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Results for "

complex V

" in MedChemExpress (MCE) Product Catalog:

6

Inhibitors & Agonists

1

Natural
Products

8

Recombinant Proteins

Targets Recommended:
Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-152949

    Myosin Neurological Disease
    Myosin V-IN-1 (compound 8) is a potent and selective Myosin V inhibitor, with a Ki of 6 μM. Myosin V-IN-1 shows acute inhibition of myosin V. Myosin V-IN-1 slows the actin-activated myosin V ATPase by specifically inhibiting ADP release from the actomyosin complex .
    Myosin V-IN-1
  • HY-130257

    PROTACs Cancer
    CP5V is a PROTAC connected by ligands for von Hippel-Lindau and CDK, which specifically degrades Cdc20 by linking Cdc20 to the VHL/VBC complex for ubiquitination followed by proteasomal degradation. CP5V induces mitotic inhibition and suppresses cancer cell proliferation .
    CP5V
  • HY-N6782
    Oligomycin
    25+ Cited Publications

    Oxidative Phosphorylation ATP Synthase Fungal Antibiotic Infection Cancer
    Oligomycin, an antifungal antibiotic, is an inhibitor of H +-ATP-synthase. Oligomycin blocks oxidative phosphorylation and the electron transport chain. Oligomycin inhibits HIF-1alpha expression in hypoxic tumor cells .
    Oligomycin
  • HY-130841

    APC Ligands for Target Protein for PROTAC Cancer
    Apcin-A, an Apcin derivative, is an anaphase-promoting complex (APC) inhibitor. Apcin-A interacts strongly with Cdc20, and inhibits the ubiquitination of Cdc20 substrates. Apcin-A can be used to synthesize the PROTAC CP5V (HY-130257) .
    Apcin-A
  • HY-12343

    CID-53347902

    Potassium Channel Cardiovascular Disease
    ML277 (CID-53347902) is a potent and selective activator of K(v)7.1 (KCNQ1) potassium channel activator (EC50=270 nM), rescues function of pathophysiologically important mutant channel complexes in human induced pluripotent stem cell-derived cardiomyocytes .
    ML277
  • HY-155474

    Apoptosis Cancer
    Me4Phen (compound 3) is an oxygen rhenium (V) complex that depletes mitochondrial membrane potential and upregulates intracellular reactive oxygen species (ROS), leading to endoplasmic reticulum stress-mediated necrosis of cancer cells. Me4Phen is highly lipophilic and effectively overcomes Cisplatin (HY-17394) resistance in a variety of cancer cells .
    Me4Phen

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