Sharma Atul, Simonson Tanner J, Jondle Christopher N, Mishra Bibhuti B, Sharma Jyotika
Department of Biomedical Sciences, University of North Dakota School of Medicine and Health Sciences, Grand Forks.
J Infect Dis. 2017 Apr 1;215(7):1040-1048. doi: 10.1093/infdis/jix072.
Neutrophil extracellular traps (NETs) constitute antimicrobial function of neutrophils but have also been linked to perpetuation of inflammation. Despite this evident physiological relevance, mechanistic understanding of NET formation is poor. In this study, we examined the mechanism by which Mincle, a C-type lectin receptor, regulates NET formation.
NET formation, reactive oxygen species, autophagy activation and intracellular signaling pathways were analyzed in Mincle-sufficient and -deficient neutrophils stimulated in vitro with various stimuli and in vivo during Klebsiella infection.
We found that Mincle mediates NET formation in response to several activation stimuli in vitro and in vivo during pneumoseptic infection with Klebsiella pneumoniae, indicating its regulatory role in NET formation. Mechanistically, we show that attenuated NET formation in Mincle-/- neutrophils correlates with an impaired autophagy activation in vitro and in vivo, whereas reactive oxygen species (ROS) formation in these neutrophils remained intact. The requirement of autophagy in Mincle-mediated NET formation was further supported by exogenous treatment with autophagy inducer tamoxifen, which rescued the NET formation defect in Mincle-/- neutrophils.
Our findings identify a previously unrecognized role of Mincle as a regulator of autophagy, which mediates NET formation without affecting ROS generation. Our study addresses a major challenge in the field by positing this pathway to be targeted for modulation of NETs while preserving ROS production, an important innate immune defense.
中性粒细胞胞外诱捕网(NETs)构成中性粒细胞的抗菌功能,但也与炎症的持续存在有关。尽管具有这种明显的生理相关性,但对NET形成的机制了解甚少。在本研究中,我们研究了C型凝集素受体Mincle调节NET形成的机制。
在用各种刺激物体外刺激以及在肺炎克雷伯菌感染期间体内刺激的Mincle充足和缺陷的中性粒细胞中,分析NET形成、活性氧、自噬激活和细胞内信号通路。
我们发现,在肺炎克雷伯菌败血性感染期间,Mincle在体外和体内介导对几种激活刺激的NET形成,表明其在NET形成中的调节作用。从机制上讲,我们表明Mincle-/-中性粒细胞中NET形成减弱与体外和体内自噬激活受损相关,而这些中性粒细胞中的活性氧(ROS)形成保持完整。自噬诱导剂他莫昔芬的外源性处理进一步支持了自噬在Mincle介导的NET形成中的必要性,该处理挽救了Mincle-/-中性粒细胞中的NET形成缺陷。
我们的研究结果确定了Mincle作为自噬调节因子的先前未被认识的作用,其介导NET形成而不影响ROS生成。我们的研究通过提出该途径可作为调节NETs的靶点,同时保留ROS产生(一种重要的固有免疫防御),解决了该领域的一个重大挑战。