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Pathways Recommended: Metabolic Enzyme/Protease
Results for "

PLP-dependent enzyme

" in MedChemExpress (MCE) Product Catalog:

4

Inhibitors & Agonists

1

Peptides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-116073

    Acyltransferase Infection Cancer
    L-Penicillamine is an orally active serine palmitoyltransferase (SPT) inhibitor. L-Penicillamine inactivates the PLP cofactor by forming adducts, thereby inhibiting SPT activity and reducing sphingolipid biosynthesis. L-Penicillamine not only blocks tumor access to vitamin B6, but also stabilizes the human papillomavirus 16 E6 oncoprotein monomer and inhibits its polymerization, exhibiting a unique anticancer mechanism. L-Penicillamine effectively delays the growth of Sarcoma-180, induces tumor necrosis and prolongs survival (though long-term use may lead to Pyridoxine (HY-B1328) deficiency and weight loss) .
    L-Penicillamine
  • HY-P2825

    TDC; TyrDC

    Endogenous Metabolite Others
    Tyrosine decarboxylase, Microorganism (TDC) is a tyrosine decarboxylase produced by microorganisms. Tyrosine decarboxylase is a PLP-dependent enzyme that catalyzes the decarboxylation of L-tyrosine, L-phenylalanine, and L-dopa to produce tyramine, 2-phenethylamine, and dopamine, respectively. Tyrosine decarboxylase mediates acid stress resistance, maintains intracellular pH homeostasis, and generates proton motive force .
    Tyrosine decarboxylase, Microorganism
  • HY-162508

    Bacterial Infection
    KSK-104 has potent antibacterial activity against Mycobacterium tuberculosis (MIC=0.78 μM). The role of KSK-104 is mainly involved in the synthesis and recovery pathways of pyridoxal 5'-phosphate (PLP), PLP-dependent enzymes and oxidative stress networks. KSK-104, as a candidate molecule for novel anti-tuberculosis drugs, can be used to develop research against drug-resistant mycobacterium tuberculosis .
    KSK-104
  • HY-E70570

    GABA Receptor Metabolic Disease
    Glutamate decarboxylase is an enzyme that catalyzes the decarboxylation of glutamate to gamma-aminobutyric acid (GABA) and carbon dioxide (CO2). Many gut microbes can metabolize glutamate via their Glutamate decarboxylase in a pyridoxal-5′-phosphate (PLP) dependent manner .
    Glutamate decarboxylase

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