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DAF-16 and SMK-1 Contribute to Innate Immunity During Adulthood in Caenorhabditis elegans

机译:DAF-16和SMK-1有助于秀丽隐杆线虫成年期间的先天免疫。

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摘要

Aging is accompanied by a progressive decline in immune function termed “immunosenescence”. Deficient surveillance coupled with the impaired function of immune cells compromises host defense in older animals. The dynamic activity of regulatory modules that control immunity appears to underlie age-dependent modifications to the immune system. In the roundworm levels of p38 MAP kinase diminish over time, reducing the expression of immune effectors that clear bacterial pathogens. Along with the pathway, innate immunity in is regulated by the insulin signaling pathway. Here we asked whether , a Forkhead box (FOXO) transcription factor whose activity is inhibited by insulin signaling, plays a role in host defense later in life. While in younger is inactive unless stimulated by environmental insults, we found that even in the absence of acute stress the transcriptional activity of increases in an age-dependent manner. Beginning in the reproductive phase of adulthood, upregulates a subset of its transcriptional targets, including genes required to kill ingested microbes. Accordingly, has little to no role in larval immunity, but functions specifically during adulthood to confer resistance to bacterial pathogens. We found that DAF-16-mediated immunity in adults requires , a regulatory subunit of the PP4 protein phosphatase complex. Our data suggest that as the function of one branch of the innate immune system of ( ) declines over time, DAF-16-mediated immunity ramps up to become the predominant means of protecting adults from infection, thus reconfiguring immunity later in life.
机译:衰老伴随着称为“免疫衰老”的免疫功能的逐渐下降。监测不足以及免疫细胞功能受损会损害年长动物的宿主防御能力。控制免疫力的调节模块的动态活性似乎是免疫系统的年龄依赖性修饰的基础。在the虫中,p38 MAP激酶水平会随着时间的推移而降低,从而降低了清除细菌病原体的免疫效应子的表达。与途径一起,先天免疫由胰岛素信号传导途径调节。在这里,我们询问是否其活动受胰岛素信号传导抑制的Forkhead box(FOXO)转录因子在以后的生活中对宿主防御起着作用。在年轻的时候 除非受到环境侮辱的刺激,否则其是无活性的,我们发现即使在没有急性应激的情况下,转录活性也以年龄依赖性方式增加。从成年生殖阶段开始,它会上调其转录靶标的子集,包括杀死摄入的微生物所需的基因。因此,在幼虫免疫中几乎没有作用,但是在成年期特别发挥作用以赋予对细菌病原体的抗性。我们发现成年人中DAF-16介导的免疫需要PP4蛋白磷酸酶复合物的调节亚基。我们的数据表明,随着()自然免疫系统中一个分支的功能随着时间的推移而下降,DAF-16介导的免疫力逐渐上升,成为保护成年人免受感染的主要手段,从而在以后的生活中重新配置免疫力。

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