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鱼类清道夫受体是一种脂多糖识别分子,通过与肿瘤坏死因子受体相关因子 2 竞争进入 TNF-α 信号通路,参与 NF-κB 激活的负调控。

Scavenger receptor in fish is a lipopolysaccharide recognition molecule involved in negative regulation of NF-κB activation by competing with TNF receptor-associated factor 2 recruitment into the TNF-α signaling pathway.

机构信息

College of Life Sciences, Zhejiang University, Hangzhou 310058, People's Republic of China.

出版信息

J Immunol. 2012 Oct 15;189(8):4024-39. doi: 10.4049/jimmunol.1201244. Epub 2012 Sep 17.

Abstract

Scavenger receptors (SRs) play crucial roles in innate immunity by acting as pattern recognition receptors. Although SRs are widely documented in mammals, data on their occurrence and functions in ancient vertebrates are limited. In this study, we report, to our knowledge, the first cloning and functional characterization of an SR molecule from teleost fish (Tetraodon nigroviridis). This SR (TnSR) was identified as a homolog to mammalian scavenger receptor class A member 5 with the conserved structure of a class A SR. TnSR contained multidomains in a type II transmembrane receptor, including an SR cysteine-rich domain, two coiled-coil collagenous domains, a transmmebrane domain, and a short N-terminal intracellular region with an unexpected TNFR-associated factor 2-binding consensus motif similar to that in human MSR molecules. Phylogenetic analysis suggested that TnSR may be an ancient member of class A SRs resulting from the close relationship between scavenger receptor class A member 5 and macrophage SR in vertebrates associated with the subtle differences in TnSR structure. Subcellular localization analysis showed that TnSR was a cell membrane receptor with homotrimer forms involved in the recognition and internalization of LPS from surface membranes into lysosomes. Functionally, TnSR expression was dramatically induced by LPS stimulation. TnSR served as a negative regulator in LPS-induced NF-κB activation by the competitive recruitment of TNFR-associated factor 2 from the TNF-α signaling pathway. To our knowledge, this is the first report showing that SR plays an inhibitory role in LPS-elicited inflammation by cross-talking with the TNF-α inflammatory pathway. These findings contribute to a better understanding of the biological and evolutionary history of the SR family.

摘要

清道夫受体 (SRs) 通过作为模式识别受体在先天免疫中发挥关键作用。尽管在哺乳动物中广泛记录了 SRs,但关于它们在古代脊椎动物中的发生和功能的数据有限。在这项研究中,我们报告了,据我们所知,首次从硬骨鱼 (Tetraodon nigroviridis) 克隆和功能表征 SR 分子。这种 SR(TnSR)被鉴定为哺乳动物清道夫受体 A 类成员 5 的同源物,具有 A 类 SR 的保守结构。TnSR 在 II 型跨膜受体中包含多个结构域,包括一个 SR 半胱氨酸丰富结构域、两个卷曲螺旋胶原结构域、一个跨膜结构域和一个短的 N 端细胞内区,其中含有一个出人意料的与人类 MSR 分子相似的 TNFR 相关因子 2 结合保守基序。系统发育分析表明,TnSR 可能是 A 类 SR 的古老成员,这是由于与脊椎动物中清道夫受体 A 类成员 5 和巨噬细胞 SR 之间的密切关系,导致 TnSR 结构的细微差异。亚细胞定位分析表明,TnSR 是一种细胞膜受体,其同源三聚体形式参与了 LPS 从表面膜到溶酶体的识别和内化。功能上,TnSR 的表达在 LPS 刺激下显著诱导。TnSR 通过从 TNF-α 信号通路中竞争募集 TNFR 相关因子 2,作为 LPS 诱导的 NF-κB 激活的负调节剂。据我们所知,这是第一个表明 SR 通过与 TNF-α 炎症通路相互作用在 LPS 引发的炎症中发挥抑制作用的报告。这些发现有助于更好地理解 SR 家族的生物学和进化历史。

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