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新型Toll/IL-1受体同源区域衔接蛋白在文昌鱼TLR信号通路中作为负调控因子发挥作用。

Novel Toll/IL-1 Receptor Homologous Region Adaptors Act as Negative Regulators in Amphioxus TLR Signaling.

作者信息

Peng Jian, Tao Xin, Li Rui, Hu Jingru, Ruan Jie, Wang Ruihua, Yang Manyi, Yang Rirong, Dong Xiangru, Chen Shangwu, Xu Anlong, Yuan Shaochun

机构信息

State Key Laboratory of Biocontrol, Guangdong Key Laboratory of Pharmaceutical Functional Genes, College of Life Sciences, Sun Yat-Sen University, Guangzhou 510275, People's Republic of China; and.

State Key Laboratory of Biocontrol, Guangdong Key Laboratory of Pharmaceutical Functional Genes, College of Life Sciences, Sun Yat-Sen University, Guangzhou 510275, People's Republic of China; and Beijing University of Chinese Medicine, Beijing 100029, People's Republic of China

出版信息

J Immunol. 2015 Oct 1;195(7):3110-8. doi: 10.4049/jimmunol.1403003. Epub 2015 Aug 31.

Abstract

Studies have shown that the basal chordate amphioxus possesses an extraordinarily complex TLR system, including 39 TLRs and at least 40 Toll/IL-1R homologous region (TIR) adaptors. Besides homologs to MyD88 and TIR domain-containing adaptor molecule (TICAM), most amphioxus TIR adaptors exhibit domain architectures that are not observed in other species. To reveal how these novel TIR adaptors function in amphioxus Branchiostoma belcheri tsingtauense (bbt), four representatives, bbtTIRA, bbtTIRB, bbtTIRC, and bbtTIRD, were selected for functional analyses. We found bbtTIRA to show a unique inhibitory role in amphioxus TICAM-mediated pathway by interacting with bbtTICAM and bbt receptor interacting protein 1b, whereas bbtTIRC specifically inhibits the amphioxus MyD88-dependent pathway by interacting with bbtMyD88 and depressing the polyubiquitination of bbt TNFR-associated factor 6. Although both bbtTIRB and bbtTIRD are located on endosomes, the TIR domain of bbtTIRB can interact with bbtMyD88 in the cytosol, whereas the TIR domain of bbtTIRD is enclosed in endosome, suggesting that bbtTIRD may be a redundant gene in amphioxus. This study indicated that most expanded TIR adaptors play nonredundant regulatory roles in amphioxus TLR signaling, adding a new layer to understanding the diversity and complexity of innate immunity at basal chordate.

摘要

研究表明,基础脊索动物文昌鱼拥有极其复杂的Toll样受体(TLR)系统,包括39个TLR和至少40个Toll/白细胞介素-1受体同源区域(TIR)衔接蛋白。除了与髓样分化因子88(MyD88)和含TIR结构域的衔接分子(TICAM)的同源物外,大多数文昌鱼TIR衔接蛋白呈现出在其他物种中未观察到的结构域架构。为了揭示这些新型TIR衔接蛋白在青岛文昌鱼(bbt)中的功能,选择了四个代表蛋白,即bbtTIRA、bbtTIRB、bbtTIRC和bbtTIRD进行功能分析。我们发现bbtTIRA通过与bbtTICAM和bbt受体相互作用蛋白1b相互作用,在文昌鱼TICAM介导的途径中发挥独特的抑制作用,而bbtTIRC通过与bbtMyD88相互作用并抑制bbt肿瘤坏死因子受体相关因子6的多聚泛素化,特异性抑制文昌鱼MyD88依赖的途径。虽然bbtTIRB和bbtTIRD都位于内体上,但bbtTIRB的TIR结构域可以在细胞质中与bbtMyD88相互作用,而bbtTIRD的TIR结构域则被封闭在内体中,这表明bbtTIRD可能是文昌鱼中的一个冗余基因。这项研究表明,大多数扩增的TIR衔接蛋白在文昌鱼TLR信号传导中发挥非冗余的调节作用,为理解基础脊索动物先天免疫的多样性和复杂性增添了新的层面。

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