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Results for "

ATPase domain

" in MedChemExpress (MCE) Product Catalog:

27

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Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-119254
    BAY-850
    5 Publications Verification

    Epigenetic Reader Domain Metabolic Disease
    BAY-850, a chemical probe, is a potent and isoform selective ATPase family AAA domain-containing protein 2 (ATAD2) inhibitor, with an IC50 of 166 nM .
    BAY-850
  • HY-12283
    Rostafuroxin
    2 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-15098
    Apoptozole
    10+ Cited Publications

    Apoptosis Activator VII

    HSP Apoptosis Cancer
    Apoptozole (Apoptosis Activator VII) is an inhibitor of the ATPase domain of Hsc70 and Hsp70, with Kds of 0.21 and 0.14 μM, respectively, and can induce apoptosis.
    Apoptozole
  • HY-103666
    CY-09
    Maximum Cited Publications
    50 Publications Verification

    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-174374

    Topoisomerase Cardiovascular Disease
    Topobexin is a TOP2B-selective inhibitor with IC50 values of 0.19 μM and 4.8 μM for TOP2B and TOP2A (DNA decatenation assay). Topobexin binds to non-homologous residues in the obex pocket and targets the ATPase domain of TOP2B. Topobexin prevents anthracycline-induced DNA double-strand break formation, apoptotic signaling mediated by caspase 3/7, 8 and 9, cardiomyocyte morphological changes, mitochondrial depolarization/loss, left ventricular systolic dysfunction, extracellular matrix remodeling, fibrotic alterations, and increases in plasma cardiac troponin T and BNP. Topobexin does not impair the antiproliferative effects of anthracyclines in cancer cells, exhibits no intrinsic cytotoxicity in cardiomyocytes, and is well tolerated in rabbits. Topobexin can be used in studies related to anthracycline-induced cardiotoxicity .
    Topobexin
  • HY-175238

    ATP Synthase DNA/RNA Synthesis Neurological Disease Cancer
    KI-DX-014 is a DDX21 inhibitor with high RNA-binding inhibitory activity (IC50 of 3.31 μM). KI-DX-014 targets DDX21’s intrinsically disordered C-terminal domain, inhibits DDX21-structured RNA interaction, modulates DDX21’s RNA-dependent ATPase activity, and disrupts DDX21 biomolecular condensate formation. KI-DX-014 attenuates in vitro P-TEFb release from the 7SK snRNP complex, suppresses P-TEFb-dependent RNA polymerase II CTD phosphorylation, and induces developmental defects in zebrafish embryos. KI-DX-014 acts as a chemical probe for dissecting DDX21 functions in normal physiology and disease states. KI-DX-014 can be used for cancers and neurodegenerative disorders research .
    KI-DX-014
  • HY-N1431
    Tabersonine
    3 Publications Verification

    NOD-like Receptor (NLR) Apoptosis Cytochrome P450 NF-κB PI3K Akt CDK Caspase Interleukin Related p38 MAPK Inflammation/Immunology Cancer
    Tabersonine is a selective, orally active NLRP3 inhibitor. Tabersonine directly binds to the NACHT domain of NLRP3, inhibiting its ATPase activity and oligomerization, thereby blocking ASC spot formation and caspase-1 activation, and reducing the release of pro-inflammatory cytokines such as IL-1β. Tabersonine also inhibits K63-linked ubiquitination of TRAF6, blocking NF-κB, PI3K/Akt, and p38 MAPK signaling pathways. Tabersonine can inhibit inflammatory responses, induce apoptosis of liver cancer cells through mitochondrial pathways and death receptor pathways, reduce mitochondrial membrane potential, promote cytochrome c release, and activate caspase proteins. Tabersonine is mainly used in the study of NLRP3-driven inflammatory diseases (such as acute lung injury, sepsis, peritonitis) and tumors such as liver cancer .
    Tabersonine
  • HY-122198
    ML367
    1 Publications Verification

    Checkpoint Kinase (Chk) Cancer
    ML367 is a potent inhibitor of ATPase family AAA domain-containing protein 5 (ATAD5) stabilization, acts as a probe molecule that has low micromolar inhibitory activity. ML367 blocks DNA repair pathways, suppresses general DNA damage responses including RPA32-phosphorylation and CHK1-phosphorylation in response to UV irradiation .
    ML367
  • HY-122247

    Kinesin Cancer
    PVZB1194 is a biphenyl-type inhibitor of Kinesin-5 ATPase activity that binds to the α4/α6 site of the motor domain in a nucleotide competitive manner. PVZB1194 has an IC50 of 0.12 μM for KSP ATPase. PVZB1194 induces mitotic arrest with the formation of a monopolar spindle, and inhibits HeLa cells proliferatio (IC50: 5.5 μM). PVZB1194 can be used in the study of tumors .
    PVZB1194
  • HY-175278

