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胚胎造血调节炎症反应和幼虫造血。

Embryonic hematopoiesis modulates the inflammatory response and larval hematopoiesis in .

机构信息

Institut de Génétique et de Biologie Moléculaire et Cellulaire, Illkirch, France.

UMR7104, Centre National de la Recherche Scientifique, Illkirch, France.

出版信息

Elife. 2018 Jul 11;7:e34890. doi: 10.7554/eLife.34890.

Abstract

Recent lineage tracing analyses have significantly improved our understanding of immune system development and highlighted the importance of the different hematopoietic waves. The current challenge is to understand whether these waves interact and whether this affects the function of the immune system. Here we report a molecular pathway regulating the immune response and involving the communication between embryonic and larval hematopoietic waves in . Down-regulating the transcription factor Gcm specific to embryonic hematopoiesis enhances the larval phenotypes induced by over-expressing the pro-inflammatory Jak/Stat pathway or by wasp infestation. Gcm works by modulating the transduction of the Upd cytokines to the site of larval hematopoiesis and hence the response to chronic (Jak/Stat over-expression) and acute (wasp infestation) immune challenges. Thus, homeostatic interactions control the function of the immune system in physiology and pathology. Our data also indicate that a transiently expressed developmental pathway has a long-lasting effect on the immune response.

摘要

最近的谱系追踪分析极大地提高了我们对免疫系统发育的理解,并强调了不同造血波的重要性。目前的挑战是了解这些波是否相互作用,以及这是否会影响免疫系统的功能。在这里,我们报告了一个调节免疫反应的分子途径,该途径涉及斑马鱼胚胎和幼虫造血波之间的通信。下调胚胎造血特异性转录因子 Gcm 会增强 Jak/Stat 通路过表达或黄蜂侵袭诱导的幼虫表型。Gcm 通过调节 Upd 细胞因子向幼虫造血部位的转导,从而影响慢性(Jak/Stat 过表达)和急性(黄蜂侵袭)免疫挑战的反应。因此,体内平衡相互作用控制了生理和病理条件下免疫系统的功能。我们的数据还表明,短暂表达的发育途径对免疫反应具有持久的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b70/6040882/b279d2cabf5b/elife-34890-fig1.jpg

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