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Results for "

vesicle transport

" in MedChemExpress (MCE) Product Catalog:

9

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2

Fluorescent Dye

1

Biochemical Assay Reagents

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Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-111548
    Spastazoline
    2 Publications Verification

    Others Others
    Spastazoline is a selective spastin (a microtubule-severing AAA protein) inhibitor, with an IC50 of 99 nM for Human spastin. Spastazoline can be used for cell division- and intracellular vesicle transport-related research .
    Spastazoline
  • HY-110174

    Others Neurological Disease
    NAB2 is a neuron-protective agent. NAB2 strongly and selectively protects diverse cell types from α-syn toxicity. NAB2 promots endosomal transport events dependent on the E3 ubiquitin ligase Rsp5/Nedd4. NAB2 identifies a agentgable node in the biology of α-syn that can correct multiple aspects of its underlying pathology, including dysfunctional endosomal and endoplasmic reticulum-to-Golgi vesicle trafficking .
    NAB2
  • HY-113995

    AH5183

    mAChR Neurological Disease
    (-)-Vesamicol (AH5183) is an inhibitor of acetylcholine transport into synaptic vesicles, with the IC50 of 75 nM . (-)-Vesamicol can be used for release and recycling of synaptic vesicles study .
    (-)-Vesamicol
  • HY-N9362

    Antibiotic Infection
    Emodinanthrone, an anthraquinone, is a sprecursor of Emodin (HY-14393) with antibiotic activity. Emodinanthrone inhibits respiration-driven solute transport at micromolar concentrations in membrane vesicles of Escherichia coli .
    Emodinanthrone
  • HY-156237

    Autophagy Others
    Beclin1-ATG14L interaction inhibitor 1 (com 19) is a selective Beclin1-ATG14L interaction inhibitor. This protein interaction mechanism specifically targets complex I of the lipid kinase VPS34 without affecting complex II. Because the integrity of VPS34 complex II depends on the Beclin 1-UVRAG interaction. Beclin1-ATG14L interaction inhibitor 1 can disrupt the formation of VPS34 complex I and inhibit autophagy, but does not affect complex II-related vesicle transport .
    Beclin1-ATG14L interaction inhibitor 1
  • HY-D1612

    Fluorescent Dye Others
    The Golgi apparatus is composed of flattened vesicles superimposed on each other by unit membranes. The flattened vesicles are round with expanded and perforated edges. The Golgi fluorescent probe is a BODIPY-labeled ceramide derivative, the synthesis of which occurs in the endoplasmic reticulum and can then be transported to the Golgi via ceramide transport protein (CERT) or vesicular translocation, allowing specific labeling of the dye . BODIPY Fl C5-Ceramide is a Golgi-specific green fluorescent dye, which can visualise individual cells . Ex/Em= 505 nm/512 nm.
    BODIPY FL C5-Ceramide
  • HY-D1735

    Golgi-Red Tracke

    Fluorescent Dye Others
    The Golgi apparatus is composed of flattened vesicles superimposed on each other by unit membranes. The flattened vesicles are round with expanded and perforated edges. The Golgi fluorescent probe is a BODIPY-labeled ceramide derivative, the synthesis of which occurs in the endoplasmic reticulum and can then be transported to the Golgi via ceramide transport protein (CERT) or vesicular translocation, allowing specific labeling of the dye. BODIPY TR Ceramide (Golgi-Red Tracke) is a Golgi-specific fluorescent dye, which can visualise individual cells . Ex/Em=589 nm/616 nm.
    BODIPY TR Ceramide
  • HY-W009823

    Chloride Channel Others
    Phenyl benzoate is a benzoate ester obtained by the formal condensation of phenol with benzoic acid. Phenyl benzoate is a chloride transport blocker, inhibits Cl --dependent Glu accumulation into vesicles. Phenyl benzoate can be used as preservative in cosmetic products .
    Phenyl benzoate
  • HY-W127487

    Biochemical Assay Reagents Others
    Quorum sensing is a regulatory system used by bacteria to control gene expression in response to increased cell density. This regulatory process manifests itself in a variety of phenotypes, including biofilm formation and virulence factor production. Coordinated gene expression is achieved through the production, release and detection of small diffusible signaling molecules called autoinducers. N-acylated homoserine lactones (AHLs) comprise a class of such autoinducers, each of which generally consists of a fatty acid coupled to a homoserine lactone (HSL). Modulation of bacterial quorum-sensing signaling systems to suppress pathogenesis represents a new approach to antimicrobial research for infectious diseases. AHLs differ in acyl length (C4-C18), C3 substitution (hydrogen, hydroxyl, or oxo group), and the presence or absence of one or more carbon-carbon double bonds in the fatty acid chain. These differences confer signaling specificity through the affinity of the LuxR family of transcriptional regulators. C18-HSL, one of four lipophilic long acyl side chain AHLs produced by the LuxI AHL synthase homolog SinI, is involved in quorum-sensing signaling in strains of Rhizobium meliloti (a nitrogen-fixing bacterial symbiont of the legume M. sativa) . C18-HSL and other hydrophobic AHLs tend to localize in the relatively lipophilic environment of bacterial cells and cannot diffuse freely across the cell membrane. Long-chain N-acyl homoserine lactones can be exported from cells by efflux pumps, or can be transported between communicating cells by extracellular outer membrane vesicles.
    N-Octadecanoyl-L-homoserine lactone

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