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865285-29-6

中文名稱 865285-29-6
英文名稱 4-Chloro-N-[5-(4-fluorophenyl)-1,3,4-oxadiazol-2-yl]-benzamide
CAS 865285-29-6
分子式 C15H9ClFN3O2
分子量 317.7
MOL 文件 865285-29-6.mol
更新日期 2024/06/07 17:53:08
865285-29-6 結(jié)構(gòu)式 865285-29-6 結(jié)構(gòu)式

基本信息

中文別名
化合物KKL-35
4-氯-N-(5-(4-氟苯基)-1,3,4-惡二唑-2-基)苯甲酰胺
英文別名
SRJ-23
KKL-35
KKL-35 (KKL 35
KKL-35 >=98% (HPLC)
4-Chloro-N-[5-(4-fluorophenyl)-1,3,4-oxadiazol-2-yl]-benzamide
Benzamide, 4-chloro-N-[5-(4-fluorophenyl)-1,3,4-oxadiazol-2-yl]-

物理化學(xué)性質(zhì)

儲存條件Sealed in dry,2-8°C
溶解度DMSO:可溶5mg/mL,澄清(加熱)
形態(tài)粉末
顏色白色至米色

安全數(shù)據(jù)

危險性符號(GHS)GHS hazard pictograms
GHS07
警示詞警告
危險性描述H302
危險品標(biāo)志Xn
危險類別碼22
WGK Germany3

常見問題列表

生物活性
KKL-35抑制trans-translation tagging reaction,IC50為0.9 μM。它具有廣譜抗生素活性。
靶點

IC50: 0.9 μM ( trans -translation tagging reaction)

體外研究

KKL-35 exhibits broad-spectrum antibiotic activity. KKL-35 prevents growth of B. anthracis and M. smegmatis with minimum inhibitory concentration (MIC) values of less than 6 μM. KKL-35 inhibit trans-translation at some step before proteolysis of tagged proteins. KKL-35 inhibits tagging of DHFR-ns. A large amount of untagged DHFR is produced in reactions with the highest concentrations of KKL-35, indicating that KKL-35 does not inhibit translation. KKL-35 prevents growth of WT S. flexneri with a MIC of 6 μM, and addition of KKL-35 to a growing culture of S. flexneri stops growth. In an S. flexneri strain expressing ArfA and deleted for ssrA, addition of KKL-35 has little effect on viability or growth rate. KKL-35 inhibits the growth of E. coli ?tolC, which is deficient in small molecule efflux, with an MIC of 0.3 μM.

體內(nèi)研究

Evidence suggest that the in vivo effects of KKL-35 are caused by inhibition of the release of nonstop translation complexes by trans-translation. KKL-35 inhibits trans-translation and prevents growth of S. flexneri strains that require trans-translation. The correlation between inhibition of trans-translation and growth is supported by genetic and pharmacological experiments showing that alternative mechanisms to release nonstop translation complexes relieve the growth suppression of KKL-35.

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