Department of Biochemistry and Molecular Biology, Wright State University School of Medicine, Dayton, OH, USA.
Center for Experimental Therapeutics and Reperfusion Injury, Department of Anesthesia, Perioperative and Pain Medicine, Brigham and Women's Hospital and Harvard Medical School, Boston, MA, USA.
FASEB J. 2020 Dec;34(12):15888-15906. doi: 10.1096/fj.201903025RR. Epub 2020 Oct 12.
A successful acute inflammatory response results in the elimination of infectious agents by neutrophils and monocytes, followed by resolution and repair through tissue-resident and recruited macrophages. Resolvins (D-series and E-series) are pro-resolving lipid mediators involved in resolution and tissue repair, whose intracellular signaling remains of interest. Here, we report that D-series resolvins (RvD1- RvD5) activate phospholipase D (PLD), a ubiquitously expressed membrane lipase enzyme activity in modulating phagocyte functions. The mechanism for PLD-mediated actions of Resolvin-D5 (RvD5) in polarizing macrophages (M1-like toward M2-like) was found to be two-pronged: (a) RvD5 inhibits post-transcriptional modifications, by miRs and 3'exonucleases that process PLD2 mRNA, thus increasing PLD2 expression and activity; and (b) RvD5 enhances PLD2-S6Kinase signaling required for membrane expansion and efferocytosis. In an in vivo model of second organ reflow injury, we found that RvD5 did not reduce lung neutrophil myeloperoxidase levels in PLD2 mice compared to WT and PLD1 mice, confirming a novel role of PLD2 as the isoform in RvD5-mediated resolution processes. These results demonstrate that RvD5-PLD2 are attractive targets for therapeutic interventions in vascular inflammation such as ischemia-reperfusion injury and cardiovascular diseases.
急性炎症反应的成功结果是中性粒细胞和单核细胞消除感染因子,随后通过组织驻留和募集的巨噬细胞进行解决和修复。消退素(D 系列和 E 系列)是参与解决和组织修复的促消退脂质介质,其细胞内信号仍然是研究的热点。在这里,我们报告 D 系列消退素(RvD1-RvD5)激活磷脂酶 D(PLD),PLD 是一种广泛表达的膜脂酶活性,可调节吞噬细胞的功能。发现 Resolvin-D5(RvD5)在极化巨噬细胞(从 M1 样向 M2 样)中发挥 PLD 介导作用的机制有两方面:(a)RvD5 抑制 miR 和 3'外切核酸酶对 PLD2 mRNA 的转录后修饰,从而增加 PLD2 的表达和活性;(b)RvD5 增强了 PLD2-S6 激酶信号,这是膜扩张和胞吐作用所必需的。在二次器官再灌注损伤的体内模型中,我们发现与 WT 和 PLD1 小鼠相比,RvD5 并没有降低 PLD2 小鼠肺中性粒细胞髓过氧化物酶水平,这证实了 PLD2 作为 RvD5 介导的解决过程中的同工酶的新作用。这些结果表明,RvD5-PLD2 是治疗血管炎症(如缺血再灌注损伤和心血管疾病)的有吸引力的靶点。