    NOD-like Receptor (NLR) Neurological Disease Inflammation/Immunology
    BAL-1516 is an orally active NLRP3 inhibitor with human NLRP3 Kd of 14.2 nM, mouse NLRP3 Kd of 200 nM, and blood-brain barrier penetration.BAL-1516 binds to a surface groove of the NLRP3 nucleotide-binding domain, contacts FISNA and WHD subdomains, forms three hydrogen bonds to the peripheral β-strand of the triple-ATPase, and does not alter NLRP3 ATP-hydrolysis activity.BAL-1516 shows specificity for NLRP3 over other NOD-like receptors, directly binds mouse NLRP3, and inhibits inflammasome formation in monocytes and microglia .
    BAL-1516
  • HY-W317853

    Proton Pump Others
    Protonstatin-1 is a selective plasma membrane (PM) H +-ATPase inhibitor (IC50 of 3.9 μM) that inhibits auxin transport. Protonstatin-1 interacts with the PM H +-ATPase central loop and may thus impede the functions of the N- and/or P-domain to inhibit the pump activity .
    Protonstatin-1
  • HY-158346

    DNA/RNA Synthesis Cancer
    RP-2119 is an orally bioactive Polymerase Theta (Polθ) inhibitor, with an IC50 of 0.7 nM against human Polθ ATPase. RP-2119 reduces Polθ activity and exerts antiproliferative effects in BRCA2-deficient cancer cells. RP-2119 exhibits antitumor activity in BRCA2-deficient cancer cell xenograft mouse models . RP-2119 can be used for the research of cancer and homologous recombination-deficient cancers, including brca1/brca2-mutant cancers and shld2-mutant cancers .
    RP-2119
  • HY-119254A

    Epigenetic Reader Domain Metabolic Disease
    trans-BAY-850 is the trans isomer of BAY-850 (HY-119254). BAY-850 is a potent and isoform selective ATPase family AAA domain-containing protein 2 (ATAD2) inhibitor, with an IC50 of 166 nM.
    trans-BAY-850
  • HY-N1431A
    Tabersonine hydrochloride
    3 Publications Verification

    NOD-like Receptor (NLR) Apoptosis Cytochrome P450 NF-κB PI3K Akt CDK Caspase Interleukin Related p38 MAPK Neurological Disease Inflammation/Immunology
    Tabersonine hydrochloride is a selective, orally active NLRP3 inhibitor. Tabersonine hydrochloride directly binds to the NACHT domain of NLRP3, inhibiting its ATPase activity and oligomerization, thereby blocking ASC spot formation and caspase-1 activation, and reducing the release of pro-inflammatory cytokines such as IL-1β. Tabersonine hydrochloride also inhibits K63-linked ubiquitination of TRAF6, blocking NF-κB, PI3K/Akt, and p38 MAPK signaling pathways. Tabersonine hydrochloride can inhibit inflammatory responses, induce apoptosis of liver cancer cells through mitochondrial pathways and death receptor pathways, reduce mitochondrial membrane potential, promote cytochrome c release, and activate caspase proteins. Tabersonine hydrochloride is mainly used in the study of NLRP3-driven inflammatory diseases (such as acute lung injury, sepsis, peritonitis) and tumors such as liver cancer .
    Tabersonine hydrochloride
  • HY-W494890

    Epigenetic Reader Domain Cancer
    SMARCA2-IN-10 (Compound 4) is a highly selective SMARCA2 ATPase domain inhibitor (IC50=17.676 μM). SMARCA2-IN-10 induces cell death in SMARCA4-deficient tumors. SMARCA2-IN-10 is promising for research of SMARCA4-mutant non-small cell lung cancer, small cell ovarian carcinoma, and melanoma .
    SMARCA2-IN-10
  • HY-145416

    Bacterial Infection
    G247 is a specific MsbA inhibitor. G247 acts as a transmembrane domains (TMDs) wedge, symmetrically increasing nucleotide-binding domains (NBDs) separation and preventing conformational transition of MsbA. G247 suppresses ATPase activity by increasing inter-NBD distance .
    G247
  • HY-174563

    mRNA Cancer
    Human OLA1 mRNA encodes the human Obg like ATPase 1 (OLA1) protein, a member of the GTPase protein family. OLA1 interacts with breast cancer-associated gene 1 (BRCA1) and BRCA1-associated RING domain protein (BARD1), and is involved in centrosome regulation.
    Human OLA1 mRNA
  • HY-W715630

