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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >The Processed Amino-Terminal Fragment of Human TLR7 Acts as a Chaperone To Direct Human TLR7 into Endosomes
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The Processed Amino-Terminal Fragment of Human TLR7 Acts as a Chaperone To Direct Human TLR7 into Endosomes

机译:人TLR7的加工氨基末端片段充当将人TLR7导入内体的伴侣。

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TLR7 mediates innate immune responses to viral RNA in endocytic compartments. Mouse and human (h)TLR7 undergo proteolytic cleavage, resulting in the generation of a C-terminal fragment that accumulates in endosomes and associates with the signaling adaptor MyD88 upon receptor triggering by TLR7 agonists. Although mouse TLR7 is cleaved in endosomes by acidic proteases, hTLR7 processing can occur at neutral pH throughout the secretory pathway through the activity of furin-like proprotein convertases. However, the mechanisms by which cleaved hTLR7 reaches the endosomal compartment remain unclear. In this study, we demonstrate that, after hTLR7 proteolytic processing, the liberated amino (N)-terminal fragment remains bound to the C terminus through disulfide bonds and provides key trafficking information that ensures correct delivery of the complex to endosomal compartments. In the absence of the N-terminal fragment, the C-terminal fragment is redirected to the cell surface, where it is functionally inactive. Our data reveal a novel role for the N terminus of hTLR7 as a molecular chaperone that provides processed hTLR7 with the correct targeting instructions to reach the endosomal compartment, hence ensuring its biological activity and preventing inadvertent cell surface responses to self-RNA.
机译:TLR7介导内吞区室对病毒RNA的先天免疫应答。小鼠和人(h)TLR7进行蛋白水解切割,导致生成C端片段,该片段在TLR7激动剂触发受体后,在内体中积累并与信号转接头MyD88结合。尽管小鼠TLR7通过酸性蛋白酶在内涵体中裂解,但hTLR7加工可通过弗林蛋白酶样前蛋白转化酶的活性在整个分泌途径的中性pH下发生。但是,切割的hTLR7到达内体区室的机制仍不清楚。在这项研究中,我们证明,在hTLR7蛋白水解处理后,释放的氨基(N)末端片段仍通过二硫键与C末端结合,并提供了关键的运输信息,可确保将复合物正确递送至内体区室。在不存在N末端片段的情况下,C末端片段被重定向到细胞表面,在该表面上它是功能性失活的。我们的数据揭示了hTLR7 N末端作为分子伴侣的新作用,该分子伴侣为加工过的hTLR7提供正确的靶向指令以到达内体区室,从而确保其生物学活性并防止对自身RNA的无意细胞表面反应。

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