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Minor Changes in Gene Expression in the Mouse Preoptic Hypothalamic Region by Inflammation-Induced Prostaglandin E2

机译:炎症诱导的前列腺素E2在小鼠视前下丘脑区基因表达的微小变化。

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摘要

We investigated to what extent inflammation-induced prostaglandin E2 (PGE2) regulates gene expression in the central nervous system. Wild-type mice and mice with deletion of the gene encoding microsomal prostaglandin E synthase-1 (mPGES-1), which cannot produce inflammation-induced PGE2, were subjected to peripheral injection of bacterial wall lipopolysaccharide (LPS) and killed after 5 h. The median and medial preoptic nuclei, which are rich in prostaglandin E receptors, were isolated by laser capture microdissection (LCM), and subjected to whole genome microarray analysis. Although the immune stimulus induced robust transcriptional changes in the brain, as seen by a quantitative reverse transcriptase-polymerase chain reaction (qRT-PCR) on selected genes, only small PGE2-dependent gene expression changes were observed in the gene array analysis and, for only two genes, a pronounced differential expression between LPS-treated wild-type and mPGES-1 knockout mice could be verified by qRT-PCR. These were Hspa1a and Hspa1b, encoding heat shock proteins, which showed a two- to three-fold higher expression in wild-type mice than in knockout mice after immune challenge. However, the induced expression of these genes was found to be secondary to increased body temperature because they were induced also by cage exchange stress, which did not elicit PGE2 synthesis, and thus were not induced per se by PGE2-elicited transcriptional events. Our findings suggest that inflammation-induced PGE2 has little effect on gene expression in the preoptic region, and that centrally elicited disease symptoms, although PGE2-dependent, occur as a result of regulation of neuronal excitability that is a consequence of intracellular, transcriptional-independent signalling cascades. Our findings also imply that the profound changes in gene expression in the brain that are elicited by peripheral inflammation occur independently of PGE2 via a yet unidentified mechanism.
机译:我们调查了炎症诱导的前列腺素E2(PGE2)在多大程度上调节了中枢神经系统中的基因表达。野生型小鼠和不能产生炎症诱导的PGE2的微粒体前列腺素E合酶1(mPGES-1)编码基因缺失的小鼠接受细菌壁脂多糖(LPS)周边注射并在5小时后杀死。通过激光捕获显微切割术(LCM)分离富含前列腺素E受体的中位和内侧视前核,并对其进行全基因组微阵列分析。尽管免疫刺激在大脑中引起了强劲的转录变化,如对选定基因的定量逆转录酶-聚合酶链反应(qRT-PCR)所见,但在基因阵列分析中仅观察到了较小的PGE2依赖性基因表达变化,并且通过qRT-PCR可以验证LPS处理的野生型和mPGES-1基因敲除小鼠之间只有两个基因的明显差异表达。它们是Hspa1a和Hspa1b,它们编码热激蛋白,在免疫攻击后,野生型小鼠中的表达比敲除小鼠高2至3倍。但是,发现这些基因的诱导表达是随体温升高而继发的,因为它们也是由笼交换压力诱导的,它们不引起PGE2合成,因此本身不被PGE2诱导的转录事件诱导。我们的发现表明,炎症诱导的PGE2对视前区的基因表达几乎没有影响,尽管PGE2依赖性,但中央诱导的疾病症状是由于神经元兴奋性的调节而发生的,而神经兴奋性的调节是细胞内,转录非依赖性的结果信号级联。我们的发现还暗示,由外周炎症引起的大脑基因表达的深刻变化是通过尚未确定的机制独立于PGE2发生的。

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