Peroxiredoxin-1 is an H2O2 safe-guard antioxidant and signalling enzyme in M1 macrophages

Daria Ezeriņa , Trung Nghia Vo , Ting Luo , Yvon Elkrim , Anna Escoda Suarez , Gaëtan Herinckx , Didier Vertommen , Damya Laoui , Jo A. Van Ginderachter , Joris Messens
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Abstract

Macrophages are characterised by their high plasticity and ability to adapt their phenotype and functionality in response to environmental cues, resulting in a spectrum of activation states the two extremes of which are M1 and M2. Reactive oxygen species, such as hydrogen peroxide, are among the cues that impact macrophage polarisation. Moreover, high levels of hydrogen peroxide play a role in the phagocytic response executed by M1 macrophages. Therefore, macrophages must balance the need to shield themselves from the harmful effects of hydrogen peroxide bursts with the ability to interpret hydrogen peroxide signals from the surroundings and initiate a cellular response. Peroxiredoxins (PRDX) are proteins capable of performing both roles. Specifically, PRDX1 and PRDX5 have been demonstrated to safeguard macrophages against reactive oxygen species while also impacting their polarisation status. Previously conducted studies did not differentiate between the polarisation state of macrophages or investigate the signalling events triggered by PRDXs. In this study, we utilised bone marrow-derived murine macrophages polarised to the M1 and M2 states. Our findings revealed that the expression of PRDX1 was significantly higher in M1 macrophages than in M2 and unpolarised macrophages. Moreover, we present evidence that in M1 macrophages, PRDX1 interacts with ASK1, its established interaction partner, and also binds to other proteins that regulate the cellular antioxidant response. Interestingly, we found that pharmacological elevation of hydrogen peroxide levels leads to an increase in PRDX1 expression on the mRNA level, but not in the highly related PRDX2 expression. Taken together, our findings suggest that PRDX1 plays a critical role in macrophage antioxidant defence and redox signalling, and provide scope for exploring redox-signalling proteins as highly sought-after candidates for macrophage repolarisation.

过氧化氧还蛋白-1是M1巨噬细胞中的H2O2安全保护抗氧化剂和信号转导酶
巨噬细胞的特点是其高可塑性和适应环境线索的表型和功能的能力,导致一系列激活状态,其中两个极端是M1和M2。活性氧,如过氧化氢,是影响巨噬细胞极化的线索之一。此外,高水平的过氧化氢在M1巨噬细胞执行的吞噬反应中发挥作用。因此,巨噬细胞必须平衡保护自己免受过氧化氢爆发有害影响的需要与解释周围过氧化氢信号并启动细胞反应的能力。过氧化物酶体脱氧素(PRDX)是能够同时发挥这两种作用的蛋白质。具体而言,PRDX1和PRDX5已被证明可以保护巨噬细胞免受活性氧的侵害,同时也会影响它们的极化状态。先前进行的研究没有区分巨噬细胞的极化状态,也没有研究PRDXs触发的信号事件。在这项研究中,我们使用了极化到M1和M2状态的骨髓衍生的小鼠巨噬细胞。我们的研究结果表明,PRDX1在M1巨噬细胞中的表达显著高于M2和未极化巨噬细胞。此外,我们提供的证据表明,在M1巨噬细胞中,PRDX1与ASK1(其已建立的相互作用伙伴)相互作用,并与其他调节细胞抗氧化反应的蛋白质结合。有趣的是,我们发现过氧化氢水平的药理学升高导致mRNA水平上PRDX1表达的增加,但不导致高度相关的PRDX2表达的增加。总之,我们的研究结果表明,PRDX1在巨噬细胞抗氧化防御和氧化还原信号传导中发挥着关键作用,并为探索氧化还原信号蛋白作为巨噬细胞再极化的热门候选者提供了空间。
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CiteScore
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