首页> 外文期刊>Immunology and Cell Biology >Lipopolysaccharide (LPS) and zymosan-resistant mutant isolated from a macrophage-like cell line, WEHI-3, with a defective response to LPS under serum-free conditions.
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Lipopolysaccharide (LPS) and zymosan-resistant mutant isolated from a macrophage-like cell line, WEHI-3, with a defective response to LPS under serum-free conditions.

机译:从无巨噬细胞样细胞系WEHI-3中分离出来的脂多糖(LPS)和抗酵母聚糖的突变体,在无血清条件下对LPS的应答有缺陷。

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摘要

A LPS-resistant mutant, W3SF-1, was isolated from a murine macrophage-like cell line, WEHI-3. The W3SF-1 mutant did not produce a significant amount of nitric oxide (NO) or TNF-alpha even with high concentrations of LPS in the presence or absence of FCS, whereas the parental WEHI-3 cells produced them in response to LPS. The parental cells expressed a significant level of TNF-alpha mRNA after LPS stimulation, whereas the mutant cells did not. This defective response of the mutant cells to LPS was neither dependent on the concentration or chemical structure of LPS, nor on the time of LPS treatment. The mutant cells also showed a defective response to zymosan, suggesting that the defect in the mutant cells is common to LPS and zymosan in the signal transduction pathways. The parental and mutant cells showed similar levels of Mac1, F4/80 and CD14, suggesting that these surface markers of macrophages are not linked directly to the defective responses of the mutant to LPS. The treatment of mutant cells with IFN-gamma did not restore the defect of NO or TNF-alpha production on LPS treatment. Binding experiments with 125I-labelled LPS showed a similar binding affinity for LPS in the parental and the mutant cells. These results suggest that the defect in the W3SF-1 mutant cells may not reside in the LPS binding but rather in the early step of signal transduction pathways in the cells after LPS binding.
机译:从鼠巨噬细胞样细胞系WEHI-3中分离到了LPS抗性突变体W3SF-1。 W3SF-1突变体即使在存在或不存在FCS的情况下,即使具有高浓度的LPS,也不会产生大量的一氧化氮(NO)或TNF-α,而亲代WEHI-3细胞则是对LPS产生的。 LPS刺激后,亲代细胞表达了显着水平的TNF-αmRNA,而突变细胞则没有。突变细胞对LPS的这种缺陷反应既不依赖于LPS的浓度或化学​​结构,也不依赖于LPS处理的时间。突变细胞还显示出对酵母聚糖的缺陷应答,表明突变细胞中的缺陷在信号转导途径中是LPS和酵母聚糖所共有的。亲代细胞和突变细胞显示出相似的Mac1,F4 / 80和CD14水平,表明巨噬细胞的这些表面标记并不直接与突变体对LPS的缺陷反应有关。用IFN-γ处理突变细胞不能恢复LPS处理时NO或TNF-α产生的缺陷。用125 I标记的LPS进行的结合实验显示,亲本和突变细胞中对LPS的结合亲和力相似。这些结果表明,W3SF-1突变细胞中的缺陷可能不在于LPS结合,而在于LPS结合后细胞中信号转导途径的早期。

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