MiR-339-5p 通过靶向病毒基因区域抑制猪繁殖与呼吸综合征病毒的复制。

IF 1.9 4区 医学 Q3 GENETICS & HEREDITY Virus Genes Pub Date : 2024-04-01 Epub Date: 2024-02-18 DOI:10.1007/s11262-024-02059-6
Cuifang Ye, Xinyan Cao, Jinliang Sheng, Yanming Sun, Guang Li, Wenbin Fang, Yanbing Zhang
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引用次数: 0

摘要

猪繁殖与呼吸综合征病毒(PRRSV)是一种可变病毒,疫苗接种无法完全阻止其传播。PRRSV 感染会导致孕猪流产并出现呼吸道症状。抗病毒感染策略的一个重要组成部分是微小核糖核酸(miRNA),这是一类多功能小分子。尽管 miR-339-5p 在 PRRSV 感染期间明显上调,但 miR-339-5p 是否能特异性靶向 PRRSV 基因并阻止病毒复制仍是未知数。为此,本研究利用 miRanda 程序发现,miR-339-5p 靶向的两个 PRRSV 区域是 PRRSV nsp2-3378 至 3403 和 PRRSV nsp2-3112 至 3133。双荧光素酶报告实验表明,PRRSV基因序列的miR-339-5p靶区具有100%的同源性和高度保守性。此外,还验证了 miR-339-5p 靶向 PRRSV 基因区域的能力。通过 PRRSV 感染试验发现,miR-339-5p 的过表达能显著减少 PRRSV 的复制。以猪肺组织的 DNA 为模板,扩增了 ssc-miR-339-5p 的前体序列,从而产生了一个 402 bp 的猪源性 miR-339-5p 前体序列片段,然后利用该片段制备了 miR-339-5p 的真核表达质粒。总之,miR-339-5p 可以靶向特定的 PRRSV 基因区域,阻止 PRRSV 复制,为研制抗 PRRSV 感染的药物提供了新的视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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MiR-339-5p inhibits replication of porcine reproductive and respiratory syndrome virus by targeting viral gene regions.

Porcine reproductive and respiratory syndrome virus (PRRSV) is a variable virus, whose spread cannot be totally stopped by vaccination. PRRSV infection results in abortion and respiratory symptoms in pregnant pigs. One crucial component of the anti-viral infection strategy is microRNA (miRNA), a class of multifunctional small molecules. It is unknown whether miR-339-5p can specifically target the PRRSV gene and prevent the virus from replicating, despite the fact that miR-339-5p is markedly up-regulated during the PRRSV infection. In this pursuit, the present study revealed that the two PRRSV areas targeted by miR-339-5p were PRRSV nsp2-3378 to 3403 and PRRSV nsp2-3112 to 3133 using the miRanda program. Dual luciferase reporter assays showed that the miR-339-5p target region of the PRRSV gene sequence exhibited 100% homology and was highly conserved. Furthermore, the ability of miR-339-5p to target PRRSV gene areas was verified. It was found that the overexpression of miR-339-5p markedly reduced the PRRSV replication through PRRSV infection trials. The precursor sequence of ssc-miR-339-5p was amplified using the DNA of pig lung tissue as a template in order to create a fragment of 402 bp of porcine-derived miR-339-5p precursor sequence, which was then used to produce the eukaryotic expression plasmid of miR-339-5p. In conclusion, miR-339-5p can target the specific PRRSV gene areas and prevent PRRSV replication, offering fresh perspectives for the creation of medications that combat the PRRSV infection.

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来源期刊
Virus Genes
Virus Genes 医学-病毒学
CiteScore
3.30
自引率
0.00%
发文量
76
审稿时长
3 months
期刊介绍: Viruses are convenient models for the elucidation of life processes. The study of viruses is again on the cutting edge of biological sciences: systems biology, genomics, proteomics, metagenomics, using the newest most powerful tools. Huge amounts of new details on virus interactions with the cell, other pathogens and the hosts – animal (including human), insect, fungal, plant, bacterial, and archaeal - and their role in infection and disease are forthcoming in perplexing details requiring analysis and comments. Virus Genes is dedicated to the publication of studies on the structure and function of viruses and their genes, the molecular and systems interactions with the host and all applications derived thereof, providing a forum for the analysis of data and discussion of its implications, and the development of new hypotheses.
期刊最新文献
Correction: First reports of several viruses and a viroid including a novel vitivirus in Japan, found through virome analysis of bulk grape genetic resources. Expression of F1L, a vaccinia virus H3L transmembrane protein analogue of orf virus, and its successful purification as a diagnostic antigen. Molecular characterization and comparison of tomato zonate spot virus isolated in Japan and China. First reports of several viruses and a viroid including a novel vitivirus in Japan, found through virome analysis of bulk grape genetic resources. A new isolate of mungbean yellow mosaic India virus in Vigna mungo L. reported from a Dayalbagh field, Agra.
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