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A Cellular MicroRNA Mediates Antiviral Defense in Human Cells

机译:细胞MicroRNA介导人类细胞中的抗病毒防御。

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In eukaryotes, 21- to 24-nucleotide-long RNAs engage in sequence-specific interactions that inhibit gene expression by RNA silencing. This process has regulatory roles involving microRNAs and, in plants and insects, it also forms the basis of a defense mechanism directed by small interfering RNAs that derive from replicative or integrated viral genomes. We show that a cellular microRNA effectively restricts the accumulation of the retrovirus primate foamy virus type 1 (PFV-1) in human cells. PFV-1 also encodes a protein, Tas, that suppresses microRNA-directed functions in mammalian cells and displays cross-kingdom antisilencing activities. Therefore, through fortuitous recognition of foreign nucleic acids, cellular microRNAs have direct antiviral effects in addition to their regulatory functions.
机译:在真核生物中,长21至24个核苷酸的RNA参与序列特异性相互作用,该相互作用通过RNA沉默抑制基因表达。该过程具有涉及microRNA的调节作用,并且在植物和昆虫中,它还形成了防御机制的基础,该防御机制由衍生自复制或整合的病毒基因组的小干扰RNA指导。我们表明,细胞微RNA有效地限制了人类细胞中逆转录病毒灵长类泡沫病毒1型(PFV-1)的积累。 PFV-1还编码Tas蛋白,该蛋白可抑制哺乳动物细胞中由microRNA定向的功能,并显示出跨王国的抗沉默活性。因此,通过偶然识别外来核酸,细胞微RNA除具有调控功能外,还具有直接的抗病毒作用。

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