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树突状细胞中NF-κB亚基对革兰氏阴性菌和脂多糖的不同激活。

Differential activation of NF-kappa B subunits in dendritic cells in response to Gram-negative bacteria and to lipopolysaccharide.

作者信息

Hofer S, Rescigno M, Granucci F, Citterio S, Francolini M, Ricciardi-Castagnoli P

机构信息

Department of Biotechnology and Bioscience, University of Milano-Bicocca, P.zza della Scienza 2, 20126 Milan, Italy.

出版信息

Microbes Infect. 2001 Apr;3(4):259-65. doi: 10.1016/s1286-4579(01)01378-8.

Abstract

Dendritic cell (DC) maturation is essential for the initiation of T-dependent immune responses. Nuclear factor kappa B/Rel (NF kappa B/Rel) transcription factors are ubiquitously expressed signalling molecules, known to regulate the transcription of a large number of genes involved in immune responses, including cytokines such as IL-1, IL-6, TNF-alpha and cell surface molecules (MHC class I and II, B7.2). In this study, we have compared the activation of five members of the NF-kappa B family, p65, c-Rel, p50, RelB and p52, during DC maturation in response to lipopolysaccharide (LPS) and to Salmonella typhimurium. We have shown that although the translocation of NF-kappa B occurred very early, 30 min after treatment with both S. typhimurium and LPS, bacteria-induced NF-kappa B activation was more pronounced. Four out of five members, i.e. p65, c-Rel, p50 and RelB, were similarly activated upon the two stimuli but with different kinetics. Indeed, we have observed that p65, c-Rel and p50 were translocated early, whereas RelB was translocated later in DC activation. This differential regulation suggests that the various members of NF-kappa B family can mediate distinct functions of DC physiology.

摘要

树突状细胞(DC)成熟对于启动T细胞依赖性免疫反应至关重要。核因子κB/Rel(NF-κB/Rel)转录因子是普遍表达的信号分子,已知其可调节大量参与免疫反应的基因的转录,包括细胞因子如白细胞介素-1、白细胞介素-6、肿瘤坏死因子-α以及细胞表面分子(MHC I类和II类、B7.2)。在本研究中,我们比较了NF-κB家族的五个成员p65、c-Rel、p50、RelB和p52在DC成熟过程中对脂多糖(LPS)和鼠伤寒沙门氏菌的反应激活情况。我们发现,尽管NF-κB的易位发生得非常早,在用鼠伤寒沙门氏菌和LPS处理后30分钟,但细菌诱导的NF-κB激活更为明显。五个成员中的四个,即p65、c-Rel、p50和RelB,在两种刺激下的激活情况相似,但动力学不同。事实上,我们观察到p65、c-Rel和p50早期易位,而RelB在DC激活后期易位。这种差异调节表明NF-κB家族的各个成员可以介导DC生理学中的不同功能。

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