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内毒素、血小板活化因子及内源性肿瘤坏死因子对体内血小板活化因子受体基因表达的调控

Regulation of platelet-activating factor receptor gene expression in vivo by endotoxin, platelet-activating factor and endogenous tumour necrosis factor.

作者信息

Wang H, Tan X, Chang H, Gonzalez-Crussi F, Remick D G, Hsueh W

机构信息

Department of Pathology, Northwestern University, Chicago, IL 60614, U.S.A.

出版信息

Biochem J. 1997 Mar 1;322 ( Pt 2)(Pt 2):603-8. doi: 10.1042/bj3220603.

Abstract

A competitive PCR assay was developed to quantify platelet-activating factor (PAF) receptor (PAF-R) transcripts in rat tissues using a synthetic RNA as a competitor. We found PAF-R mRNA constitutively expressed in the eight organs tested, with the ileum containing the highest concentration [(3.49+/-0.15) x 10(7) molecules/microg of RNA]. Significant but lower levels were also detected in the jejunum, spleen, lungs, kidneys, heart, stomach and liver. Furthermore we defined the regulatory role of inflammatory mediators in ileal PAF-R gene expression using a rat model of intestinal injury induced by PAF or lipopolysaccharide (LPS). Injection of LPS or low-dose PAF resulted in a marked increase in ileal PAF-R mRNA within 30 min. The up-regulation on PAF-R elicited by PAF was biphasic, peaking first at 90 min, then again at 6 h. In contrast, LPS elicited a weak monophasic response. The second phase of PAF-R mRNA increase after PAF administration was completely abolished by WEB 2170, a PAF antagonist, and partially inhibited by antitumour necrosis factor (TNF) antibody. These observations indicate the involvement of endogenous PAF and TNF in this event. In conclusion, we found: (a) preferential PAF-R expression in the ileum, suggesting a role for PAF in intestinal inflammation; (b) induction of PAF-R expression in vivo by its own agonist; (c) a complex regulation of PAR-R gene expression in vivo involving a network of various pro-inflammatory mediators.

摘要

我们开发了一种竞争性聚合酶链反应(PCR)检测方法,以使用合成RNA作为竞争者来定量大鼠组织中的血小板活化因子(PAF)受体(PAF-R)转录本。我们发现PAF-R mRNA在测试的八个器官中组成性表达,回肠中浓度最高[(3.49±0.15)×10⁷个分子/μg RNA]。在空肠、脾脏、肺、肾、心脏、胃和肝脏中也检测到显著但较低水平的PAF-R mRNA。此外,我们使用PAF或脂多糖(LPS)诱导的肠道损伤大鼠模型,确定了炎症介质在回肠PAF-R基因表达中的调节作用。注射LPS或低剂量PAF在30分钟内导致回肠PAF-R mRNA显著增加。PAF引起的PAF-R上调是双相的,首先在90分钟达到峰值,然后在6小时再次达到峰值。相比之下,LPS引起的是微弱的单相反应。PAF给药后PAF-R mRNA增加的第二阶段被PAF拮抗剂WEB 2170完全消除,并被抗肿瘤坏死因子(TNF)抗体部分抑制。这些观察结果表明内源性PAF和TNF参与了这一事件。总之,我们发现:(a)PAF-R在回肠中优先表达,提示PAF在肠道炎症中起作用;(b)其自身激动剂在体内诱导PAF-R表达;(c)体内PAF-R基因表达受到复杂调节,涉及多种促炎介质网络。

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