ML-60218 Datasheet DC Chemicals
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Cat.No DC21322
Name ML-60218

Chemical Properties

CAS 577784-91-9
Formula C19H15N3O2S2CL2
MW 452.377
Storage 2 years -20°C Powder, 2 weeks 4°C in DMSO, 6 months -80°C in DMSO

Biological activity

Description CAS NO.:577784-91-9
Product Name:Ml-60218
Synonyms:ML-60218;2-chloro-N-[5-(5-chloro-3-methyl-1-benzothiophen-2-yl)-2-methylpyrazol-3-yl]benzenesulfonamide;RNA Polymerase III Inhibitor
EINEC:
Molecular Formula:C19H15N3O2S2CL2
Molecular Weight:452.377
Target:
In Vivo
In Vitro Combination of SAHA and ML-60218 produces enhanced suppression of proliferation in human pancreatic adenocarcinoma by impairing cell cycle progression and inducing apoptosis. ML-60218 reverses SAHA-stimulated tRNA expression in PANC-1 and BxPC-3 cells. ML-60218 enhances the ability of HDAC inhibitors to induce apoptosis and cell cycle arrest[2]. In in vitro transcription assays with purified double-layered particles (DLPs), ML-60218 shows dose-dependent inhibitory activity, indicating the viral nature of its target. ML-60218 is found to interfere with the formation of higher-order structures of VP6, the protein forming the DLP outer layer, without compromising its ability to trimerize. Electron microscopy of ML-60218-treated DLPs shows dose-dependent structural damage. ML-60218-mediated (10 μM ) viroplasm disruption causes NSP5 dephosphorylation[3].
Kinase Assay
Cell Assay
Animal Administration

References

Combination of SAHA and ML-60218 produces enhanced suppression of proliferation in human pancreatic adenocarcinoma by impairing cell cycle progression and inducing apoptosis. ML-60218 reverses SAHA-stimulated tRNA expression in PANC-1 and BxPC-3 cells. ML-60218 enhances the ability of HDAC inhibitors to induce apoptosis and cell cycle arrest[2]. In in vitro transcription assays with purified double-layered particles (DLPs), ML-60218 shows dose-dependent inhibitory activity, indicating the viral nature of its target. ML-60218 is found to interfere with the formation of higher-order structures of VP6, the protein forming the DLP outer layer, without compromising its ability to trimerize. Electron microscopy of ML-60218-treated DLPs shows dose-dependent structural damage. ML-60218-mediated (10 μM ) viroplasm disruption causes NSP5 dephosphorylation[3].
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