首页> 外文期刊>Journal of Leukocyte Biology: An Official Publication of the Reticuloendothelial Society >Novel insight into molecular mechanism of endotoxin shock: biochemical analysis of LPS receptor signaling in a cell-free system targeting NF-kappaB and regulation of cytokine production/action through beta2 integrin in vivo.
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Novel insight into molecular mechanism of endotoxin shock: biochemical analysis of LPS receptor signaling in a cell-free system targeting NF-kappaB and regulation of cytokine production/action through beta2 integrin in vivo.

机译:内毒素休克分子机制的新见解:在无细胞系统中针对NF-κB的LPS受体信号转导的生化分析,以及通过体内beta2整联蛋白调节细胞因子产生/作用的过程。

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摘要

Lipopolysaccharide (LPS), a constituent of gram-negative bacteria cell wall, plays an essential role in the pathogenesis of septic shock by generating endogenous mediators such as cytokines, nitrous oxide, superoxide anions, and lipid mediators. In vitro, LPS induces the transcription of a set of genes involved in inflammatory reactions by activating several types of transcription factors, particularly nuclear factor-kappaB (NF-kappaB). An analysis of NF-kappaB activation using a cell-free system demonstated that two pathways converge to activate NF-kappaB; one is staurosporine-sensitive, the other is staurosporine-insensitive and tyrosine kinase-dependent. Furthermore, the latter pathway culminates in IkappaBalpha phosphorylation at serine/threonine residues in its carboxyl-terminal acidic region with dissociation of IkappaBalpha from NF-kappaB, thereby activating NF-kappaB. The requirement for the phosphorylation at this site was confirmed by the specific inhibition of NF-kappaB activation in a cell-free system by the synthetic peptide corresponding to this site. The in vivo administration of an anti-CD18 antibody prevented elevation of plasma tumor necrosis factor (TNF) levels and acute lethality induced by injection of a low dose of LPS into Propionibacterium acnes-primed rabbits or by the administration of a single high dose of LPS into animals. Anti-CD18 also prevented acute lethality induced by one of the main mediators of endotoxin shock, TNF-alpha. Furthermore, an antibody to a ligand for CD18, intercellular adhesion molecule-1, also prevented TNF-induced shock as well as endotoxin shock in rabbits. These observations suggest that the interaction between leukoytes and endothelium through beta2- integrin adhesion molecules may be of primary importance in mediating LPS signals in vivo.
机译:脂多糖(LPS)是革兰氏阴性细菌细胞壁的组成部分,通过产生内源性介质(例如细胞因子,一氧化二氮,超氧阴离子和脂质介质),在败血性休克的发病机理中起着至关重要的作用。在体外,LPS通过激活几种类型的转录因子,特别是核因子-κB(NF-kappaB)来诱导涉及炎症反应的一组基因的转录。使用无细胞系统对NF-kappaB激活的分析表明,两条途径汇聚以激活NF-kappaB。一种是对星形孢菌素敏感的,另一种是对星形孢菌素不敏感的和酪氨酸激酶依赖性的。此外,后一种途径在其羧基末端酸性区域的丝氨酸/苏氨酸残基处的IkappaBalpha磷酸化达到顶点,并使IkappaBalpha从NF-kappaB解离,从而激活NF-kappaB。通过无细胞系统中相应于该位点的合成肽对NF-κB活化的特异性抑制,证实了该位点磷酸化的要求。体内施用抗CD18抗体可防止通过向痤疮丙酸杆菌引发的兔子中注射低剂量的LPS或单次高剂量的LPS注射引起的血浆肿瘤坏死因子(TNF)水平升高和急性致死性变成动物。抗CD18还可以防止由内毒素休克的主要介质之一TNF-α引起的急性致死性。此外,针对CD18配体的抗体(细胞间粘附分子1)也可以预防TNF诱发的休克以及兔的内毒素休克。这些观察结果表明,白细胞与内皮之间通过β2-整联蛋白粘附分子的相互作用在体内体内LPS信号的介导中可能是最重要的。

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