1/5/8 transcription factors, which play a key role in the BMP signaling pathway. CDD-1653 can be used to study diseases related to the BMP signaling pathway .
    CDD-1653
  • HY-118175

    Others Others
    RG 14921, a compound structurally related to erbstatin, was investigated for its mechanism of inhibition of epidermal growth factor (EGF) receptor tyrosine kinase and CAMP-dependent kinase activity by kinetic analysis. Both compounds are slow-binding inhibitors of EGF receptor kinase. Erbstatin inhibits EGF receptor kinase as a partially competitive inhibitor relative to ATP and peptide substrates, suggesting that it binds at different positions in the enzyme's ATP- and peptide substrate-binding sites, thereby reducing the enzyme's binding affinity for both substrates. In contrast, the derivative RG 14921 inhibits EGF receptor kinase activity as a noncompetitive inhibitor relative to ATP and peptide substrates. Structurally related compounds exhibit different modes of inhibition, suggesting that the catalytic center of the receptor kinase domain may have a dynamic and possibly extended structure. Erbstatin and RG 14921 exerted similar effects on CAMP-dependent protein kinase activity. In this system, both compounds exhibited strong inhibition and acted in a competitive inhibition manner with ATP and a noncompetitive inhibition manner with peptide substrates.
    RG 14921
  • HY-50867
    Lestaurtinib
    3 Publications Verification

    CEP-701; KT-5555

    JAK FLT3 Trk Receptor Apoptosis STAT Cancer
    Lestaurtinib (CEP-701) is an orally active and selective RPTKs (receptor protein tyrosine kinase) inhibitor, competitively inhibits ATP binding to the TrkA/B/C domain. Lestaurtinib inhibits RPTKs phosphorylation, with IC50s of 2, 25 and 0.9 nM for FLT3, TrkA and JAK2, respectively. Lestaurtinib induces apoptosis and cycle arrest, also can inhibit growth of tumor .
    Lestaurtinib
  • HY-109076

    EBC-46

    PKC Cancer
    Tigilanol tiglate (EBC-46) is a protein kinase C (PKC)/C1 domain activator. Tigilanol tiglate is a natural product with antitumor activity used for local administration against a variety of skin malignancies. Tigilanol tiglate is associated with mitochondrial/endoplasmic reticulum (ER) dysfunction, leading to activation of the unfolded protein response (UPRmt/ER) and subsequent induction of ATP depletion, organelles expansion, caspase activation, gasdermin E cleavage, and terminal necrosis. Tigilanol tiglate, as a small anti-tumor molecule with immunomodulatory effects, can be used in the study of head and neck squamous cell carcinoma and soft tissue sarcoma .
    Tigilanol tiglate
  • HY-155975

    PI3K Inflammation/Immunology
    PI3Kδ-IN-14 (Compound (S)-29) is a selective PI3Kδ inhibitor (IC50: 0.8 nM, Kd: 84.8 nM). PI3Kδ-IN-14 binds to the ATP-binding site of the kinase domain of PI3Kδ. PI3Kδ-IN-14 has anti-inflammatory activity by inhibiting the PI3K/AKT pathway. PI3Kδ-IN-14 ameliorates acute lung injury (ALI) .
    PI3Kδ-IN-14
  • HY-164445

    STAT Cancer
    STAT3-IN-32 (compound 2p) is an orally active, potent STAT3 dual phosphorylation inhibitor with an indole-containing tetra-aromatic heterocycle scaffold. STAT3-IN-32 exhibits STAT3 luciferase inhibition activity using HEK293T cells with an IC50 of 5.3 nM and ATP production inhibition activity using BxPC-3 cells with an IC50 of 4.2 nM. STAT3-IN-32 significantly blocks p-Tyr705 and p-Ser727 and causes the abrogation of the corresponding nuclear transcription and mitochondrial oxidative phosphorylation functions of STAT3 by targeting the STAT3 SH2 domain (KD=21.3 nM). STAT3-IN-32 exhibits significant suppressive effects in a pancreatic cancer xenograft model .
    STAT3-IN-32
  • HY-164393

    JAK Bcr-Abl Apoptosis Cancer
    ON044580, an α-benzoyl styryl benzyl sulfide, is a potent and non-ATP-competitive JAK2 kinase inhibitor with IC50s of 1.23 μM, 1.09 μM for WT and V617F mutant JAK2, respectively. ON044580 inhibits the JAK2 kinase activity either by binding to the STAT-5 binding domain of JAK2 or by binding to an allosteric site. ON044580 exerts its antiproliferative effect in JAK2 V617F-positive leukemic cells. ON044580 effectively induces apoptosis of Imatinib (HY-15463)-resistant chronic myelogenous leukemia (CML) cells. ON044580 also inhibits both WT and T315I mutant forms of the BCR-ABL kinase. ON044580 has the potential for myeloproliferative disorders typified by aberrant JAK/STAT signaling .
    ON044580

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