首页> 外文OA文献 >Endotoxin Tolerance Impairs IL-1 Receptor-Associated Kinase (IRAK) 4 and TGF-β-activated Kinase 1 Activation, K63-linked Polyubiquitination and Assembly of IRAK1, TNF Receptor-associated Factor 6, and IκB Kinase γ and Increases A20 Expression*
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Endotoxin Tolerance Impairs IL-1 Receptor-Associated Kinase (IRAK) 4 and TGF-β-activated Kinase 1 Activation, K63-linked Polyubiquitination and Assembly of IRAK1, TNF Receptor-associated Factor 6, and IκB Kinase γ and Increases A20 Expression*

机译:内毒素耐受性会损害IL-1受体相关激酶(IRAK)4和TGF-β活化激酶1活化,K63连接的多泛素化和IRAK1,TNF受体相关因子6和IκB激酶γ的组装并增加A20表达*

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摘要

Endotoxin tolerance reprograms Toll-like receptor 4 responses by impairing LPS-elicited production of pro-inflammatory cytokines without inhibiting expression of anti-inflammatory or anti-microbial mediators. In septic patients, Toll-like receptor tolerance is thought to underlie decreased pro-inflammatory cytokine expression in response to LPS and increased incidence of microbial infections. The impact of endotoxin tolerance on recruitment, post-translational modifications and signalosome assembly of IL-1 receptor-associated kinase (IRAK) 4, IRAK1, TNF receptor-associated factor (TRAF) 6, TGF-β-activated kinase (TAK) 1, and IκB kinase (IKK) γ is largely unknown. We report that endotoxin tolerization of THP1 cells and human monocytes impairs LPS-mediated receptor recruitment and activation of IRAK4, ablates K63-linked polyubiquitination of IRAK1 and TRAF6, compromises assembly of IRAK1-TRAF6 and IRAK1-IKKγ platforms, and inhibits TAK1 activation. Deficiencies in these signaling events in LPS-tolerant cells coincided with increased expression of A20, an essential deubiquitination enzyme, and sustained A20-IRAK1 associations. Overexpression of A20 inhibited LPS-induced activation of NF-κB and ablated NF-κB reporter activation driven by ectopic expression of MyD88, IRAK1, IRAK2, TRAF6, and TAK1/TAB1, while not affecting the responses induced by IKKβ and p65. A20 shRNA knockdown abolished LPS tolerization of THP1 cells, mechanistically linking A20 and endotoxin tolerance. Thus, deficient LPS-induced activation of IRAK4 and TAK1, K63-linked polyubiquitination of IRAK1 and TRAF6, and disrupted IRAK1-TRAF6 and IRAK1-IKKγ assembly associated with increased A20 expression and A20-IRAK1 interactions are new determinants of endotoxin tolerance.
机译:内毒素耐受性通过削弱LPS引起的促炎细胞因子的产生而不会抑制抗炎或抗微生物介质的表达,从而重新编程Toll样受体4反应。在败血病患者中,Toll样受体耐受性被认为是对LPS响应时促炎性细胞因子表达降低和微生物感染发生率升高的基础。内毒素耐受性对IL-1受体相关激酶(IRAK)4,IRAK1,TNF受体相关因子(TRAF)6,TGF-β-活化激酶(TAK)1的募集,翻译后修饰和信号体装配的影响,而IκB激酶(IKK)γ在很大程度上是未知的。我们报道内毒素耐受的THP1细胞和人类单核细胞损害LPS介导的受体募集和IRAK4的激活,烧蚀IR63和IRAF1的K63连接的多泛素化,损害IRAK1-TRAF6和IRAK1-IKKγ平台的组装,并抑制TAK1的激活。 LPS耐受细胞中这些信号转导事件的缺陷与A20(一种必需的去泛素化酶)的表达增加以及持续的A20-IRAK1关联相吻合。 A20的过表达抑制了由MyD88,IRAK1,IRAK2,TRAF6和TAK1 / TAB1异位表达驱动的LPS诱导的NF-κB激活和NF-κB报道分子激活消融,但不影响IKKβ和p65诱导的应答。 A20 shRNA敲低消除了THP1细胞对LPS的耐受性,将A20和内毒素耐受性机械地联系在一起。因此,LPS诱导的IRAK4和TAK1的活化不足,IR63和TRAF6的K63连锁多聚泛素化以及与增加的A20表达和A20-IRAK1相互作用相关的IRAK1-TRAF6和IRAK1-IKKγ装配被破坏是内毒素耐受性的新决定因素。

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