Modulation of miR-122 on persistently Borna disease virus infected human oligodendroglial cells

Using RNAhybrid software we found the predicted binding of complementary sequences between miR-122 and viral mRNAs, may be important for the antiviral effect of miR-122 on Borna disease virus (BDV). A moderate expression of miR-122 was identified in human oligodendroglial cells (OL), but with a much...

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Veröffentlicht in:Antiviral research 2010-08, Vol.87 (2), p.249-256
Hauptverfasser: Qian, Jun, Zhai, Aixia, Kao, Wenping, Li, Yujun, Song, Wuqi, Fu, Yingmei, Chen, Xiaobei, Zhang, Qingmeng, Wu, Jing, Li, Hui, Zhong, Zhaohua, Ling, Hong, Zhang, Fengmin
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Sprache:eng
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Zusammenfassung:Using RNAhybrid software we found the predicted binding of complementary sequences between miR-122 and viral mRNAs, may be important for the antiviral effect of miR-122 on Borna disease virus (BDV). A moderate expression of miR-122 was identified in human oligodendroglial cells (OL), but with a much lower level of miR-122 in BDV persistent infection (OL/BDV) and cells transfected with BDV gene expression vectors. Over-expression of miR-122 and specific blocking experiments demonstrated that miR-122 was able to specifically inhibit BDV protein synthesis, viral gene replication and transcription, and induce the secretion/synthesis of interferon (IFN) in OL and OL/BDV cells. The abolishment of miR-122 by AMO-122 inhibited endogenous IFN induction by IFN-beta. These results indicate that miR-122 can exert direct antiviral function by inhibiting BDV translation and replication on one hand, while acting indirectly through IFN to increase the host innate immunity to modulate the virus–host interactions on the other hand.
ISSN:0166-3542
1872-9096
DOI:10.1016/j.antiviral.2010.05.011