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Regulation of Toll-like receptor signaling by NDP52-mediated selective autophagy is normally inactivated by A20

机译:NDP52介导的选择性自噬对Toll样受体信号转导的调控通常被A20灭活

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摘要

Toll-like receptor (TLR) signaling is linked to autophagy that facilitates elimination of intracellular pathogens. However, it is largely unknown whether autophagy controls TLR signaling. Here, we report that poly(I:C) stimulation induces selective autophagic degradation of the TLR adaptor molecule TRIF and the signaling molecule TRAF6, which is revealed by gene silencing of the ubiquitin-editing enzyme A20. This type of autophagy induced formation of autophagosomes and could be suppressed by an autophagy inhibitor and lysosomal inhibitors. However, this autophagy was not associated with canonical autophagic processes, including involvement of Beclin-1 and conversion of LC3-I to LC3-II. Through screening of TRIF-interacting ‘autophagy receptors’ in human cells, we identified that NDP52 mediated the selective autophagic degradation of TRIF and TRAF6 but not TRAF3. NDP52 was polyubiquitinated by TRAF6 and was involved in aggregation of TRAF6, which may result in the selective degradation. Intriguingly, only under the condition of A20 silencing, NDP52 could effectively suppress poly(I:C)-induced proinflammatory gene expression. Thus, this study clarifies a selective autophagic mechanism mediated by NDP52 that works downstream of TRIF–TRAF6. Furthermore, although A20 is known as a signaling fine-tuner to prevent excess TLR signaling, it paradoxically downregulates the fine-tuning effect of NDP52 on TLR signaling.Electronic supplementary materialThe online version of this article (doi:10.1007/s00018-011-0819-y) contains supplementary material, which is available to authorized users.
机译:Toll样受体(TLR)信号传导与自噬有关,自噬有助于消除细胞内病原体。但是,自噬是否控制TLR信号在很大程度上是未知的。在这里,我们报告说,poly(I:C)刺激诱导TLR衔接子分子TRIF和信号传导分子TRAF6的选择性自噬降解,这是通过泛素编辑酶A20的基因沉默揭示出来的。这种自噬引起自噬体的形成,并可以被自噬抑制剂和溶酶体抑制剂抑制。但是,这种自噬与规范的自噬过程无关,包括Beclin-1的参与以及LC3-I向LC3-II的转化。通过筛选人类细胞中与TRIF相互作用的“自噬受体”,我们发现NDP52介导了TRIF和TRAF6的选择性自噬降解,而不是TRAF3。 NDP52被TRAF6泛素化,并参与TRAF6的聚集,这可能导致选择性降解。有趣的是,只有在A20沉默的条件下,NDP52才能有效抑制多聚(I:C)诱导的促炎基因表达。因此,本研究阐明了由NDP52介导的选择性自噬机制,该机制在TRIF–TRAF6的下游起作用。此外,尽管A20被称为防止超额TLR信号传递的信号微调器,但它却自相矛盾地下调了NDP52对TLR信号传递的微调作用。 -y)包含补充材料,授权用户可以使用。

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