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多细胞动物进化过程中胞外ATP感知的保守性:珊瑚和文昌鱼P2X7样受体以及比目鱼P2X7受体的鉴定与功能表征

Conservation of eATP perception throughout multicellular animal evolution: Identification and functional characterization of coral and amphioxus P2X7-like receptors and flounder P2X7 receptor.

作者信息

Duan Huimin, Ni Shousheng, Yang Shuaiqi, Zhou Yang, Zhang Yu, Zhang Shicui

机构信息

Institute of Evolution and Marine Biodiversity, Department of Marine Biology, Ocean University of China, Qingdao, 266003, China.

Institute of Evolution and Marine Biodiversity, Department of Marine Biology, Ocean University of China, Qingdao, 266003, China.

出版信息

Dev Comp Immunol. 2020 May;106:103641. doi: 10.1016/j.dci.2020.103641. Epub 2020 Feb 8.

DOI:10.1016/j.dci.2020.103641
PMID:32045589
Abstract

Perception of extracellular ATP (eATP), a common endogenous damage-associated molecular pattern, is through its receptor P2X7R. If eATP/P2X7R signaling is conserved throughout animal evolution is unknown. Moreover, little information is currently available regarding P2X7R in invertebrates. Here we demonstrated that the coral P2X7-like receptor, AdP2X7RL, the amphioxus P2X7-like receptor, BjP2X7RL and the flounder P2X7 receptor, PoP2X7R, shared common features characteristic of mammalian P2X7R, and their 3D structures displayed high resemblance to that of human P2X7R. Expression of Adp2x7rl, Bjp2x7rl and Pop2x7r was all subjected to the regulation by LPS and ATP. We also showed that AdP2X7RL, BjP2X7RL and PoP2X7R were distributed on the plasma membrane in AdP2X7RL-, BjP2X7RL- and PoP2X7R-expressing HEK cells, and had strong affinity to eATP. Importantly, the binding of AdP2X7RL, BjP2X7RL and PoP2X7R to eATP all induced similar downstream responses, including induction of cytokines (IL-1β, IL-6, IL-8 and CCL-2), enhancement of phagocytosis and activation of AKT/ERK-associated signaling pathway observed for mammalian P2X7R. Collectively, our results indicate for the first time that both coral and amphioxus P2X7RL as well as flounder P2X7R can interact with eATP, and induce events that trigger mammalian mechanisms, suggesting the high conservation of eATP perception throughout multicellular animal evolution.

摘要

细胞外ATP(eATP)是一种常见的内源性损伤相关分子模式,对它的感知是通过其受体P2X7R实现的。eATP/P2X7R信号通路在整个动物进化过程中是否保守尚不清楚。此外,目前关于无脊椎动物中P2X7R的信息很少。在这里,我们证明了珊瑚的P2X7样受体AdP2X7RL、文昌鱼的P2X7样受体BjP2X7RL和比目鱼的P2X7受体PoP2X7R具有与哺乳动物P2X7R共同的特征,并且它们的三维结构与人类P2X7R高度相似。Adp2x7rl、Bjp2x7rl和Pop2x7r的表达均受LPS和ATP的调控。我们还表明,AdP2X7RL、BjP2X7RL和PoP2X7R分布在表达AdP2X7RL、BjP2X7RL和PoP2X7R的HEK细胞的质膜上,并且对eATP具有很强的亲和力。重要的是,AdP2X7RL、BjP2X7RL和PoP2X7R与eATP的结合均诱导了类似的下游反应,包括细胞因子(IL-1β、IL-6、IL-8和CCL-2)的诱导、吞噬作用的增强以及哺乳动物P2X7R所观察到的AKT/ERK相关信号通路的激活。总体而言,我们的结果首次表明,珊瑚和文昌鱼的P2X7RL以及比目鱼的P2X7R都可以与eATP相互作用,并诱导触发哺乳动物机制的事件,这表明在多细胞动物进化过程中eATP感知具有高度保守性。

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