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从传染性脾肾坏死病毒中分离到的 VP08R 是病毒模拟基底膜的一个新成分。

VP08R from infectious spleen and kidney necrosis virus is a novel component of the virus-mock basement membrane.

机构信息

MOE Key Laboratory of Aquatic Product Safety/State Key Laboratory for Biocontrol, School of Life Sciences, Sun Yat-sen University, Guangzhou, People's Republic of China.

出版信息

J Virol. 2014 May;88(10):5491-501. doi: 10.1128/JVI.03776-13. Epub 2014 Mar 5.

Abstract

UNLABELLED

Infectious spleen and kidney necrosis virus (ISKNV), the type species of the genus Megalocytivirus, family Iridoviridae, brings great harm to fish farming. In infected tissues, ISKNV infection is characterized by a unique phenomenon, in that the infected cells are attached by lymphatic endothelial cells (LECs), which are speculated to wall off the infected cells from host immune attack. A viral membrane protein, VP23R, binds and recruits the host nidogen-1 protein to construct a basement membrane (BM)-like structure, termed virus-mock basement membrane (VMBM), on the surface of infected cells to provide attaching sites for LECs. VMBMs do not contain collagen IV protein, which is essential for maintenance of BM integrity and functions. In this study, we identified the VP08R protein encoded by ISKNV. VP08R was predicted to be a secreted protein with a signal peptide but without a transmembrane domain. However, immunofluorescence assays demonstrated that VP08R is located on the plasma membrane of infected cells and shows an expression profile similar to that of VP23R. Coimmunoprecipitation showed that VP08R interacts with both VP23R and nidogen-1, indicating that VP08R is a component of VMBM and is present on the cell membrane by binding to VP23R. Through formation of intermolecular disulfide bonds, VP08R molecules self-organized into a multimer, which may play a role in the maintenance of VMBM integrity and stability. Moreover, the VP08R multimer was easily degraded when the ISKNV-infected cells were lysed, which may be a mechanism for VMBM disassembly when necessary to free LECs and release the mature virions.

IMPORTANCE

Infectious spleen and kidney necrosis virus (ISKNV; genus Megalocytivirus, family Iridovirus) is most harmful to cultured fishes. In tissues, the ISKNV-infected cells are attached by lymphatic endothelial cells (LECs), which are speculated to segregate the host immune system. A viral membrane protein, VP23R, binds and recruits the host nidogen-1 protein to construct virus-mock basement membranes (VMBMs) on the surface of infected cells to provide attaching sites for LECs. Although VMBMs lack the collagen IV network, which is an essential structural part of true BMs, VMBMs still show an intact structure. An ISKNV-encoded VP08R protein can self-assemble into a multimer and bind both VP23R and nidogen-1 to maintain the integrity and stability of VMBMs. On the basis of these facts, we redrew the putative schematic illustration of the VMBM structure. Our study suggests that the virus adopts a strategy to remodel the cellular matrix and may provide an important reference to elucidate BM functions and the mechanisms of lymphangiogenesis.

摘要

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传染性脾肾坏死病毒(ISKNV)是 Megalocytivirus 属的代表种,属于虹彩病毒科。它给鱼类养殖带来了极大的危害。在受感染的组织中,ISKNV 感染的特征是一种独特的现象,即受感染的细胞被淋巴内皮细胞(LEC)附着,这被推测是将受感染的细胞与宿主免疫攻击隔离开来。一种病毒膜蛋白 VP23R 结合并募集宿主的整联蛋白-1 蛋白,在感染细胞的表面构建基底膜(BM)样结构,称为病毒模拟基底膜(VMBM),为 LECs 提供附着位点。VMBM 不含有胶原 IV 蛋白,而胶原 IV 蛋白对于维持 BM 的完整性和功能至关重要。在本研究中,我们鉴定了 ISKNV 编码的 VP08R 蛋白。VP08R 被预测为一种具有信号肽但没有跨膜结构域的分泌蛋白。然而,免疫荧光分析表明,VP08R 位于感染细胞的质膜上,其表达谱与 VP23R 相似。共免疫沉淀表明,VP08R 与 VP23R 和整联蛋白-1 相互作用,表明 VP08R 是 VMBM 的组成部分,通过与 VP23R 结合存在于质膜上。通过形成分子间二硫键,VP08R 分子自身组织成多聚体,这可能在维持 VMBM 的完整性和稳定性方面发挥作用。此外,当 ISKNV 感染的细胞裂解时,VP08R 多聚体很容易降解,这可能是 VMBM 解体的一种机制,以便释放 LECs 并释放成熟的病毒粒子。

重要性

传染性脾肾坏死病毒(ISKNV;属 Megalocytivirus,虹彩病毒科)对养殖鱼类的危害最大。在组织中,ISKNV 感染的细胞被淋巴内皮细胞(LEC)附着,这被推测是将宿主免疫系统隔离开来。一种病毒膜蛋白 VP23R 结合并募集宿主的整联蛋白-1 蛋白,在感染细胞的表面构建病毒模拟基底膜(VMBM),为 LECs 提供附着位点。尽管 VMBM 缺乏胶原 IV 网络,而胶原 IV 网络是真正 BM 的一个重要结构部分,但 VMBM 仍然具有完整的结构。ISKNV 编码的 VP08R 蛋白可以自我组装成多聚体,并与 VP23R 和整联蛋白-1 结合,以维持 VMBM 的完整性和稳定性。基于这些事实,我们重新绘制了 VMBM 结构的推测示意图。我们的研究表明,病毒采用了一种重塑细胞基质的策略,这可能为阐明 BM 功能和淋巴管生成机制提供重要参考。

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