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新型、高丰度病毒转录本对细胞 mir-27 的降解对病毒在体内的高效复制至关重要。

Degradation of cellular mir-27 by a novel, highly abundant viral transcript is important for efficient virus replication in vivo.

机构信息

Max von Pettenkofer-Institute, Ludwig-Maximilians-University Munich, Munich, Germany.

出版信息

PLoS Pathog. 2012 Feb;8(2):e1002510. doi: 10.1371/journal.ppat.1002510. Epub 2012 Feb 9.

Abstract

Cytomegaloviruses express large amounts of viral miRNAs during lytic infection, yet, they only modestly alter the cellular miRNA profile. The most prominent alteration upon lytic murine cytomegalovirus (MCMV) infection is the rapid degradation of the cellular miR-27a and miR-27b. Here, we report that this regulation is mediated by the ∼1.7 kb spliced and highly abundant MCMV m169 transcript. Specificity to miR-27a/b is mediated by a single, apparently optimized, miRNA binding site located in its 3'-UTR. This site is easily and efficiently retargeted to other cellular and viral miRNAs by target site replacement. Expression of the 3'-UTR of m169 by an adenoviral vector was sufficient to mediate its function, indicating that no other viral factors are essential in this process. Degradation of miR-27a/b was found to be accompanied by 3'-tailing and -trimming. Despite its dramatic effect on miRNA stability, we found this interaction to be mutual, indicating potential regulation of m169 by miR-27a/b. Most interestingly, three mutant viruses no longer able to target miR-27a/b, either due to miRNA target site disruption or target site replacement, showed significant attenuation in multiple organs as early as 4 days post infection, indicating that degradation of miR-27a/b is important for efficient MCMV replication in vivo.

摘要

巨细胞病毒在裂解感染时大量表达病毒 miRNA,但它们只是适度改变细胞 miRNA 谱。在裂解性鼠巨细胞病毒(MCMV)感染时最显著的改变是细胞 miR-27a 和 miR-27b 的快速降解。在这里,我们报告这种调节是由大约 1.7kb 拼接和高度丰富的 MCMV m169 转录本介导的。对 miR-27a/b 的特异性是由位于其 3'-UTR 中的单个明显优化的 miRNA 结合位点介导的。通过靶位点替换,该位点可轻松且有效地重新靶向其他细胞和病毒 miRNA。通过腺病毒载体表达 m169 的 3'-UTR 足以介导其功能,表明在此过程中不需要其他病毒因子。miR-27a/b 的降解伴随着 3'-加尾和 -修剪。尽管它对 miRNA 稳定性有显著影响,但我们发现这种相互作用是相互的,表明 m169 可能受到 miR-27a/b 的调节。最有趣的是,由于 miRNA 靶位点破坏或靶位点替换而不再能够靶向 miR-27a/b 的三种突变病毒,在感染后 4 天内,在多个器官中的复制能力明显减弱,表明 miR-27a/b 的降解对 MCMV 在体内的有效复制很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90a4/3276556/7f4bc0920740/ppat.1002510.g001.jpg

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