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BAD-LAMP controls TLR9 trafficking and signalling in human plasmacytoid dendritic cells

机译:BAD-LAMP控制人浆细胞样树突状细胞中TLR9的运输和信号传导

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Toll-like receptors (TLR) are essential components of the innate immune system. Several accessory proteins, such as UNC93B1, are required for transport and activation of nucleic acid sensing Toll-like receptors in endosomes. Here, we show that BAD-LAMP (LAMP5) controls TLR9 trafficking to LAMP1+ late endosomes in human plasmacytoid dendritic cells (pDC), leading to NF-κB activation and TNF production upon DNA detection. An inducible VAMP3+/LAMP2+/LAMP1? endolysosome compartment exists in pDCs from which TLR9 activation triggers type I interferon expression. BAD-LAMP-silencing enhances TLR9 retention in this compartment and consequent downstream signalling events. Conversely, sustained BAD-LAMP expression in pDCs contributes to their lack of type I interferon production after exposure to a TGF-β-positive microenvironment or isolation from human breast tumours. Hence, BAD-LAMP limits interferon expression in pDCs indirectly, by promoting TLR9 sorting to late endosome compartments at steady state and in response to immunomodulatory cues.
机译:Toll样受体(TLR)是先天免疫系统的重要组成部分。内体中核酸传感Toll样受体的转运和激活需要几种辅助蛋白,例如UNC93B1。在这里,我们显示BAD-LAMP(LAMP5)控制TLR9运输到人浆细胞样树突状细胞(pDC)中的LAMP1 +晚期内体,导致DNA检测时导致NF-κB激活和TNF产生。诱导型VAMP3 + / LAMP2 + / LAMP1?内溶酶体区室存在于pDC中,TLR9激活从中触发I型干扰素表达。 BAD-LAMP沉默增强了TLR9在该区室中的保留,并因此增强了下游信号传导事件。相反,pDC中持续的BAD-LAMP表达导致TDC-β阳性微环境暴露或与人乳腺肿瘤分离后,缺乏I型干扰素产生。因此,BAD-LAMP通过促进TLR9在稳态和对免疫调节信号的反应中促进晚期内体区室的分选来间接限制pDC中干扰素的表达。

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