Essential role for TIRAP in activation of the signalling cascade shared by TLR2 and TLR4

被引:0
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作者
Masahiro Yamamoto
Shintaro Sato
Hiroaki Hemmi
Hideki Sanjo
Satoshi Uematsu
Tsuneyasu Kaisho
Katsuaki Hoshino
Osamu Takeuchi
Masaya Kobayashi
Takashi Fujita
Kiyoshi Takeda
Shizuo Akira
机构
[1] Osaka University,Department of Host Defense, Research Institute for Microbial Diseases
[2] Japan Science and Technology Corporation,Solution Oriented Research for Science and Technology
[3] Japan Science and Technology Corporation,Department of Tumor Cell Biology
[4] RIKEN Research Center for Allergy and Immunology,undefined
[5] The Tokyo Metropolitan Institute of Medical Science,undefined
来源
Nature | 2002年 / 420卷
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摘要
Signal transduction through Toll-like receptors (TLRs) originates from their intracellular Toll/interleukin-1 receptor (TIR) domain, which binds to MyD88, a common adaptor protein containing a TIR domain1,2,3,4. Although cytokine production is completely abolished in MyD88-deficient mice, some responses to lipopolysaccharide (LPS), including the induction of interferon-inducible genes and the maturation of dendritic cells, are still observed5,6,7. Another adaptor, TIRAP (also known as Mal), has been cloned as a molecule that specifically associates with TLR4 and thus may be responsible for the MyD88-independent response8,9. Here we report that LPS-induced splenocyte proliferation and cytokine production are abolished in mice lacking TIRAP. As in MyD88-deficient mice, LPS activation of the nuclear factor NF-κB and mitogen-activated protein kinases is induced with delayed kinetics in TIRAP-deficient mice5. Expression of interferon-inducible genes and the maturation of dendritic cells is observed in these mice; they also show defective response to TLR2 ligands, but not to stimuli that activate TLR3, TLR7 or TLR9. In contrast to previous suggestions, our results show that TIRAP is not specific to TLR4 signalling and does not participate in the MyD88-independent pathway. Instead, TIRAP has a crucial role in the MyD88-dependent signalling pathway shared by TLR2 and TLR4.
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页码:324 / 329
页数:5
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