Inefficient type I interferon-mediated antiviral protection of primary mouse neurons is associated with the lack of apolipoprotein L9 expression

Kreit, Marguerite;Paul, Sophie;Knoops, Laurent;De Cock, Aurélie;Michiels, Thomas;et.al.
(2014) Journal of Virology — Vol. 88, n° 7, p. 3874-3884 (2014)

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Authors
  • Kreit, MargueriteUCLouvain
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  • Paul, SophieUCLouvain
    Author
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  • De Cock, AurélieUCLouvain
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  • Sorgeloos, FrédéricUCLouvain
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Abstract
We examined the antiviral response promoted by type I interferons (IFN) in primary mouse neurons. IFN treatment of neuron cultures strongly upregulated the transcription of IFN-stimulated genes but conferred a surprisingly low resistance to infection by neurotropic viruses such as Theiler's murine encephalomyelitis virus (TMEV) or vesicular stomatitis virus (VSV). Response of primary mouse neurons to IFN treatment was heterogeneous, as many neurons failed to express the typical IFN response marker Mx1 after IFN treatment. This heterogeneous response of primary neurons correlated with a low level of basal expression of IFN-stimulated genes, such as Stat1, that are involved in signal transduction of the IFN response. In addition, transcriptomic analysis identified 15 IFN-responsive genes whose expression was low in IFN-treated primary neurons compared to that of primary fibroblasts derived from the same mice (Dhx58, Gvin1, Sp100, Ifi203 isoforms 1 and 2, Irgm2, Lgals3bp, Ifi205, Apol9b, Ifi204, Ifi202b, Tor3a, Slfn2, Ifi35, Lgals9). Among these genes, the gene coding for apolipoprotein L9b (Apol9b) displayed antiviral activity against Theiler's virus when overexpressed in L929 cells or in primary neurons. Accordingly, knocking down Apol9b expression in L929 cells increased viral replication. Therefore, we identified a new antiviral protein induced by interferon, ApoL9b, whose lack of expression in primary neurons likely contributes to the high sensitivity of these cells to viral infection. © 2014, American Society for Microbiology.
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Citations

Kreit, M., Paul, S., Knoops, L., De Cock, A., Sorgeloos, F., & Michiels, T. (2014). Inefficient type I interferon-mediated antiviral protection of primary mouse neurons is associated with the lack of apolipoprotein L9 expression. Journal of Virology, 88(7), 3874-3884. https://doi.org/10.1128/JVI.03540-13 (Original work published 2014)