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Calprotectin (S100A8/S100A9) and Myeloperoxidase: Co-Regulators of Formation of Reactive Oxygen Species

机译:钙卫蛋白(S100A8 / S100A9)和髓过氧化物酶:活性氧形成的共同调节因子。

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摘要

Inflammatory mediators trigger polymorphonuclear neutrophils (PMN) to produce reactive oxygen species (ROS: O2-, H2O2, ∙OH). Mediated by myeloperoxidase in PMN, HOCl is formed, detectable in a chemiluminescence (CL) assay. We have shown that the abundant cytosolic PMN protein calprotectin (S100A8/A9) similarly elicits CL in response to H2O2 in a cell-free system. Myeloperoxidase and calprotectin worked synergistically. Calprotectin-induced CL increased, whereas myeloperoxidase-triggered CL decreased with pH > 7.5. Myeloperoxidase needed NaCl for CL, calprotectin did not. 4-hydroxybenzoic acid, binding ∙OH, almost abrogated calprotectin CL, but moderately increased myeloperoxidase activity. The combination of native calprotectin, or recombinant S100A8/A9 proteins, with NaOCl markedly enhanced CL. NaOCl may be the synergistic link between myeloperoxidase and calprotectin. Surprisingly- and unexplained- at higher concentration of S100A9 the stimulation vanished, suggesting a switch from pro-oxidant to anti-oxidant function. We propose that the ∙OH is predominant in ROS production by calprotectin, a function not described before.
机译:炎症介质触发多形核中性粒细胞(PMN)产生活性氧(ROS:O2 -,H2O2,∙OH)。 PMN由髓过氧化物酶介导,形成HOCl,可在化学发光(CL)分析中检测到。我们已经表明,丰富的胞质PMN蛋白钙卫蛋白(S100A8 / A9)类似地在无细胞系统中响应H2O2引发CL。髓过氧化物酶和钙卫蛋白协同作用。钙卫蛋白诱导的CL增加,而髓过氧化物酶触发的CL随pH> 7.5降低。髓过氧化物酶需要氯化钠用于氯化钠,而钙卫蛋白则不需要。 4-羟基苯甲酸,与∙OH结合,几乎消除了钙卫蛋白CL,但适度增加了髓过氧化物酶的活性。天然钙卫蛋白或重组S100A8 / A9蛋白与NaOCl的结合显着增强了CL。 NaOCl可能是髓过氧化物酶和钙卫蛋白之间的协同连接。令人惊讶且无法解释的是,在较高的S100A9浓度下,刺激消失了,表明从前氧化剂功能转变为抗氧化剂功能。我们建议∙OH在钙卫蛋白的ROS产生中占主导地位,此功能以前没有描述。

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