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  4. Characterization of the nuclear localization sequence of beak and feather disease virus capsid proteins and their assembly into virus-like particles
 
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Characterization of the nuclear localization sequence of beak and feather disease virus capsid proteins and their assembly into virus-like particles

Journal
Virus Research
Journal Volume
289
Date Issued
2020
Author(s)
Chen, J.-K.
Hsiao, C.
Lo, A.-R.
Wang, C.-Y.
CHIAO-LONG HSIAO  
DOI
10.1016/j.virusres.2020.198144
URI
https://www.scopus.com/inward/record.url?eid=2-s2.0-85090234737&partnerID=40&md5=8514c470ea9aaedf78182ad4306488da
https://scholars.lib.ntu.edu.tw/handle/123456789/535707
Abstract
Beak and feather disease virus (BFDV) is a single-stranded circular DNA icosahedral virus that belongs to the Circoviridae family. This virus is the causative pathogen of beak and feather disease, which leads to feather loss, malformed claws, and immunosuppression of psittacine birds. Our study produced BFDV virus-like particles (VLPs) including capsid proteins, mutant Cap proteins (Cap ΔNLS54, Cap ΔNLS62, Cap C228S, and Cap ΔNES) and chimeric Cap proteins carrying the epitope (amino acid residues 64-70) of the replication-associated protein (R-Cap, Cap-R, R-Cap ΔNLS54, and Cap ΔNLS54-R). All of the aforementioned VLPs were observed via transmission electron microscopy and verified through immunogold labeling. The nuclear localization sequence (NLS) of the Cap protein was identified between amino acid residues 55-62. Nuclear export of the Cap protein depended on the nuclear export sequence (NES). All VLPs except Cap ΔNLS62 and Cap ΔNES entered the cells 2 h post-infection (hpi) and were shuttled into the nucleus at 8 hpi. Wheat germ agglutinin (WGA) blocked the nuclear entry of Cap proteins at 8 hpi and the nuclear export of Cap proteins at 16 hpi was inhibited by leptomycin B. The nuclear entry of Cap protein was inhibited by importin α and importin β inhibitors, as well as NLS peptides. Moreover, the interactions of Cap proteins and Cap VLPs with both importin α and importin β were characterized via the GST pull-down and immunofluorescence assays. These interactions were blocked by the presence of importin α and importin β inhibitors, as well as NLS peptides. Therefore, our study is the first to describe the precise position of the NLS of the BFDV Cap protein and the interaction of Cap protein with importin α and importin β in vitro.
SDGs

[SDGs]SDG3

Type
journal article

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