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抗病毒Mx蛋白起源古老,在真核生物中广泛分布。

Antiviral Mx proteins have an ancient origin and widespread distribution among eukaryotes.

作者信息

Langley Caroline A, Dietzen Peter A, Emerman Michael, Tenthorey Jeannette L, Malik Harmit S

机构信息

Molecular and Cellular Biology Graduate Program, University of Washington, Seattle, WA.

Division of Human Biology, Fred Hutchinson Cancer Center, Seattle, WA.

出版信息

bioRxiv. 2024 Aug 17:2024.08.06.606855. doi: 10.1101/2024.08.06.606855.

Abstract

First identified in mammals, Mx proteins are potent antivirals against a broad swathe of viruses. Mx proteins arose within the Dynamin superfamily of proteins (DSP), mediating critical cellular processes, such as endocytosis and mitochondrial, plastid, and peroxisomal dynamics. And yet, the evolutionary origins of Mx proteins are poorly understood. Using a series of phylogenomic analyses with stepwise increments in taxonomic coverage, we show that Mx proteins predate the interferon signaling system in vertebrates. Our analyses find an ancient monophyletic DSP lineage in eukaryotes that groups vertebrate and invertebrate Mx proteins with previously undescribed fungal MxF proteins, the relatively uncharacterized plant and algal Dynamin 4A/4C proteins, and representatives from several early-branching eukaryotic lineages. Thus, Mx-like proteins date back close to the origin of Eukarya. Our phylogenetic analyses also reveal that host-encoded and NCLDV (nucleocytoplasmic large DNA viruses)-encoded DSPs are interspersed in four distinct DSP lineages, indicating recurrent viral theft of host DSPs. Our analyses thus reveal an ancient history of viral and antiviral functions encoded by the Dynamin superfamily in eukaryotes.

摘要

Mx蛋白最早在哺乳动物中被发现,是一类对多种病毒具有强大抗病毒作用的蛋白。Mx蛋白起源于发动蛋白超家族(DSP),该家族介导诸如胞吞作用以及线粒体、质体和过氧化物酶体动态变化等关键细胞过程。然而,人们对Mx蛋白的进化起源却知之甚少。通过一系列分类学覆盖范围逐步增加的系统基因组分析,我们发现Mx蛋白早于脊椎动物中的干扰素信号系统出现。我们的分析在真核生物中发现了一个古老的单系DSP谱系,该谱系将脊椎动物和无脊椎动物的Mx蛋白与之前未描述的真菌MxF蛋白、相对未被充分研究的植物和藻类发动蛋白4A/4C蛋白以及几个早期分支真核生物谱系的代表归为一类。因此,类Mx蛋白的起源可追溯到接近真核生物起源的时期。我们的系统发育分析还表明,宿主编码的DSP和核质大DNA病毒(NCLDV)编码的DSP散布在四个不同的DSP谱系中,这表明病毒反复窃取宿主的DSP。因此,我们的分析揭示了真核生物中发动蛋白超家族编码的病毒和抗病毒功能的古老历史。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56cb/11331291/cf27ff186eb1/nihpp-2024.08.06.606855v2-f0001.jpg

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