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首页> 外文期刊>The journal of immunology >Toll-Like Receptor 4, But Not Toll-Like Receptor 2, Is a Signaling Receptor for Escherichia and Salmonella Lipopolysaccharides
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Toll-Like Receptor 4, But Not Toll-Like Receptor 2, Is a Signaling Receptor for Escherichia and Salmonella Lipopolysaccharides

机译:Toll-like受体4,而不是Toll-like受体2,是大肠埃希菌和沙门氏菌脂多糖的信号受体

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摘要

Two members of the mammalian Toll-like receptor (TLR) family, TLR2 and TLR4, have been implicated as receptors mediating cellular activation in response to bacterial LPS. Through the use of mAbs raised against human TLR2 and TLR4, we have conducted studies in human cell lines and whole blood to ascertain the relative contribution of these receptors to LPS induced cytokine release. We show that the contribution of TLR2 and TLR4 to LPS-induced cellular activation correlates with the relative expression levels of these two TLRs in a given cell type. In addition, we have found that significant differences in cell stimulatory activity exist between various smooth and rough LPS types that cannot be ascribed to known LPS structural features. These results suggest that impurities in the LPS may be responsible for some of the activity and this would be in agreement with recently published results of others. Upon repurification, none of the commercial LPS preparations activate cells through TLR2, but continue to stimulate cells with comparable activity through TLR4. Our results confirm recent findings that TLR4, but not TLR2, mediates cellular activation in response to LPS derived from both Escherichia coli and Salmonella minnesota . Additionally, we show that TLR4 is the predominant signaling receptor for LPS in human whole blood.
机译:哺乳动物的Toll样受体(TLR)家族的两个成员TLR2和TLR4被认为是介导对细菌LPS响应的细胞活化的受体。通过使用针对人TLR2和TLR4的单克隆抗体,我们在人细胞系和全血中进行了研究,以确定这些受体对LPS诱导的细胞因子释放的相对贡献。我们表明,在给定的细胞类型中,TLR2和TLR4对LPS诱导的细胞活化的贡献与这两个TLR的相对表达水平相关。此外,我们发现,在各种平滑和粗糙的LPS类型之间存在着细胞刺激活性的显着差异,而这不能归因于已知的LPS结构特征。这些结果表明,LPS中的杂质可能是某些活性的原因,这与最近发表的其他结果是一致的。重新纯化后,没有任何商业LPS制剂通过TLR2激活细胞,但继续通过TLR4刺激具有类似活性的细胞。我们的结果证实了最近的发现,即TLR4而非TLR2介导细胞活化,以响应源自大肠杆菌和明尼苏达沙门氏菌的LPS。此外,我们显示TLR4是人类全血中LPS的主要信号受体。

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