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I型干扰素依赖性IFIT3信号传导对于气道中性粒细胞中的病毒清除至关重要。

Type I interferon-dependent IFIT3 signaling is critical for viral clearance in airway neutrophils.

作者信息

Margaroli Camilla, Fram Timothy, Sharma Nirmal S, Patel Siddharth B, Tipper Jennifer, Robison Sarah W, Russell Derek W, Fortmann Seth D, Banday Mudassir M, Abdalla Tarek, Saitornuang Sawanan, Madison Matthew C, Leal Sixto M, Harrod Kevin S, Erdmann Nathaniel B, Gaggar Amit

机构信息

Department of Medicine, Division of Pulmonary, Allergy & Critical Care Medicine, University of Alabama at Birmingham, Birmingham, Alabama, USA.

Program in Protease and Matrix Biology, University of Alabama at Birmingham, Birmingham, Alabama, USA.

出版信息

Res Sq. 2023 Mar 21:rs.3.rs-1812836. doi: 10.21203/rs.3.rs-1812836/v1.

Abstract

Neutrophilic inflammation characterizes several respiratory viral infections including COVID-19-related ARDS, although its contribution to disease pathogenesis remains poorly understood. Here, we identified two neutrophil subpopulations (A1 and A2) in the airway compartment of 52 severe COVID-19 subjects, where loss of the A2 subset correlated with increased viral burden and reduced 30-days survival. A2 neutrophils showcased a discrete antiviral response with an increased interferon signature. Blockade of type I interferon attenuated viral clearance in A2 neutrophils and downregulated IFIT3 and key catabolic genes, demonstrating direct antiviral neutrophil function. Knockdown of IFIT3 in A2 neutrophils led to loss of IRF3 phosphorylation with consequent reduced viral catabolism, providing the first discrete mechanism of type I interferon signaling in neutrophils. The identification of this novel neutrophil phenotype and its association with severe COVID-19 outcomes emphasizes its likely importance in other respiratory viral infections and potential for new therapeutic approaches in viral illness.

摘要

中性粒细胞炎症是包括与COVID-19相关的急性呼吸窘迫综合征在内的几种呼吸道病毒感染的特征,尽管其对疾病发病机制的作用仍知之甚少。在此,我们在52名重症COVID-19患者的气道区室中鉴定出两种中性粒细胞亚群(A1和A2),其中A2亚群的缺失与病毒载量增加和30天生存率降低相关。A2中性粒细胞表现出离散的抗病毒反应,干扰素特征增加。I型干扰素的阻断减弱了A2中性粒细胞中的病毒清除,并下调了IFIT3和关键分解代谢基因,证明了中性粒细胞直接的抗病毒功能。A2中性粒细胞中IFIT3的敲低导致IRF3磷酸化丧失,从而减少病毒分解代谢,这为中性粒细胞中I型干扰素信号传导提供了首个离散机制。这种新型中性粒细胞表型的鉴定及其与重症COVID-19结局的关联强调了其在其他呼吸道病毒感染中的可能重要性以及在病毒性疾病中采用新治疗方法的潜力。

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