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Results for "

catalytic center

" in MedChemExpress (MCE) Product Catalog:

8

Inhibitors & Agonists

2

Oligonucleotides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-D0020

    Biochemical Assay Reagents Infection Endocrinology
    2,2'-Bipyridine is the unique molecular scaffold of the bioactive natural products. 2,2'-Bipyridine is extensively used as the core structure of many chelating ligands by acting as a bridge in the arrangement of the catalytic center. 2,2'-Bipyridine shows robust redox stability and hyperglycemic activity .
    2,2'-Bipyridine
  • HY-107584

    Others Metabolic Disease
    BYK 191023 is a highly selective inducible nitric-oxide synthase (iNOS) inhibitor. BYK 191023 interacts with the catalytic center of the enzyme. BYK 191023 can be used to study the in vivo and in vitro effects mediated by iNOS .
    BYK 191023 dihydrochloride
  • HY-122060

    NO Synthase Metabolic Disease
    BYK 191023 is a selective and L-arginine competitive inducible nitric-oxide synthase inhibitor with an IC50 value of 86 nM, 17 µM, 162 µM for inducible (iNOS), neuronal (nNOS), and endothelial (eNOS) NO synthases respectively .
    BYK 191023
  • HY-158820

    QPI-1007

    Small Interfering RNA (siRNA) Caspase Cardiovascular Disease
    Cosdosiran is a chemically modified siRNA designed to temporarily inhibit expression of the caspase 2 protein and can be used for the study of nonarteritic anterior ischemic optic neuropathy and other optic neuropathies such as glaucoma that result in the death of retinal ganglion cells.?
    Cosdosiran
  • HY-158820A

    QPI-1007 sodium

    Small Interfering RNA (siRNA) Caspase Cardiovascular Disease
    Cosdosiran sodium is a chemically modified siRNA designed to temporarily inhibit expression of the caspase 2 protein and can be used for the study of nonarteritic anterior ischemic optic neuropathy and other optic neuropathies such as glaucoma that result in the death of retinal ganglion cells.?
    Cosdosiran sodium
  • HY-E70364

    Biochemical Assay Reagents Inflammation/Immunology
    IgdE protease is a cysteine protease, which is initially isolated from Streptococcus agalactiae. IgdE protease digests monoclonal antibodies (mAbs) of the IgG1 type specifically at their upper hinge region, produces Fc/2, hinge peptide dimers, and Fab fragment. IgdE protease can be used in disulfide bonds and free thiol analysis, as it requires no reducing agents for cleavage .
    IgdE protease
  • HY-162488

    Fungal Infection
    Laccase-IN-3 (Compound 2b) is a laccase inhibitor (IC50 = 1.02= μM) with significant antifungal activity. Laccase-IN-3 shows superior inhibitory effect on Botryosphaeria dothidea (EC50 = 0.17 mg/L). Laccase-IN-3 effectively blocks the catalytic function of laccase by binding to its active center. Laccase-IN-3 also disrupts pathogen cell membrane integrity and increases ROS .
    Laccase-IN-3
  • 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

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