通过 RNase 保护测定法同时分析 LPS 诱导的内毒素血症中的多种细胞因子受体 mRNA。

Lymphokine and cytokine research Pub Date : 1994-04-01
A K Stalder, I L Campbell
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引用次数: 0

摘要

为了研究细胞因子受体基因表达的调控,我们开发了一种 RNase 保护测定法(RPA),可同时半定量测定 IL-1 p60 和 p80、TNF p55 和 p75、IFN-gamma 和 IL-6 受体的 mRNA 编码。滴定实验表明,这种方法非常灵敏,可以检测到至少 0.01 微克脾脏多聚(A)+ RNA 的目标细胞因子受体 mRNA。细胞因子受体 RPA 用于检测正常小鼠和注射了 LPS 的小鼠各器官中受体基因的表达。在正常小鼠的脾脏、肝脏、肾脏和大脑中很容易检测到 IL-1R p80、TNFR p55 和 p75、IFN-gamma 和 IL-6R 的表达,但检测不到 IL-1R p60 的转录物。经 LPS 处理后,所有器官中的 IL-1R p60 mRNA 均被诱导,IL-1R p80、TNFR p55 和 p75、IFN-γ 和 IL-6 受体 mRNA 上调,尤其是在脾脏、肝脏和肾脏。在这些受体 mRNA 的调节中观察到了器官间的差异,表明器官对 LPS 挑战的特异性反应。我们的研究结果表明,细胞因子受体 RPA 是同时分析组织样本中多种细胞因子受体 mRNA 的一种功能强大、用途广泛的工具。这项技术对于进一步评估这些基因表达的协调调控非常有价值,而这些基因在细胞因子生物学中起着举足轻重的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simultaneous analysis of multiple cytokine receptor mRNAs by RNase protection assay in LPS-induced endotoxemia.

In order to examine the regulation of cytokine receptor gene expression an RNase protection assay (RPA) was developed that allows the simultaneous and semiquantitative measurement of mRNAs encoding for the IL-1 p60 and p80, TNF p55 and p75, IFN-gamma, and IL-6 receptors. Titration experiments revealed that this method was very sensitive allowing the detection of the target cytokine receptor mRNAs down to at least 0.01 microgram of spleen poly(A)+ RNA. The cytokine receptor RPA was used to examine the expression of the receptor genes in various organs from normal mice and mice that had been injected with LPS. In normal mice expression of the IL-1R p80, TNFR p55 and p75, IFN-gamma, and IL-6R but not the IL-1R p60 transcripts was readily detectable in spleen, liver, kidney, and brain. Following LPS treatment, there was an induction of the IL-1R p60 mRNA in all organs and an up-regulation of the IL-1R p80, TNFR p55 and p75, IFN-gamma, and IL-6 receptor mRNAs particularly in spleen, liver, and kidney. Interorgan differences were observed in the regulation of these receptor mRNAs, indicating an organ-specific response to the LPS challenge. Our findings indicate the cytokine receptor RPA is a powerful and versatile tool for the simultaneous analysis of multiple cytokine receptor mRNAs in tissue samples. This technique will prove valuable in further evaluating the coordinated regulation of the expression of these genes, which are pivotal in the biology of cytokines.(ABSTRACT TRUNCATED AT 250 WORDS)

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