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

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作者
Alexis Combes
Voahirana Camosseto
Prudence N’Guessan
Rafael J. Argüello
Julie Mussard
Christophe Caux
Nathalie Bendriss-Vermare
Philippe Pierre
Evelina Gatti
机构
[1] Aix Marseille Université,
[2] CNRS,undefined
[3] INSERM,undefined
[4] CIML,undefined
[5] International associated laboratory (LIA) CNRS “Mistra”,undefined
[6] Centre Léon Berard,undefined
[7] Université de Lyon,undefined
[8] INSERM U1052,undefined
[9] CNRS UMR5286,undefined
[10] Institute for Research in Biomedicine-iBiMED and Aveiro Health Sciences Program University of Aveiro,undefined
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Nature Communications | / 8卷
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摘要
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.
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[1]  
Akira S(2006)Pathogen recognition and innate immunity Cell 124 783-801
[2]  
Uematsu S(2004)TIR domain-containing adaptors define the specificity of TLR signaling Mol. Immunol. 40 861-868
[3]  
Takeuchi O(2004)Role of a transductional-transcriptional processor complex involving MyD88 and IRF-7 in Toll-like receptor signaling Proc. Natl Acad. Sci. USA 101 15416-15421
[4]  
Yamamoto M(2010)The role of pattern-recognition receptors in innate immunity: update on Toll-like receptors Nat. Immunol. 11 373-384
[5]  
Takeda K(2011)Nucleic acid recognition by Toll-like receptors is coupled to stepwise processing by cathepsins and asparagine endopeptidase J. Exp. Med. 208 643-651
[6]  
Akira S(2009)Critical role for asparagine endopeptidase in endocytic Toll-like receptor signalling in dendritic cells Immunity 31 737-748
[7]  
Honda K(2008)Proteolytic cleavage in an endolysosomal compartment is required for activation of Toll-like receptor 9 Nat. Immunol. 9 1407-1414
[8]  
Kawai T(2001)Identification of CpG oligonucleotide sequences with high induction of IFN-alpha/beta in plasmacytoid dendritic cells Eur. J. Immunol. 31 2154-2163
[9]  
Akira S(2000)A Toll-like receptor recognizes bacterial DNA Nature 408 740-745
[10]  
Ewald SE(2004)TLR9-dependent recognition of MCMV by IPC and DC generates coordinated cytokine responses that activate antiviral NK cell function Immunity 21 107-119