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首页> 外文期刊>Immunity >Transmembrane mutations in Toll-like receptor 9 bypass the requirement for ectodomain proteolysis and induce fatal inflammation.
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Transmembrane mutations in Toll-like receptor 9 bypass the requirement for ectodomain proteolysis and induce fatal inflammation.

机译:Toll样受体9中的跨膜突变绕过了胞外域蛋白水解的要求,并导致致命的炎症。

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摘要

Recognition of nucleic acids as a signature of infection by Toll-like receptors (TLRs) 7 and 9 exposes the host to potential self-recognition and autoimmunity. It has been proposed that intracellular compartmentalization is largely responsible for reliable self versus nonself discrimination by these receptors. We have previously shown that TLR9 and TLR7 require processing prior to activation, which may further reinforce receptor compartmentalization and tolerance to self, yet this possibility remains untested. Here we report that residues within the TLR9 transmembrane (TM) region conferred the requirement for ectodomain proteolysis. TLR9 TM mutants responded to extracellular DNA, and mice expressing such receptors died from systemic inflammation and anemia. This inflammatory disease did not require lymphocytes and appeared to require recognition of self-DNA by dendritic cells. To our knowledge, these results provide the first demonstration that TLR-intrinsic mutations can lead to a break in tolerance.
机译:识别核酸是被Toll样受体(TLR)7和9感染的标志,使宿主面临潜在的自我识别和自身免疫性。已经提出,细胞内区分开在很大程度上负责这些受体的可靠的自我与非自我区分。先前我们已经表明TLR9和TLR7在激活之前需要进行处理,这可能会进一步增强受体的区室性和对自身的耐受性,但是这种可能性仍然未经检验。在这里我们报告说,TLR9跨膜(TM)区域内的残留赋予胞外域蛋白水解的要求。 TLR9 TM突变体对细胞外DNA产生反应,表达这种受体的小鼠死于全身性炎症和贫血。这种炎性疾病不需要淋巴细胞,并且似乎需要树突状细胞识别自身DNA。据我们所知,这些结果首次证明了TLR固有突变可导致耐受性下降。

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