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MD-2 is required for disulfide HMGB1–dependent TLR4 signaling

机译:MD-2是依赖二硫化物HMGB1的TLR4信号传导所必需的

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Innate immune receptors for pathogen- and damage-associated molecular patterns (PAMPs and DAMPs) orchestrate inflammatory responses to infection and injury. Secreted by activated immune cells or passively released by damaged cells, HMGB1 is subjected to redox modification that distinctly influences its extracellular functions. Previously, it was unknown how the TLR4 signalosome distinguished between HMGB1 isoforms. Here we demonstrate that the extracellular TLR4 adaptor, myeloid differentiation factor 2 (MD-2), binds specifically to the cytokine-inducing disulfide isoform of HMGB1, to the exclusion of other isoforms. Using MD-2–deficient mice, as well as MD-2 silencing in macrophages, we show a requirement for HMGB1-dependent TLR4 signaling. By screening HMGB1 peptide libraries, we identified a tetramer (FSSE, designated P5779) as a specific MD-2 antagonist preventing MD-2–HMGB1 interaction and TLR4 signaling. P5779 does not interfere with lipopolysaccharide-induced cytokine/chemokine production, thus preserving PAMP-mediated TLR4–MD-2 responses. Furthermore, P5779 can protect mice against hepatic ischemia/reperfusion injury, chemical toxicity, and sepsis. These findings reveal a novel mechanism by which innate systems selectively recognize specific HMGB1 isoforms. The results may direct toward strategies aimed at attenuating DAMP-mediated inflammation while preserving antimicrobial immune responsiveness.
机译:与病原体和损伤相关的分子模式(PAMP和DAMP)的先天免疫受体可以协调对感染和损伤的炎症反应。 HMGB1由活化的免疫细胞分泌或由受损的细胞被动释放,受到氧化还原修饰,明显影响其细胞外功能。以前,还不清楚TLR4信号小体如何区分HMGB1同工型。在这里我们证明细胞外TLR4适配器,髓系分化因子2(MD-2),特异性结合HMGB1的细胞因子诱导二硫同工型,排除其他同工型。使用MD-2缺陷小鼠以及巨噬细胞中的MD-2沉默,我们显示了依赖HMGB1的TLR4信号的需求。通过筛选HMGB1肽库,我们确定了四聚体(FSSE,命名为P5779)作为防止MD-2–HMGB1相互作用和TLR4信号传导的特定MD-2拮抗剂。 P5779不会干扰脂多糖诱导的细胞因子/趋化因子的产生,因此保留了PAMP介导的TLR4-MD-2反应。此外,P5779可以保护小鼠免受肝脏缺血/再灌注损伤,化学毒性和败血症的侵害。这些发现揭示了先天系统选择性识别特定HMGB1同工型的新机制。该结果可能指向旨在减轻DAMP介导的炎症同时保留抗微生物免疫反应性的策略。

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