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A Proteomics-Based Assessment of Inflammation Signatures in Endotoxemia

机译:内毒素肿瘤症炎症签发的基于蛋白质组学的评估

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摘要

We have previously shown that multimers of plasma pentraxin-3 (PTX3) were predictive of survival in patients with sepsis. To characterize the release kinetics and cellular source of plasma protein changes in sepsis, serial samples were obtained from healthy volunteers (n = 10; three time points) injected with low-dose endotoxin (lipopolysaccharide [LPS]) and analyzed using data-independent acquisition MS. The human plasma proteome response was compared with an LPS-induced endotoxemia model in mice. Proteomic analysis of human plasma revealed a rapid neutrophil degranulation signature, followed by a rise in acute phase proteins. Changes in circulating PTX3 correlated with increases in neutrophil-derived proteins following LPS injection. Time course analysis of the plasma proteome in mice showed a time-dependent increase in multimeric PTX3, alongside increases in neutrophil-derived myeloperoxidase (MPO) upon LPS treatment. The mechanisms of oxidation-induced multimerization of PTX3 were explored in two genetic mouse models: MPO global knock-out (KO) mice and LysM Cre Nox2 KO mice, in which NADPH oxidase 2 (Nox2) is only deficient in myeloid cells. Nox2 is the enzyme responsible for the oxidative burst in neutrophils. Increases in plasma multimeric PTX3 were not significantly different between wildtype and MPO or LysM Cre Nox2 KO mice. Thus, PTX3 may already be stored and released in a multimeric form. Through in vivo neutrophil depletion and multiplexed vascular proteomics, PTX3 multimer deposition within the aorta was confirmed to be neutrophil dependent. Proteomic analysis of aortas from LPS-injected mice returned PTX3 as the most upregulated protein, where multimeric PTX3 was deposited as early as 2 h post-LPS along with other neutrophil-derived proteins. In conclusion, the rise in multimeric PTX3 upon LPS injection correlates with neutrophil-related protein changes in plasma and aortas. MPO and myeloid Nox2 are not required for the multimerization of PTX3; instead, neutrophil extravasation is responsible for the LPS-induced deposition of multimeric PTX3 in the aorta.
机译:我们之前已经表明,血浆五曲素-3(PTX3)的多聚体是败血症患者的存活。为了表征败血症释放动力学和血浆蛋白质的细胞来源,从健康的志愿者(n = 10;三个时间点)获得序列样品,并使用低剂量内毒素(Lipopolysachide [LPS]),并使用独立于数据的采集分析小姐。将人血浆蛋白质组反应与小鼠中的LPS诱导的内毒血症模型进行比较。人血浆的蛋白质组学分析揭示了一种快速的中性粒细胞脱粒签名,其次是急性期蛋白的升高。循环PTX3的变化与LPS注射后中性粒细胞衍生蛋白的增加相关。小鼠血浆蛋白质组的时间过程分析表明,多聚体PTX3的时间依赖性增加,中性粒细胞衍生的髓过氧化物酶(MPO)随着LPS处理而增加。在两个遗传小鼠模型中探讨了PTX3的氧化诱导的多聚化的机制:MPO全球敲除(KO)小鼠和Lysm Crex2 KO小鼠,其中NADPH氧化酶2(NOX2)仅缺乏骨髓细胞。 NOx2是负责中性粒细胞氧化爆发的酶。野生型和MPO或LYSM CRE NOX2 KO小鼠之间的血浆多聚体PTX3中的增加没有显着差异。因此,PTX3可能已经以多聚体形式存储和释放。通过体内中性粒细胞耗尽和复用血管蛋白质组学,确认主动脉内的PTX3多聚体沉积是依赖性的中性粒细胞。从LPS注入的小鼠的主动脉蛋白质组学分析返回PTX3作为最上调的蛋白质,其中多聚体PTX3早在LPS后沉积,与其他中性粒细胞衍生的蛋白质一起沉积。总之,多聚体PTX3对LPS注射的升高与血浆和主动脉中的中性粒细胞相关蛋白质变化相关。 PTX3的多聚化不需要MPO和髓NOx2;相反,中性粒细胞外渗者负责在主动脉中的LPS诱导的多聚体PTX3沉积。

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