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文昌鱼 TLR 家族的鉴定及新型 TLR22 样受体参与 dsRNA 识别的发现。

Characterization of the TLR Family in and Discovery of a Novel TLR22-Like Involved in dsRNA Recognition in Amphioxus.

机构信息

Department of Cell Biology, Animal Physiology and Immunology, Institute of Biotechnology and Biomedicine (IBB), Universitat Autònoma de Barcelona, Bellaterra, Spain.

Molecular Physiology of the Synapse Laboratory, Biomedical Research Institute Sant Pau (IIB Sant Pau), Barcelona, Spain.

出版信息

Front Immunol. 2018 Nov 2;9:2525. doi: 10.3389/fimmu.2018.02525. eCollection 2018.

Abstract

Toll-like receptors (TLRs) are important for raising innate immune responses in both invertebrates and vertebrates. Amphioxus belongs to an ancient chordate lineage which shares key features with vertebrates. The genomic research on TLR genes in and reveals the expansion of TLRs in amphioxus. However, the repertoire of TLRs in has not been studied and the functionality of amphioxus TLRs has not been reported. We have identified from transcriptomic data 30 new putative TLRs in and all of them are transcribed in adult amphioxus. Phylogenetic analysis showed that the repertoire of TLRs consists of both non-vertebrate and vertebrate-like TLRs. It also indicated a lineage-specific expansion in orthologous clusters of the vertebrate TLR11 family. We did not detect any representatives of the vertebrate TLR1, TLR3, TLR4, TLR5 and TLR7 families. To gain insight into these TLRs, we studied in depth a particular TLR highly similar to a gene annotated as bbtTLR1. The phylogenetic analysis of this novel BlTLR showed that it clusters with the vertebrate TLR11 family and it might be more related to TLR13 subfamily according to similar domain architecture. Transient and stable expression in HEK293 cells showed that the BlTLR localizes on the plasma membrane, but it did not respond to the most common mammalian TLR ligands. However, when the ectodomain of BlTLR is fused to the TIR domain of human TLR2, the chimeric protein could indeed induce NF-κB transactivation in response to the viral ligand Poly I:C, also indicating that in amphioxus, specific accessory proteins are needed for downstream activation. Based on the phylogenetic, subcellular localization and functional analysis, we propose that the novel BlTLR might be classified as an antiviral receptor sharing at least partly the functions performed by vertebrate TLR22. TLR22 is thought to be viral teleost-specific TLR but here we demonstrate that teleosts and amphioxus TLR22-like probably shared a common ancestor. Additional functional studies with other lancelet TLR genes will enrich our understanding of the immune response in amphioxus and will provide a unique perspective on the evolution of the immune system.

摘要

Toll 样受体 (TLRs) 在无脊椎动物和脊椎动物中对先天免疫反应的产生都很重要。文昌鱼属于古老的脊索动物谱系,与脊椎动物有许多关键特征。对 和 中 TLR 基因的基因组研究揭示了文昌鱼 TLR 的扩展。然而, 中 TLR 的基因库尚未被研究,文昌鱼 TLR 的功能也尚未被报道。我们从转录组数据中鉴定出 30 种新的 中假定的 TLR,它们在成年文昌鱼中都有转录。系统发育分析表明,TLR 库由非脊椎动物和脊椎动物样 TLR 组成。它还表明,在脊椎动物 TLR11 家族的同源簇中存在谱系特异性扩展。我们没有检测到任何脊椎动物 TLR1、TLR3、TLR4、TLR5 和 TLR7 家族的代表。为了深入了解这些 TLR,我们深入研究了一种与 基因高度相似的特定 TLR,该基因被注释为 bbtTLR1。该新型 BlTLR 的系统发育分析表明,它与脊椎动物 TLR11 家族聚类,根据相似的结构域结构,它可能与 TLR13 亚家族更相关。在 HEK293 细胞中的瞬时和稳定表达表明,BlTLR 定位于质膜上,但它对最常见的哺乳动物 TLR 配体没有反应。然而,当 BlTLR 的胞外结构域与人类 TLR2 的 TIR 结构域融合时,嵌合蛋白确实可以响应病毒配体 Poly I:C 诱导 NF-κB 反式激活,这也表明在文昌鱼中,下游激活需要特定的辅助蛋白。基于系统发育、亚细胞定位和功能分析,我们提出新型 BlTLR 可能被归类为具有抗病毒功能的受体,至少部分功能与脊椎动物 TLR22 相同。TLR22 被认为是鱼类特有的 TLR,但在这里我们证明了鱼类和文昌鱼 TLR22 样可能有共同的祖先。用其他文昌鱼 TLR 基因进行更多的功能研究将丰富我们对文昌鱼免疫反应的理解,并为免疫系统的进化提供独特的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61eb/6224433/1807be336173/fimmu-09-02525-g0001.jpg

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