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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Construction of a lipopolysaccharide reporter cell line and its use in identifying mutants defective in endotoxin, but not TNF-alpha, signal transduction.
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Construction of a lipopolysaccharide reporter cell line and its use in identifying mutants defective in endotoxin, but not TNF-alpha, signal transduction.

机译:脂多糖报告细胞系的构建及其在鉴定内毒素而不是TNF-α信号转导缺陷的突变体中的用途。

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Gram-negative bacterial LPS is a potent activator of inflammatory responses. The binding of LPS to CD14 initiates signal transduction; however, the molecular processes immediately following this event remain unclear. We engineered an LPS-inducible fibroblast reporter cell line to facilitate the use of molecular genetic techniques to study the LPS signaling pathway. A plasmid containing the human Tac Ag cDNA under transcriptional control of the human E selectin promoter was cotransfected into Chinese hamster ovary (CHO)-K1 cells together with a CD14 expression plasmid. A cell line was obtained, 3E10, which upregulated expression of Tac following stimulation with LPS. Pools of mutagenized cells were exposed to LPS and then labeled with anti-Tac mAb. Cells that failed to up-regulate Tac expression were enriched by flow cytometry. Thirty clonal mutant cell lines were identified that continued to express CD14 and bind LPS, but failed to express Tac or translocate nuclear factor-kappaB (NF-kappaB) following LPS exposure. TNF-alpha-treated mutant cells continued to express Tac and translocate NF-kappaB. An analysis of LPS-induced NF-kappaB activity in heterokaryons derived from polyethylene glycol-fused cell lines indicated that recessive mutations in genes encoding components of the LPS signaling pathway accounted for the signaling defects. To date, two complementation groups have been identified from 11 cell lines analyzed. These data demonstrate that the TNF-alpha signaling pathway diverges from the LPS pathway early in the signal-transduction cascade despite similarities in LPS- and TNF-alpha-induced responses. Identification of the genes affected in these mutant reporter cells should identify heretofore-elusive components of the LPS signaling cascade.
机译:革兰氏阴性细菌LPS是炎症反应的有效激活剂。 LPS与CD14的结合启动信号转导;但是,此事件之后的分子过程仍然不清楚。我们设计了一种LPS诱导的成纤维细胞报告基因细胞系,以促进分子遗传学技术研究LPS信号通路。将包含在人E选择素启动子转录控制下的人Tac Ag cDNA的质粒与CD14表达质粒一起共转染到中国仓鼠卵巢(CHO)-K1细胞中。获得了细胞系3E10,其在LPS刺激后上调了Tac的表达。将诱变的细胞池暴露于LPS,然后用抗Tac mAb标记。未能上调Tac表达的细胞通过流式细胞仪富集。鉴定出三十种克隆突变细胞系,它们继续表达CD14并结合LPS,但在LPS暴露后不能表达Tac或转运核因子-κB(NF-kappaB)。 TNF-α处理的突变细胞继续表达Tac和转运NF-κB。对源自聚乙二醇融合细胞系的异核体中LPS诱导的NF-κB活性的分析表明,编码LPS信号通路成分的基因中的隐性突变是造成信号缺陷的原因。迄今为止,已经从所分析的11种细胞系中鉴定出两个互补组。这些数据表明,尽管LPS和TNF-α诱导的反应相似,但TNF-α信号途径在信号转导级联反应的早期就与LPS途径不同。鉴定这些突变报道细胞中受影响的基因应鉴定LPS信号转导级联的迄今难以捉摸的成分。

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