| Literature DB >> 33093239 |
Kamil Krawczynski1,2, Yingshi Ouyang1,2, Jean-Francois Mouillet1,2, Tianjiao Chu1,2, Carolyn B Coyne3,4, Yoel Sadovsky5,2,6.
Abstract
The function of microRNAs (miRNAs) can be cell autonomous or communicated to other cell types and has been implicated in diverse biological processes. We previously demonstrated that miR-517a-3p (miR-517a), a highly expressed member of the chromosome 19 miRNA cluster (C19MC) that is transcribed almost exclusively in human trophoblasts, attenuates viral replication via induction of autophagy in non-trophoblastic recipient cells. However, the molecular mechanisms underlying these effects remain unknown. Here, we identified unc-13 homolog D (UNC13D) as a direct, autophagy-related gene target of miR-517a, leading to repression of UNC13D. In line with the antiviral activity of miR-517a, silencing UNC13D suppressed replication of vesicular stomatitis virus (VSV), whereas overexpression of UNC13D increased VSV levels, suggesting a role for UNC13D silencing in the antiviral activity of miR-517a. We also found that miR-517a activated NF-κB signaling in HEK-293XL cells expressing TLR8, but the effect was not specific to C19MC miRNA. Taken together, our results define mechanistic pathways that link C19MC miRNA with inhibition of viral replication.Entities:
Keywords: C19MC; MiR-517a; TLR8; UNC13D; Vesicular stomatitis virus
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Year: 2020 PMID: 33093239 PMCID: PMC7687871 DOI: 10.1242/jcs.246769
Source DB: PubMed Journal: J Cell Sci ISSN: 0021-9533 Impact factor: 5.285