首页> 美国卫生研究院文献>The Journal of Biological Chemistry >A Disease-associated Mutant of NLRC4 Shows Enhanced Interaction with SUG1 Leading to Constitutive FADD-dependent Caspase-8 Activation and Cell Death
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A Disease-associated Mutant of NLRC4 Shows Enhanced Interaction with SUG1 Leading to Constitutive FADD-dependent Caspase-8 Activation and Cell Death

机译:疾病相关的NLRC4突变体显示与SUG1的相互作用增强导致组成型FADD依赖性Caspase-8激活和细胞死亡。

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摘要

Nod-like receptor family card containing 4 (NLRC4)/Ipaf is involved in recognition of pathogen-associated molecular patterns leading to caspase-1 activation and cytokine release, which mediate protective innate immune response. Point mutations in NLRC4 cause autoinflammatory syndromes. Although all the mutations result in constitutive caspase-1 activation, their phenotypic presentations are different, implying that these mutations cause different alterations in properties of NLRC4. NLRC4 interacts with SUG1 and induces caspase-8-mediated cell death. Here, we show that one of the autoinflammatory syndrome-causing mutants of NLRC4, H443P, but not T337A and V341A, constitutively activates caspase-8 and induces apoptotic cell death in human lung epithelial cells. Compared with wild type NLRC4, the H443P mutant shows stronger interaction with SUG1 and with ubiquitinated cellular proteins. Phosphorylation of NLRC4 at Ser533 plays a crucial role in caspase-8 activation and cell death. However, H443P mutant does not require Ser533 phosphorylation for caspase-8 activation and cell death. Caspase-8 activation by NLRC4 and its H443P mutant are dependent on the adaptor protein FADD. A phosphomimicking mutant of NLRC4, S533D does not require SUG1 activity for inducing cell death. Ubiquitin-tagged NLRC4 could induce cell death and activate caspase-8 independent of Ser533 phosphorylation. Our work suggests that SUG1-mediated signaling results in enhanced ubiquitination and regulates FADD-dependent caspase-8 activation by NLRC4. We show that the autoinflammation-associated H443P mutant is altered in interaction with SUG1 and ubiquitinated proteins, triggering constitutive caspase-8-mediated cell death dependent on FADD but independent of Ser533 phosphorylation.
机译:包含4(NLRC4)/ Ipaf的Nod样受体家族卡参与了病原体相关分子模式的识别,从而导致caspase-1激活和细胞因子释放,从而介导保护性先天免疫应答。 NLRC4中的点突变导致自身炎症综合征。尽管所有突变均导致组成性caspase-1激活,但它们的表型表现却不同,这意味着这些突变会导致NLRC4的特性发生不同的改变。 NLRC4与SUG1相互作用并诱导caspase-8介导的细胞死亡。在这里,我们显示了NLRC4,H443P而不是T337A和V341A引起自发炎症综合症的突变体之一,可组成型激活caspase-8并诱导人肺上皮细胞凋亡。与野生型NLRC4相比,H443P突变体显示出与SUG1和泛素化细胞蛋白的更强相互作用。 Ser 533 处的NLRC4磷酸化在caspase-8激活和细胞死亡中起着至关重要的作用。然而,H443P突变体并不需要Ser 533 磷酸化来激活caspase-8和细胞死亡。 NLRC4及其H443P突变体对Caspase-8的激活取决于衔接子蛋白FADD。 NLRC4的磷酸化模拟突变体S533D不需要SUG1活性即可诱导细胞死亡。泛素标记的NLRC4可诱导细胞死亡并激活caspase-8,而与Ser 533 磷酸化无关。我们的工作表明,SUG1介导的信号转导导致泛素化增强,并通过NLRC4调节FADD依赖性caspase-8激活。结果表明,自发炎症相关的H443P突变体在与SUG1和泛素化蛋白的相互作用中发生了改变,从而触发了依赖于FADD但不依赖于Ser 533 磷酸化的组成型caspase-8介导的细胞死亡。

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