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Results for "

Corynebacterium glutamicum

" in MedChemExpress (MCE) Product Catalog:

4

Inhibitors & Agonists

2

Fluorescent Dyes

1

Natural
Products

2

Recombinant Proteins

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-D2919

    Fluorescent Dye Infection
    DMN-Tre is a conjugate of a solvatochromic fluorescent dye and trehalose. DMN-Tre takes advantage of the substrate promiscuity of the endogenous antigen 85 protein complex in mycobacteria to be metabolically integrated into the hydrophobic mycobacterial membrane. Once entering this hydrophobic environment, the linked DMN dye fluorescence is "turned on", enabling specific labeling . DMN-Tre can be used to reflect bacterial metabolic activity and support physiological studies of Mycobacterium tuberculosis .
    DMN-Tre
  • HY-N3686

    AMPK PGC-1α Metabolic Disease
    D-Arabitol is an orally active D-enantiomer of arabitol. D-Arabitol modulates the composition of gut microbiota, increases short-chain fatty acids, and promotes AMPK-PGC-1α-related browning of white adipose tissue. D-Arabitol improves weight gain, fat accumulation, insulin resistance, lipid deposition and inflammatory responses. D-Arabitol serves as the sole carbon/energy source for Bacillus methanolicus MGA3, a strain that can co-utilize it with mannitol. D-Arabitol is applicable to obesity-related research .
    D-Arabitol
  • HY-135849D

    Biochemical Assay Reagents Metabolic Disease
    Catalase, Corynebacterium glutamicum (EC 1.11.1.6) activates the decomposition of hydrogen peroxide, a reactive oxygen species, into water and oxygen. Catalase functions as a natural antioxidant, protecting cells against oxidative damage to proteins, lipids and nucleic acids.
    Catalase, Corynebacterium glutamicum
  • HY-D3391

    Bacterial Infection
    RMR-Tre is a fluorescent probe targeting the mycobacterial acyltransferase Ag85. Under the catalysis of Ag85, RMR-Tre undergoes 6-position mycoloylation and anchors to the mycobacterial membrane, while achieving fluorescence activation by inhibiting the intramolecular twisted charge transfer state transition. RMR-Tre can distinguish live mycobacteria from dead ones through metabolism-driven labeling, enabling rapid, wash-free, low-background detection of viable bacteria. RMR-Tre reports the drug resistance of Mycobacterium tuberculosis via the trehalose catalytic shift activity readout associated with TreS. In addition, RMR-Tre can be combined with flow cytometry or high-content imaging techniques to visualize and quantitatively analyze the metabolic heterogeneity of Mycobacterium tuberculosis related to persistence and drug resistance. RMR-Tre is widely used in tuberculosis-related research .
    RMR-Tre

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