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Editors choice: Toll-like receptor 9 trafficking and signaling for type I interferons requires PIKfyve activity

机译:编辑选择:I型干扰素的Toll样受体9转运和信号传导需要PIKfyve活性

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摘要

Toll-like receptors (TLRs) traffic to distinct membranes for signaling. TLR7 and TLR9 recognize viral nucleic acids in the endosomes and induce robust anti-viral program. Signaling from these TLRs bifurcate at the level of distinct endosomal compartments, namely VAMP3+ and LAMP+ endosomes, to mediate the induction of cytokine and type I interferon (IFN) genes, respectively. The formation of the TLR9 endosome competent for IFNs induction requires AP-3. Phosphoinositides (PIs) mark distinct subcellular membranes and control membrane trafficking. However, their role in TLR trafficking and signaling in different dendritic cell (DC) subsets remains unclear. Here, we examined the role of phosphatidylinositol 3P 5-kinase, PIKfyve, in TLR9 trafficking and signaling. We demonstrate that inhibition of PIKfyve activity preferentially blocks TLR9 signaling for type I IFN induction in FLT3L-bone marrow-derived DCs. By confocal microscopy using RAW264.7 cells, we show that trafficking of both TLR9 and CpG to the LAMP1+ compartment was blocked by PIKfyve inhibitor treatment, whereas their trafficking to the VAMP3+ endosome remained intact. Further, AP-3 recruitment to TLR9 endosomes was impaired by PIKfyve inhibition. These data indicate that PIKfyve provides critical PIs necessary for the formation of endosome from which TLR9 signals to induce type I IFNs.
机译:Toll样受体(TLR)传输至不同的膜以发出信号。 TLR7和TLR9识别内体中的病毒核酸并诱导强大的抗病毒程序。这些TLR的信号分叉在不同的内体区室水平,即VAMP3 + 和LAMP + 内体水平,以介导细胞因子和I型干扰素(IFN)基因的诱导,分别。能够诱导IFN的TLR9内体的形成需要AP-3。磷酸肌醇(PI)标记不同的亚细胞膜并控制膜运输。然而,它们在不同树突状细胞(DC)亚组中的TLR转运和信号传导中的作用仍不清楚。在这里,我们检查了磷脂酰肌醇3P 5-激酶PIKfyve在TLR9转运和信号传导中的作用。我们证明抑制PIKfyve活性优先阻止FLR3L骨髓衍生DC中I型IFN诱导的TLR9信号传导。通过使用RAW264.7细胞的共聚焦显微镜,我们发现TLR9和CpG两者向LAMP1 + 隔室的运输均被PIKfyve抑制剂处理阻止,而它们向VAMP3 + 内体保持完整。此外,PIKfyve抑制作用削弱了AP-3向TLR9内体的募集。这些数据表明PIKfyve提供了形成内体所需的关键PI,TLR9信号从该内体诱导I型IFN。

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