线粒体网络形态的改变影响埃可病毒感染期间L929小鼠成纤维细胞中MAVS依赖的免疫反应。

Modifications of Mitochondrial Network Morphology Affect the MAVS-Dependent Immune Response in L929 Murine Fibroblasts during Ectromelia Virus Infection.

作者信息

Gregorczyk-Zboroch Karolina, Szulc-Dąbrowska Lidia, Pruchniak Pola, Gieryńska Małgorzata, Mielcarska Matylda Barbara, Biernacka Zuzanna, Wyżewski Zbigniew, Lasocka Iwona, Świtlik Weronika, Szepietowska Alicja, Kukier Patrycja, Kwiecień-Dębska Aleksandra, Kłęk Jakub

机构信息

Division of Immunology, Department of Preclinical Sciences, Faculty of Veterinary Medicine, Warsaw University of Life Sciences, 02-786 Warsaw, Poland.

Institute of Biological Sciences, Cardinal Stefan Wyszyński University in Warsaw, 01-815 Warsaw, Poland.

出版信息

Pathogens. 2024 Aug 23;13(9):717. doi: 10.3390/pathogens13090717.

Abstract

Since smallpox vaccination was discontinued in 1980, there has been a resurgence of poxvirus infections, particularly the monkeypox virus. Without a global recommendation to use the smallpox vaccine, the population is not immune, posing a severe threat to public health. Given these circumstances, it is crucial to understand the relationship between poxviruses and their hosts. Therefore, this study focuses on the ectromelia virus, the causative agent of mousepox, which serves as an excellent model for studying poxvirus pathogenesis. Additionally, we investigated the role of mitochondria in innate antiviral immunity during ECTV infection, focusing specifically on mitochondrial antiviral signaling protein. The study used a Moscow strain of ECTV and L929 mouse fibroblasts. Cells were treated with ECTV and chemical modulators of mitochondrial network: Mdivi-1 and CCCP. Our investigation revealed that an elongated mitochondrial network attenuates the suppression of MAVS-dependent immunity by ECTV and reduces ECTV replication in L929 fibroblasts compared to cells with an unaltered mitochondrial network. Conversely, a fragmented mitochondrial network reduces the number of progeny virions while increasing the inhibition of the virus-induced immune response during infection. In conclusion, our study showed that modifications of mitochondrial network morphology alter MAVS-dependent immunity in ECTV-infected mouse L929 fibroblasts.

摘要

自1980年停止天花疫苗接种以来,痘病毒感染有所复发,尤其是猴痘病毒。由于缺乏全球范围内使用天花疫苗的建议,人群没有免疫力,这对公共卫生构成了严重威胁。鉴于这些情况,了解痘病毒与其宿主之间的关系至关重要。因此,本研究聚焦于鼠痘的病原体——埃可病毒,它是研究痘病毒发病机制的优秀模型。此外,我们研究了线粒体在埃可病毒感染期间的先天性抗病毒免疫中的作用,特别关注线粒体抗病毒信号蛋白。该研究使用了埃可病毒的莫斯科毒株和L929小鼠成纤维细胞。细胞用埃可病毒和线粒体网络的化学调节剂:Mdivi-1和CCCP进行处理。我们的研究表明,与线粒体网络未改变的细胞相比,延长的线粒体网络可减弱埃可病毒对MAVS依赖性免疫的抑制,并减少L929成纤维细胞中埃可病毒的复制。相反,碎片化的线粒体网络会减少子代病毒粒子的数量,同时增加感染期间对病毒诱导的免疫反应的抑制。总之,我们的研究表明,线粒体网络形态的改变会改变埃可病毒感染的小鼠L929成纤维细胞中MAVS依赖性免疫。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/490b/11434706/3cd13ed76ae8/pathogens-13-00717-g001.jpg

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