ISG15 Drives Immune Pathology and Respiratory Failure during Systemic Lymphocytic Choriomeningitis Virus Infection.

IF 3.6 3区 医学 Q2 IMMUNOLOGY Journal of immunology Pub Date : 2024-11-04 DOI:10.4049/jimmunol.2400042
Namir Shaabani, Jaroslav Zak, Jennifer L Johnson, Zhe Huang, Nhan Nguyen, Daniel C Lazar, Vincent F Vartabedian, Nadine Honke, Joseph G Jardine, Jordan Woehl, Marco Prinz, Klaus-Peter Knobeloch, Kei-Ichiro Arimoto, Dong-Er Zhang, Sergio D Catz, John R Teijaro
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Abstract

ISG15, an IFN-stimulated gene, plays a crucial role in modulating immune responses during viral infections. Its upregulation is part of the host's defense mechanism against viruses, contributing to the antiviral state of cells. However, altered ISG15 expression can also lead to immune dysregulation and pathological outcomes, particularly during persistent viral infections. Understanding the balance of ISG15 in promoting antiviral immunity while avoiding immune-mediated pathology is essential for developing targeted therapeutic interventions against viral diseases. In this article, using Usp18-deficient, USP18 enzymatic-inactive and Isg15-deficient mouse models, we report that a lack of USP18 enzymatic function during persistent viral infection leads to severe immune pathology characterized by hematological disruptions described by reductions in platelets, total WBCs, and lymphocyte counts; pulmonary cytokine amplification; lung vascular leakage; and death. The lack of Usp18 in myeloid cells mimicked the pathological manifestations observed in Usp18-/- mice and required Isg15. Mechanistically, interrupting the enzymes that conjugate/deconjugate ISG15, using Uba7-/- or Usp18C61A mice, respectively, led to accumulation of ISG15 that was accompanied by inflammatory neutrophil accumulation, lung pathology, and death similar to that observed in Usp18-deficient mice. Moreover, myeloid cell depletion reversed pathological manifestations, morbidity, and mortality in Usp18C61A mice. Our results suggest that dysregulated ISG15 production and signaling during persistent lymphocytic choriomeningitis virus infection can produce lethal immune pathology and could serve as a therapeutic target during severe viral infections with pulmonary pathological manifestations.

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ISG15驱动全身淋巴细胞性脉络膜炎病毒感染期间的免疫病理学和呼吸衰竭
ISG15是一种受IFN刺激的基因,在病毒感染期间调节免疫反应方面起着至关重要的作用。它的上调是宿主抵御病毒的防御机制的一部分,有助于细胞的抗病毒状态。然而,ISG15 表达的改变也会导致免疫失调和病理结果,尤其是在持续病毒感染期间。了解 ISG15 在促进抗病毒免疫的同时避免免疫介导的病理变化方面的平衡,对于开发针对病毒性疾病的靶向治疗干预措施至关重要。在这篇文章中,我们利用 Usp18 缺陷、USP18 酶活性缺失和 Isg15 缺陷小鼠模型,报告了在持续病毒感染期间 USP18 酶功能缺失会导致严重的免疫病理学,其特征是血液学紊乱,表现为血小板、白细胞总数和淋巴细胞计数减少;肺细胞因子扩增;肺血管渗漏;以及死亡。髓系细胞中缺乏 Usp18 会模拟在 Usp18-/- 小鼠中观察到的病理表现,并且需要 Isg15。从机理上讲,使用 Uba7-/- 或 Usp18C61A 小鼠分别干扰结合/脱结合 ISG15 的酶,会导致 ISG15 的积累,伴随着炎症性中性粒细胞积累、肺部病变和死亡,这与在 Usp18 缺乏的小鼠中观察到的情况相似。此外,髓系细胞耗竭可逆转 Usp18C61A 小鼠的病理表现、发病率和死亡率。我们的研究结果表明,在持续性淋巴细胞性脉络膜炎病毒感染期间,ISG15的产生和信号传导失调会产生致命的免疫病理变化,可以作为严重病毒感染肺部病理表现时的治疗靶点。
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来源期刊
Journal of immunology
Journal of immunology 医学-免疫学
CiteScore
8.20
自引率
2.30%
发文量
495
审稿时长
1 months
期刊介绍: The JI publishes novel, peer-reviewed findings in all areas of experimental immunology, including innate and adaptive immunity, inflammation, host defense, clinical immunology, autoimmunity and more. Special sections include Cutting Edge articles, Brief Reviews and Pillars of Immunology. The JI is published by The American Association of Immunologists (AAI)
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