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p38 MAPK Regulates Expression of Immune Response Genes and Contributes to Longevity in C. elegans

机译:p38 MAPK调节线虫的免疫反应基因表达并有助于延年益寿

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摘要

The PMK-1 p38 mitogen-activated protein kinase pathway and the DAF-2–DAF-16 insulin signaling pathway control Caenorhabditis elegans intestinal innate immunity. pmk-1 loss-of-function mutants have enhanced sensitivity to pathogens, while daf-2 loss-of-function mutants have enhanced resistance to pathogens that requires upregulation of the DAF-16 transcription factor. We used genetic analysis to show that the pathogen resistance of daf-2 mutants also requires PMK-1. However, genome-wide microarray analysis indicated that there was essentially no overlap between genes positively regulated by PMK-1 and DAF-16, suggesting that they form parallel pathways to promote immunity. We found that PMK-1 controls expression of candidate secreted antimicrobials, including C-type lectins, ShK toxins, and CUB-like genes. Microarray analysis demonstrated that 25% of PMK-1 positively regulated genes are induced by Pseudomonas aeruginosa infection. Using quantitative PCR, we showed that PMK-1 regulates both basal and infection-induced expression of pathogen response genes, while DAF-16 does not. Finally, we used genetic analysis to show that PMK-1 contributes to the enhanced longevity of daf-2 mutants. We propose that the PMK-1 pathway is a specific, indispensable immunity pathway that mediates expression of secreted immune response genes, while the DAF-2–DAF-16 pathway appears to regulate immunity as part of a more general stress response. The contribution of the PMK-1 pathway to the enhanced lifespan of daf-2 mutants suggests that innate immunity is an important determinant of longevity.
机译:PMK-1 p38丝裂原激活的蛋白激酶途径和DAF-2–DAF-16胰岛素信号传导途径可控制秀丽隐杆线虫肠道固有免疫。 pmk-1功能丧失型突变体对病原体的敏感性增强,而daf-2功能丧失型突变体对病原体的抗性增强,需要上调DAF-16转录因子。我们使用遗传分析显示daf-2突变体的病原体抗性也需要PMK-1。然而,全基因组微阵列分析表明,在由PMK-1和DAF-16阳性调控的基因之间基本上没有重叠,这表明它们形成了促进免疫的平行途径。我们发现,PMK-1控制候选分泌型抗菌素的表达,包括C型凝集素,ShK毒素和CUB样基因。芯片分析表明25%的PMK-1阳性调控基因是由铜绿假单胞菌感染诱导的。使用定量PCR,我们显示PMK-1调节病原体应答基因的基础表达和感染诱导表达,而DAF-16则不。最后,我们使用遗传分析表明PMK-1有助于延长daf-2突变体的寿命。我们认为,PMK-1途径是一种特定的,必不可少的免疫途径,可介导分泌的免疫反应基因的表达,而DAF-2–DAF-16途径似乎在更普遍的应激反应中调节免疫力。 PMK-1途径对daf-2突变体寿命延长的贡献表明,先天免疫是长寿的重要决定因素。

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