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Results for "

clathrin-in-1

" in TargetMol Product Catalog.
  • Inhibitors & Agonists
    5
    TargetMol | All_Pathways
  • Recombinant Protein
    8
    TargetMol | Recombinant_Protein
  • Cell Research
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    TargetMol | Cell_Research_Reagents
Clathrin-IN-1
T90631332879-52-3
Clathrin-IN-1 is a inhibitor of clathrin, and inhibits clathrin-mediated endocytosis (CME) by associating with the terminal domain of clathrin. It has the potential for anti-cancer research.
  • $48
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Pitstop1
Clathrin-inhibitor-1, Clathrin inhibitor 1, Clathrin IN 1
T252561332879-51-2
Clathrin-IN-1 is a selective clathrin inhibitor that acts by addressing clathrin function in cell physiology with potential applications as an inhibitor of virus and pathogen entry and as a modulator of cell signaling.
  • $1,520
6-8 weeks
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Dynasore
Dynamin Inhibitor I
T1848304448-55-3
Dynasore (Dynamin Inhibitor I) is a highly selective, reversible small-molecule dynamin inhibitor with an IC₅₀ of 15 μM. Dynasore also inhibits the mitochondrial dynamin Drp1 without affecting other small GTPases. By inhibiting the GTPase activity of dynamin, Dynasore blocks its function in membrane fission, thereby inhibiting clathrin-mediated endocytosis. Dynasore can be used in research on endocytosis, membrane transport, viral entry, and receptor signaling regulation.
  • $45
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TargetMol | Citations Cited
MS1-96
T214625
MS1-96 is an orally active PD-L1 (programmed death-ligand 1) degrader. It effectively reduces PD-L1 protein expression levels in various colorectal cancer (CRC) cell lines. The compound loses its ability to induce PD-L1 degradation upon HIP1R knockdown. MS1-96 binds directly to PD-L1 (KD= 2.58 μM) and enhances the interaction between HIP1R and PD-L1, altering PD-L1's intracellular transport in clathrin-coated vesicles. Additionally, MS1-96 induces abnormal N-glycosylation of PD-L1, leading to protein instability and accelerated lysosome-mediated degradation. MS1-96 is applicable for colorectal cancer research.
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N-Sterol
TCL-017133069417-18-8
N-Sterol is a sterol lipid employed in the formation of lipid nanoparticles (LNP) for delivering mRNA both in vitro and in vivo. N-Sterol LNPs are absorbed by J774A.1 macrophages in a manner dependent on lipid composition, involving clathrin-coated pits, caveolin-mediated endocytosis, micropinocytosis, or phagocytosis at varying frequencies.
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10-14 weeks
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