miR-505 inhibits replication of Borna disease virus 1 via inhibition of HMGB1-mediated autophagy

Author:

Guo Yujie12,Xu Xiaoyan31,Tang Tian4,Sun Lin5,Zhang Xiong6,Shen Xia71,Li Dan3,Wang Lixin3,Zhao Libo2,Xie Peng17

Affiliation:

1. NHC Key Laboratory of Diagnosis and Treatment on Brain Functional Diseases, The First Affiliated Hospital of Chongqing Medical University, Chongqing, PR China

2. Department of Neurology, Yongchuan Hospital of Chongqing Medical University, Chongqing, PR China

3. Department of Pathology, College of Basic Medicine, Chongqing Medical University, Chongqing, PR China

4. Department of Laboratory Medicine, Jintang First People’s Hospital, West China Hospital Sichuan University JinTang Hospital, Chengdu, Sichuan, PR China

5. Department of Anaesthesia and Pain, The First People’s Hospital of Chongqing Liangjiang New Area, Chongqing, PR China

6. Department of Neurology, the Second Affiliated Hospital of Chongqing Medical University, Chongqing, PR China

7. Department of Neurology, The First Affiliated Hospital of Chongqing Medical University, Chongqing, PR China

Abstract

Borna disease virus 1 (BoDV-1) is a highly neurotropic RNA virus which was recently demonstrated to cause deadly human encephalitis. Viruses can modulate microRNA expression, in turn modulating cellular immune responses and regulating viral replication. A previous study indicated that BoDV-1 infection down-regulated the expression of miR-505 in rats. However, the underlying mechanism of miR-505 during BoDV-1 infection remains unknown. In this study, we found that miR-505 can inhibit autophagy activation by down-regulating the expression of its target gene HMGB1, and ultimately inhibit the replication of BoDV-1. Specifically, we found that the expression of miR-505 was significantly down-regulated in rat primary neurons stably infected with BoDV-1. Overexpression of miR-505 can inhibit the replication of BoDV-1 in cells. Bioinformatics analysis and dual luciferase reporter gene detection confirmed that during BoDV-1 infection, the high-mobility group protein B1 (HMGB1) that mediates autophagy is the direct target gene of miR-505. The expression of HMGB1 was up-regulated after BoDV-1 infection, and overexpression of miR-505 could inhibit the expression of HMGB1. Autophagy-related detection found that after infection with BoDV-1, the expression of autophagy-related proteins and autophagy-related marker LC3 in neuronal cells was significantly up-regulated. Autophagy flow experiments and transmission electron microscopy also further confirmed that BoDV-1 infection activated HMGB1-mediated autophagy. Further regulating the expression of miR-505 found that overexpression of miR-505 significantly inhibited HMGB1-mediated autophagy. The discovery of this mechanism may provide new ideas and directions for the prevention and treatment of BoDV-1 infection in the future.

Funder

National Key R&D Program of China

Institute of Chinese Materia Medica, China Academy of Chinese Medical Sciences and Peking Union Medical College

Natural Science Foundation Project of Chongqing, Chongqing Science and Technology Commission

Scientific and Technological Research Program of Chongqing Municipal Education Commission

Chongqing Postdoctoral Research Special Funding Project

Chongqing Postdoctoral Science Fund Project

Publisher

Microbiology Society

Subject

Virology

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