首页> 外文期刊>Molecular pharmacology. >Benzoxathiole derivative blocks lipopolysaccharide-induced nuclear factor-kappaB activation and nuclear factor-kappaB-regulated gene transcription through inactivating inhibitory kappaB kinase beta.
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Benzoxathiole derivative blocks lipopolysaccharide-induced nuclear factor-kappaB activation and nuclear factor-kappaB-regulated gene transcription through inactivating inhibitory kappaB kinase beta.

机译:苯恶硫醇衍生物通过灭活抑制性kappaB激酶β来阻断脂多糖诱导的核因子kappaB活化和核因子kappaB调控的基因转录。

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摘要

Benzoxathiole derivatives have been used in the treatment of acne and have shown cytostatic, antipsoriatic, and antibacterial properties. However, little is known about the molecular basis for these pharmacological properties, although nuclear factor (NF)-kappaB activation is closely linked to inflammation and cell proliferation. Here, we demonstrate that the novel small-molecule benzoxathiole 6,6-dimethyl-2-(phenylimino)-6,7-dihydro-5H-benzo-[1,3]oxathiol-4-one (BOT-64) inhibits NF-kappaB activation with an IC(50) value of 1 muM by blocking inhibitory kappaB(IkappaB) kinase beta (IKKbeta), and suppresses NF-kappaB-regulated expression of inflammatory genes in lipopolysaccharide (LPS)-activated RAW 264.7 macrophages. BOT-64 inhibits IKKbeta-mediated IkappaBalpha phosphorylation in LPS-activated macrophages, resulting in sequential prevention of downstream events, including proteolytic degradation of IkappaBalpha, DNA binding ability, and transcriptional activity of NF-kappaB. BOT-64 inhibits LPS-inducible IKKbeta activity in the cells and catalytic activity of highly purified IKKbeta. Moreover, the effect of BOT-64 on cell-free IKKbeta was abolished by substitution of Ser-177 and Ser-181 residues in the activation loop of IKKbeta to glutamic acid residues, indicating a direct interaction site of benzoxathiole. BOT-64 attenuates NF-kappaB-regulated expression of inflammatory genes such as inducible nitric-oxide synthase, cyclooxygenase-2, tumor necrosis factor-alpha, interleukin (IL)-1beta, and IL-6 in LPS-activated or expression vector IKKbeta-transfected macrophages. Furthermore, BOT-64 dose-dependently increases the survival rates of endotoxin LPS-shocked mice.
机译:苯甲硫醇衍生物已用于治疗痤疮,并已显示出细胞抑制,抗银屑病和抗菌特性。然而,尽管核因子(NF)-κB活化与炎症和细胞增殖密切相关,但对于这些药理学性质的分子基础知之甚少。在这里,我们证明了新颖的小分子苯并沙硫醇6,6-二甲基-2-(苯基亚氨基)-6,7-二氢-5H-苯并-[1,3]草硫醇-4-酮(BOT-64)抑制NF -kappaB激活,通过阻断抑制性kappaB(IkappaB)激酶beta(IKKbeta)的IC(50)值为1μM,并抑制NF-κB调节的脂多糖(LPS)激活的RAW 264.7巨噬细胞中炎症基因的表达。 BOT-64抑制LPS激活的巨噬细胞中IKKbeta介导的IkappaBalpha磷酸化,导致顺序阻止下游事件,包括IkappaBalpha的蛋白水解降解,DNA结合能力和NF-kappB的转录活性。 BOT-64抑制细胞中LPS诱导的IKKbeta活性和高度纯化的IKKbeta的催化活性。此外,通过将IKKbeta激活环中的Ser-177和Ser-181残基替换为谷氨酸残基,消除了BOT-64对无细胞IKKbeta的影响,这表明苯并草硫醇具有直接的相互作用位点。 BOT-64减弱了LPs激活或表达载体IKKbeta中炎症因子如诱导型一氧化氮合酶,环氧合酶-2,肿瘤坏死因子-α,白介素(IL)-1beta和IL-6的NF-κB调节表达。 -转染的巨噬细胞。此外,BOT-64剂量依赖性地增加了内毒素LPS休克小鼠的存活率。

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