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特定结构域和切割作用决定了鱼类心肌炎病毒p33蛋白的多种功能。

Defined domains and cleavage determine the diverse functions of piscine myocarditis virus p33 protein.

作者信息

Amono Racheal, Fredlund Snøa A T N, Chesnais Morgane, Thiede Bernd, Markussen Turhan, Evensen Øystein, Mikalsen Aase B

机构信息

Department of Paraclinical Sciences, Faculty of Veterinary Medicine, Norwegian University of Life Sciences, Ås, Norway.

Department of Biosciences, University of Oslo, Oslo, Norway.

出版信息

Front Microbiol. 2025 Sep 1;16:1633241. doi: 10.3389/fmicb.2025.1633241. eCollection 2025.

Abstract

Piscine myocarditis virus (PMCV) causes chronic, necrotizing myocarditis in Atlantic salmon. Originally, PMCV was identified based on its genetic homology and genomic organization, indicating a relationship to viruses of the order, specifically the former family, whose members predominantly infect fungi or protozoans and lack an extracellular life cycle stage. However, PMCV was the first virus of this order found to infect a vertebrate host. Since then, other piscine viruses and viruses infecting terrestrial and aquatic arthropods have been described and recently assigned to new virus families within the order. PMCV is now classified in . All these viruses infecting multicellular hosts encode proteins that are believed to be involved in extracellular transmission. In PMCV, this relates to a protein of size 33.4 kDa (p33) encoded by a unique third open reading frame. To investigate its characteristics and role, we expressed various recombinant variants of p33 in cultured cells. Our results demonstrate that p33 expression induces a cytotoxic phenotype in transfected cells. The full-length protein undergoes processing into smaller peptide variants. Previous analysis predicted an N-terminal chemokine-like domain, and our present results show that this domain is secreted as peptides capable of inducing cytotoxicity when expressed alone. The C-terminal region includes sequence characteristics of a small hydrophobic domain, which appears crucial for the correct processing of the full-length protein into N- and C-terminal peptides and directing the C-terminal peptides to a high membrane concentration. Investigations into p33 function could elucidate how PMCV achieves extracellular transmission, a mechanism that may be conserved among viruses of . The findings in this study provide evidence that p33 has structural and functional characteristics of a protein adapted to facilitate host cell membrane interaction and cell lysis, potentially enabling extracellular viral release. These insights may provide evolutionary evidence that pistolviruses have acquired the uncommon trait of viral transmission within the order , broadening our understanding of virus-host adaptation in vertebrates.

摘要

鲤心肌病毒(PMCV)可导致大西洋鲑鱼患慢性坏死性心肌炎。最初,PMCV是根据其基因同源性和基因组结构来鉴定的,这表明它与该目病毒存在关联,特别是与前一个科的病毒有关,该科成员主要感染真菌或原生动物,且缺乏细胞外生命周期阶段。然而,PMCV是该目中首个被发现感染脊椎动物宿主的病毒。从那时起,其他感染鱼类的病毒以及感染陆生和水生节肢动物的病毒也被描述出来,并且最近被归入该目内的新病毒科。PMCV现在被归类于……所有这些感染多细胞宿主的病毒都编码被认为参与细胞外传播的蛋白质。在PMCV中,这涉及到由一个独特的第三个开放阅读框编码的大小为33.4 kDa的蛋白质(p33)。为了研究其特征和作用,我们在培养细胞中表达了p33的各种重组变体。我们的结果表明,p33的表达在转染细胞中诱导出细胞毒性表型。全长蛋白会被加工成更小的肽变体。先前的分析预测其N端有一个趋化因子样结构域,我们目前的结果表明,该结构域以肽的形式分泌,单独表达时能够诱导细胞毒性。C端区域包括一个小疏水结构域的序列特征,这似乎对于将全长蛋白正确加工成N端和C端肽以及将C端肽导向高膜浓度至关重要。对p33功能的研究可以阐明PMCV如何实现细胞外传播,这一机制可能在该目病毒中是保守的。本研究中的发现提供了证据,表明p33具有一种适应于促进宿主细胞膜相互作用和细胞裂解的蛋白质的结构和功能特征,这可能使病毒能够在细胞外释放。这些见解可能提供进化证据,表明手枪病毒在该目中获得了病毒传播这一不常见的特性,拓宽了我们对脊椎动物中病毒-宿主适应性的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98bf/12433951/fcd0975da34b/fmicb-16-1633241-g001.jpg

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