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首页> 外文期刊>The journal of immunology >Original Ligand for LTβR Is LIGHT: Insight into Evolution of the LT/LTβR System
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Original Ligand for LTβR Is LIGHT: Insight into Evolution of the LT/LTβR System

机译:LTβR的原始配体很轻:洞悉LT /LTβR系统的演变

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The lymphotoxin (LT)/LTβ receptor (LTβR) axis is crucial for the regulation of immune responses and development of lymphoid tissues in mammals. Despite the importance of this pathway, the existence and function of LT and LTβR remain obscure for nonmammalian species. In this study, we report a nonmammalian LTβR and its ligand. We demonstrate that TNF-New (TNFN), which has been considered orthologous to mammalian LT, was expressed on the cell surface as a homomer in vitro. This different protein structure indicates that TNFN is not orthologous to mammalian LTα and LTβ. Additionally, we found that LTβR was conserved in teleosts, but the soluble form of recombinant fugu LTβR did not bind to membrane TNFN under the circumstance tested. Conversely, the LTβR recombinant bound to another ligand, LIGHT, similar to that of mammals. These findings indicate that teleost LTβR is originally a LIGHT receptor. In the cytoplasmic region of fugu LTβR, recombinant fugu LTβR bound to the adaptor protein TNFR-associated factor (TRAF) 2, but little to TRAF3. This difference suggests that teleost LTβR could potentially activate the classical NF-κB pathway with a novel binding domain, but would have little ability to activate an alternative one. Collectively, our results suggested that LIGHT was the original ligand for LTβR, and that the teleost immune system lacked the LT/LTβR pathway. Acquisition of the LT ligand and TRAF binding domain after lobe-finned fish may have facilitated the sophistication of the immune system and lymphoid tissues.
机译:淋巴毒素(LT)/LTβ受体(LTβR)轴对于调节哺乳动物的免疫应答和淋巴组织的发育至关重要。尽管该途径很重要,但对于非哺乳动物物种而言,LT和LTβR的存在和功能仍然不清楚。在这项研究中,我们报告了非哺乳动物的LTβR及其配体。我们证明,已经被认为与哺乳动物LT同源的TNF-New(TNFN)在细胞表面表达为体外同源物。这种不同的蛋白质结构表明TNFN与哺乳动物LTα和LTβ不同源。此外,我们发现LTβR在硬骨鱼中是保守的,但是在实验情况下,重组河豚LTβR的可溶形式不与膜TNFN结合。相反,LTβR重组体与哺乳动物的另一个配体LIGHT结合。这些发现表明硬骨鱼LTβR最初是LIGHT受体。在河豚LTβR的细胞质区域中,重组河豚LTβR与衔接蛋白TNFR相关因子(TRAF)2结合,而与TRAF3结合的很少。这种差异表明硬骨鱼LTβR可能以一种新的结合域激活经典的NF-κB途径,但激活另一种途径的能力很小。总体而言,我们的研究结果表明,LIGHT是LTβR的原始配体,而硬骨免疫系统缺乏LT /LTβR途径。在鱼翅鱼后获得LT配体和TRAF结合域可能促进了免疫系统和淋巴组织的成熟。

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