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一种具有动态胚胎表达模式的文昌鱼Toll样受体对病原体作出反应,并通过髓样分化因子88激活核因子κB通路。

An amphioxus TLR with dynamic embryonic expression pattern responses to pathogens and activates NF-kappaB pathway via MyD88.

作者信息

Yuan Shaochun, Huang Shengfeng, Zhang Wei, Wu Tao, Dong Meiling, Yu Yanhong, Liu Tong, Wu Kui, Liu Huiling, Yang Manyi, Zhang Hongwei, Xu Anlong

机构信息

State Key Laboratory of Biocontrol, Department of Biochemistry, College of Life Sciences, Sun Yat-sen (Zhongshan) University, 135 Xingangxi Rd, Guangzhou 510275, People's Republic of China.

出版信息

Mol Immunol. 2009 Jul;46(11-12):2348-56. doi: 10.1016/j.molimm.2009.03.022. Epub 2009 Apr 25.

Abstract

A big bang expansion of the Vertebrate-type (V-type) TLRs was reported in amphioxus. To shed lights on its implications, a unique TLR which is reversely inserted into an intron of amphioxus PSMB7-10 by retrotransposition in the highly polymorphic proto-MHC region was cloned from Chinese amphioxus (Branchiostoma belcheri tsingtauense) and named as bbtTLR1. In situ assays showed that bbtTLR1 was predominantly expressed in pharynx and gut from larva to adult stages, which are considered as the first frontlines of amphioxus defense system. Acute immune challenges revealed that the expression of bbtTLR1 was stimulated by bacteria and their cell wall components, while suppressed by Glucan and Poly I:C in the digestive system. Amphioxus also had dozens of TIR adaptors from which we cloned bbtMyD88. BbtMyD88 expressed in 293T cells led to the activation of NF-kappaB pathway through its DEATH and middle domains. Moreover, this activation could be enhanced by bbtTLR1 through the direct association with bbtMyD88. In summary, this study provides evidence for the immune-relation of amphioxus V-type TLRs, and suggests that amphioxus TLR1 and MyD88 represent a basic evolutionary pathway.

摘要

文昌鱼中报道了脊椎动物型(V型)Toll样受体(TLR)的一次爆发式扩张。为了阐明其意义,从中国文昌鱼(青岛文昌鱼)高度多态的原主要组织相容性复合体(proto-MHC)区域中克隆了一种独特的TLR,它通过逆转座反向插入文昌鱼PSMB7-10的一个内含子中,并命名为bbtTLR1。原位检测表明,bbtTLR1在从幼虫到成体阶段的咽部和肠道中主要表达,这些部位被认为是文昌鱼防御系统的第一道防线。急性免疫刺激显示,bbtTLR1的表达受到细菌及其细胞壁成分的刺激,而在消化系统中受到葡聚糖和聚肌胞苷酸(Poly I:C)的抑制。文昌鱼还有数十种TIR衔接蛋白,从中我们克隆了bbtMyD88。在293T细胞中表达的bbtMyD88通过其死亡结构域和中间结构域导致核因子κB(NF-κB)途径的激活。此外,bbtTLR1与bbtMyD88直接结合可增强这种激活。总之,本研究为文昌鱼V型TLR的免疫相关性提供了证据,并表明文昌鱼TLR1和MyD88代表了一条基本的进化途径。

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