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Extracellular membrane vesicles harbouring viral genomes

机译:携带病毒基因组的细胞外膜囊泡

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Cells from the three domains of life produce extracellular membrane vesicles (MVs), suggesting that MV production is a fundamental aspect of cellular physiology. We have recently shown that MVs produced by the hyperthermophilic archaeon Thermococcus kodakaraensis can be used as vehicles to transfer exogenous recombinant plasmid DNA from cell to cell. Here, we show that Thermococcus nautilus, which harbours three plasmids, pTN1, pTN2 and pTN3, produces MVs, and that some of them selectively incorporate pTN1 and pTN3. Interestingly, pTN3 represents the genome of a defective virus, which encodes signature proteins common to a large group of viruses infecting hosts from all three cellular domains. However, preparations of MVs produced by T. nautilus have a protein composition similar to that of classical MVs from Thermococcales and do not contain the viral major capsid protein encoded by pTN3. Our results suggest that MVs can serve as vehicles for the intercellular transport of viral genomes and facilitate recombination between viral, plasmid and/or cellular chromosomes in the absence of viral infection.
机译:来自生命的三个域的细胞产生细胞外膜囊泡(MVs),这表明MV的产生是细胞生理学的基本方面。我们最近显示,由超嗜热古细菌Thermococcus kodakaraensis产生的MV可用作媒介,将外源重组质粒DNA从一个细胞转移到另一个细胞。在这里,我们显示了含有三个质粒pTN1,pTN2和pTN3的鹦鹉螺嗜热球菌产生MV,并且其中一些选择性地掺入了pTN1和pTN3。有趣的是,pTN3代表了一种缺陷病毒的基因组,该基因组编码了一大批感染所有三个细胞域宿主的病毒所共有的特征蛋白。然而,由鹦鹉螺产生的MV的制剂具有与来自嗜热球菌的经典MV相似的蛋白质组成,并且不包含由pTN3编码的病毒主要衣壳蛋白。我们的结果表明,MVs可以作为病毒基因组在细胞间运输的载体,并在没有病毒感染的情况下促进病毒,质粒和/或细胞染色体之间的重组。

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