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UCM53 Sale

目录号 : GC45110

An inhibitor of bacterial cell division

UCM53 Chemical Structure

Cas No.:1449468-52-3

规格 价格 库存 购买数量
500μg
¥496.00
现货
1mg
¥942.00
现货
5mg
¥4,471.00
现货
10mg
¥7,950.00
现货

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Sample solution is provided at 25 µL, 10mM.

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Chemical Properties

Cas No. 1449468-52-3 SDF
Canonical SMILES OC1=C(O)C=CC(C(OC2=CC(C=CC=C3)=C3C(OC(C4=CC(Cl)=C(O)C=C4)=O)=C2)=O)=C1
分子式 C24H15ClO7 分子量 450.8
溶解度 Soluble in DMSO 储存条件 Store at -20°C
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储备液的保存方式和期限:-80°C 储存时,请在 6 个月内使用,-20°C 储存时,请在 1 个月内使用。
为了提高溶解度,请将管子加热至37℃,然后在超声波浴中震荡一段时间。
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溶解性数据

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1 mg 5 mg 10 mg
1 mM 2.2183 mL 11.0914 mL 22.1828 mL
5 mM 0.4437 mL 2.2183 mL 4.4366 mL
10 mM 0.2218 mL 1.1091 mL 2.2183 mL
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Research Update

Synthetic inhibitors of bacterial cell division targeting the GTP-binding site of FtsZ

ACS Chem Biol 2013 Sep 20;8(9):2072-83.PMID:23855511DOI:10.1021/cb400208z

Cell division protein FtsZ is the organizer of the cytokinetic Z-ring in most bacteria and a target for new antibiotics. FtsZ assembles with GTP into filaments that hydrolyze the nucleotide at the association interface between monomers and then disassemble. We have replaced FtsZ's GTP with non-nucleotide synthetic inhibitors of bacterial division. We searched for these small molecules among compounds from the literature, from virtual screening (VS), and from our in-house synthetic library (UCM), employing a fluorescence anisotropy primary assay. From these screens we have identified the polyhydroxy aromatic compound UCM05 and its simplified analogue UCM44 that specifically bind to Bacillus subtilis FtsZ monomers with micromolar affinities and perturb normal assembly, as examined with light scattering, polymer sedimentation, and negative stain electron microscopy. On the other hand, these ligands induce the cooperative assembly of nucleotide-devoid archaeal FtsZ into distinct well-ordered polymers, different from GTP-induced filaments. These FtsZ inhibitors impair localization of FtsZ into the Z-ring and inhibit bacterial cell division. The chlorinated analogue UCM53 inhibits the growth of clinical isolates of antibiotic-resistant Staphylococcus aureus and Enterococcus faecalis. We suggest that these interfacial inhibitors recapitulate binding and some assembly-inducing effects of GTP but impair the correct structural dynamics of FtsZ filaments and thus inhibit bacterial division, possibly by binding to a small fraction of the FtsZ molecules in a bacterial cell, which opens a new approach to FtsZ-based antibacterial drug discovery.