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NOD2-mediated Suppression of CD55 on Neutrophils Enhances C5a Generation During Polymicrobial Sepsis

机译:NOD2介导的嗜中性粒细胞CD55抑制增强了细菌性败血症中C5a的产生。

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摘要

Nucleotide-binding oligomerization domain (NOD) 2 is a cytosolic protein that plays a defensive role in bacterial infection by sensing peptidoglycans. C5a, which has harmful effects in sepsis, interacts with innate proteins. However, whether NOD2 regulates C5a generation during sepsis remains to be determined. To address this issue, cecal ligation & puncture (CLP)-induced sepsis was compared in wild type and Nod2−/− mice. Nod2−/− mice showed lower levels of C5a, IL-10, and IL-1β in serum and peritoneum, but higher survival rate during CLP-induced sepsis compared to wild type mice. Injection of recombinant C5a decreased survival rates of Nod2−/− mice rate during sepsis, whereas it did not alter those in wild type mice. These findings suggest a novel provocative role for NOD2 in sepsis, in contrast to its protective role during bacterial infection. Furthermore, we found that NOD2-mediated IL-10 production by neutrophils enhanced C5a generation by suppressing CD55 expression on neutrophils in IL-1β-dependent and/or IL-1β-independent manners, thereby aggravating CLP-induced sepsis. SB203580, a receptor-interacting protein 2 (RIP2) inhibitor downstream of NOD2, reduced C5a generation by enhancing CD55 expression on neutrophils, resulting in attenuation of polymicrobial sepsis. Therefore, we propose a novel NOD2-mediated complement cascade regulatory pathway in sepsis, which may be a useful therapeutic target.
机译:核苷酸结合寡聚结构域(NOD)2是一种胞质蛋白,通过感知肽聚糖在细菌感染中起防御作用。在败血症中具有有害作用的C5a与先天蛋白相互作用。但是,NOD2是否在败血症期间调节C5a的产生尚待确定。为了解决此问题,在野生型和Nod2 -// 小鼠中比较了盲肠结扎穿刺(CLP)诱导的败血症。与野生型小鼠相比,Nod2 -/-小鼠的血清和腹膜中的C5a,IL-10和IL-1β含量较低,但在CLP诱导的脓毒症中存活率较高。重组C5a的注射降低败血症期间Nod2 -/-小鼠的存活率,而没有改变野生型小鼠的存活率。这些发现表明,NOD2在脓毒症中具有新的刺激作用,与其在细菌感染中的保护作用相反。此外,我们发现嗜中性粒细胞通过NOD2介导的IL-10产生通过以IL-1β依赖性和/或IL-1β依赖性方式抑制嗜中性粒细胞CD55的表达来增强C5a的产生,从而加重了CLP诱导的败血症。 SB203580,一种在NOD2下游的受体相互作用蛋白2(RIP2)抑制剂,通过增强中性粒细胞上CD55的表达来减少C5a的产生,从而减轻了败血症的发生。因此,我们提出了一种新型的NOD2介导的败血症补体级联调节途径,可能是有用的治疗靶标。

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