Cellular microRNA miR-181b inhibits replication of mink enteritis virus by repression of non-structural protein 1 translation.
Mink enteritis virus (MEV) is one of the most important viral pathogens in the mink industry. Recent studies have showed that microRNAs (miRNAs), small noncoding RNAs of length ranging from 18-23 nucleotides (nt) participate in host-pathogen interaction networks; however, whether or not miRNAs are i...
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oai:doaj.org-article:b207706f357747da95387b9b998c70ca2021-11-18T08:42:31ZCellular microRNA miR-181b inhibits replication of mink enteritis virus by repression of non-structural protein 1 translation.1932-620310.1371/journal.pone.0081515https://doaj.org/article/b207706f357747da95387b9b998c70ca2013-01-01T00:00:00Zhttps://www.ncbi.nlm.nih.gov/pmc/articles/pmid/24349084/?tool=EBIhttps://doaj.org/toc/1932-6203Mink enteritis virus (MEV) is one of the most important viral pathogens in the mink industry. Recent studies have showed that microRNAs (miRNAs), small noncoding RNAs of length ranging from 18-23 nucleotides (nt) participate in host-pathogen interaction networks; however, whether or not miRNAs are involved in MEV infection has not been reported. Our study revealed that miRNA miR-181b inhibited replication of MEV in the feline kidney (F81) cell line by targeting the MEV non-structural protein 1 (NS1) messenger RNA (mRNA) coding region, resulting in NS1 translational repression, while MEV infection reduced miR-181b expression. This is the first description of cellular miRNAs modulating MEV infection in F81 cells, providing further insight into the mechanisms of viral infection, and may be useful in development of naturally-occurring miRNAs antiviral strategies.Jia-zeng SunJigui WangDaoli YuanShuang WangZhili LiBao YiYaping MaoQiang HouWeiquan LiuPublic Library of Science (PLoS)articleMedicineRScienceQENPLoS ONE, Vol 8, Iss 12, p e81515 (2013) |
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Medicine R Science Q Jia-zeng Sun Jigui Wang Daoli Yuan Shuang Wang Zhili Li Bao Yi Yaping Mao Qiang Hou Weiquan Liu Cellular microRNA miR-181b inhibits replication of mink enteritis virus by repression of non-structural protein 1 translation. |
description |
Mink enteritis virus (MEV) is one of the most important viral pathogens in the mink industry. Recent studies have showed that microRNAs (miRNAs), small noncoding RNAs of length ranging from 18-23 nucleotides (nt) participate in host-pathogen interaction networks; however, whether or not miRNAs are involved in MEV infection has not been reported. Our study revealed that miRNA miR-181b inhibited replication of MEV in the feline kidney (F81) cell line by targeting the MEV non-structural protein 1 (NS1) messenger RNA (mRNA) coding region, resulting in NS1 translational repression, while MEV infection reduced miR-181b expression. This is the first description of cellular miRNAs modulating MEV infection in F81 cells, providing further insight into the mechanisms of viral infection, and may be useful in development of naturally-occurring miRNAs antiviral strategies. |
format |
article |
author |
Jia-zeng Sun Jigui Wang Daoli Yuan Shuang Wang Zhili Li Bao Yi Yaping Mao Qiang Hou Weiquan Liu |
author_facet |
Jia-zeng Sun Jigui Wang Daoli Yuan Shuang Wang Zhili Li Bao Yi Yaping Mao Qiang Hou Weiquan Liu |
author_sort |
Jia-zeng Sun |
title |
Cellular microRNA miR-181b inhibits replication of mink enteritis virus by repression of non-structural protein 1 translation. |
title_short |
Cellular microRNA miR-181b inhibits replication of mink enteritis virus by repression of non-structural protein 1 translation. |
title_full |
Cellular microRNA miR-181b inhibits replication of mink enteritis virus by repression of non-structural protein 1 translation. |
title_fullStr |
Cellular microRNA miR-181b inhibits replication of mink enteritis virus by repression of non-structural protein 1 translation. |
title_full_unstemmed |
Cellular microRNA miR-181b inhibits replication of mink enteritis virus by repression of non-structural protein 1 translation. |
title_sort |
cellular microrna mir-181b inhibits replication of mink enteritis virus by repression of non-structural protein 1 translation. |
publisher |
Public Library of Science (PLoS) |
publishDate |
2013 |
url |
https://doaj.org/article/b207706f357747da95387b9b998c70ca |
work_keys_str_mv |
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