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乳胞素对脑胶质细胞中一氧化氮合酶2型表达的抑制和刺激作用。Ikappa B-β的作用。

Inhibitory and stimulatory effects of lactacystin on expression of nitric oxide synthase type 2 in brain glial cells. The role of Ikappa B-beta.

作者信息

Stasiolek M, Gavrilyuk V, Sharp A, Horvath P, Selmaj K, Feinstein D L

机构信息

Department of Neurology, Medical Academy of Lodz, Lodz 90-153, Poland and the Department of Anesthesiology, University of Illinois, Chicago, Illinois 60607, USA.

出版信息

J Biol Chem. 2000 Aug 11;275(32):24847-56. doi: 10.1074/jbc.M910284199.

Abstract

Expression of inflammatory nitric oxide synthase (NOS2) is mediated by transcription factor NFkappaB. By using the specific proteasome inhibitor lactacystin to examine IkappaB degradation, we observed a paradoxical increase in lipopolysaccharide- and cytokine-dependent NOS2 expression at low concentrations or when lactacystin was added subsequent to cytokines. Lactacystin reduced the initial accumulation of NOS2 mRNA but reduced its subsequent decrease. Lactacystin increased NOS2 promoter activation after 24 h, but not after 4 h, and similarly prevented initial NFkappaB activation and at later times caused NFkappaB reactivation. Lactacystin reduced initial degradation of IkappaB-alpha and IkappaB-beta, however, at later times selectively increased IkappaB-beta, which was predominantly non-phosphorylated. Expression of full-length rat IkappaB-beta, but not a carboxyl-terminal truncated form, inhibited NOS2 induction and potentiation by lactacystin. Lactacystin increased IkappaB-beta expression in the absence of NOS2 inducers, as well as expression of heat shock protein 70, and the heat shock response due to hyperthermia increased IkappaB-beta expression. These results suggest that IkappaB-beta contributes to persistent NFkappaB activation and NOS2 expression in glial cells, that IkappaB-beta is a stress protein inducible by hyperthermia or proteasome inhibitors, and that delayed addition of proteasome inhibitors can have stimulatory rather than inhibitory actions.

摘要

炎症性一氧化氮合酶(NOS2)的表达由转录因子NFκB介导。通过使用特异性蛋白酶体抑制剂乳胞素检测IκB降解,我们观察到在低浓度时或在细胞因子之后添加乳胞素时,脂多糖和细胞因子依赖性NOS2表达出现反常增加。乳胞素减少了NOS2 mRNA的初始积累,但减少了其随后的下降。乳胞素在24小时后增加了NOS2启动子的激活,但在4小时后没有增加,并且类似地阻止了初始NFκB激活,而在稍后时间导致NFκB重新激活。乳胞素减少了IκB-α和IκB-β的初始降解,然而,在稍后时间选择性地增加了IκB-β,其主要是非磷酸化的。全长大鼠IκB-β的表达,而不是羧基末端截短形式的表达,抑制了乳胞素对NOS2的诱导和增强作用。乳胞素在没有NOS2诱导剂的情况下增加了IκB-β的表达,以及热休克蛋白70的表达,并且由于热疗引起的热休克反应增加了IκB-β的表达。这些结果表明,IκB-β有助于胶质细胞中NFκB的持续激活和NOS2的表达,IκB-β是一种可由热疗或蛋白酶体抑制剂诱导的应激蛋白,并且蛋白酶体抑制剂的延迟添加可以具有刺激而非抑制作用。

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