    Topoisomerase Cancer
    Salvicine is a DNA topoisomerase II inhibitor (IC50=3 μM). Salvicine increases the interaction between DNA and Topo II by interacting with the ATPase domain, inhibiting DNA degradation and ATP hydrolysis. Salvicine has anticancer activities, including inhibiting Topo II, causing DNA damage, overcoming multidrug resistance, and inhibiting tumor cell adhesion .
    Salvicine
  • HY-12283R

    PST 2238 (Standard)

    Na+/K+ ATPase RSV Reference Standards Cardiovascular Disease
    Rostafuroxin (Standard) is the analytical standard of Rostafuroxin. This product is intended for research and analytical applications. 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 (Standard)
  • HY-178490

    Epigenetic Reader Domain Cancer
    BRM/BRG1 ATP-IN-8 (Compound Cpd14) is an orally active BRG1/BRM ATPase domain inhibitor. BRM/BRG1 ATP-IN-8 exerts antitumor effects by disrupting aberrant chromatin remodeling in cancer cells, inducing apoptosis and growth arrest. BRM/BRG1 ATP-IN-8 is promising for research of BRG1/BRM-dependent malignancies, including hematological cancers, prostate cancer, breast cancer, and Ewing's sarcoma .
    BRM/BRG1 ATP-IN-8
  • HY-124253

    p97 Cancer
    SMDC818909 is an indole amide-derived uncompetitive inhibitor targeting p97 AAA+ ATPase, with an IC50 of 3.5 μM and a Ka of 9.1 μM. SMDC818909 binds to the D2 ATPase domain of p97, preferentially associates with the ADP-bound conformation of p97, allosterically blocks the ATP hydrolysis cycle of p97, and inhibits its mediated intracellular protein homeostasis regulatory function. SMDC818909 is applied to the research and development of p97-targeted antitumor drugs, as well as studies on cancer-related proteotoxic stress mechanisms .
    SMDC818909
  • HY-181810

    HSP Bacterial Infection
    EG36 is a selective E. coli DnaK inhibitor that inhibits DnaK ATPase activity at a concentration of 100 μM. EG36 directly binds to the nucleotide-binding domain (NBD) of E. coli DnaK by disrupting the DnaK-DnaJ interaction. EG36 can be used for research on bacterial infectious diseases .
    EG36
  • HY-181557

    DNA Alkylator/Crosslinker DNA/RNA Synthesis Apoptosis Cancer
    SY-589 is an orally active DNA polymerase Polθ helicase domain inhibitor (IC50=2.29 nM) and DNA damage inducer. SY-589 inhibits the ATPase activity of the Polθ helicase domain and blocks the Polθ-mediated microhomology-mediated end joining (MMEJ) DNA repair pathway (IC50=0.85 nM). SY-589 also induces the accumulation of DNA double-strand breaks by increasing γ-H2AX levels. SY-589 exerts antiproliferative effects on BRCA2-deficient cells and is used in the research of HR-deficient tumors .
    SY-589
  • HY-182936

    Bacterial DNA/RNA Synthesis Infection
    Antibacterial agent 338 (Compound 65) is an antibacterial agent and GyrB inhibitor, with an IC50 of 12.60 nM against GyrB from E. coli. Antibacterial agent 338 binds to the ATP-binding domain of E. coli GyrB, thereby inhibiting the ATPase activity of GyrB. Antibacterial agent 338 exhibits broad-spectrum antibacterial activity against multidrug-resistant Gram-negative bacteria. Antibacterial agent 338 reduces bacterial load in a neutropenic mouse thigh infection model. Antibacterial agent 338 can be used for the research of Acinetobacter baumannii infection .
    Antibacterial agent 338
  • HY-181799

    Bacterial Infection
    EG35 is a nucleotide-binding domain-targeted DnaK inhibitor. EG35 binds to Escherichia coli DnaK and inhibits the ATPase activity stimulated by DnaJ and GrpE .
    EG35
  • HY-116783

    Bacterial DNA/RNA Synthesis Infection
    GyrB-IN-1 is a DNA gyrase (GyrB) inhibitor. GyrB-IN-1 shows an IC50 of 19.1 μM against Mycobacterium smegmatis GyrB ATPase activity and 21.9 μM against Mycobacterium tuberculosis GyrB DNA supercoiling activity. GyrB-IN-1 exerts antimycobacterial activity and has cytotoxicity. GyrB-IN-1 can be used for the research of tuberculosis .
    GyrB-IN-1
  • HY-103666R

    Reference Standards NOD-like Receptor (NLR) Inflammation/Immunology
    CY-09 (Standard) is the analytical standard of CY-09 (HY-103666). This product is intended for research and analytical applications. 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 (Standard)

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