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Chapter 9: Immunology of TBEV infection


          30. Taylor RT, Lubick KJ, Robertson SJ, et al.   39. Best SM, Morris KL, Shannon JG, et al. Inhibition
             TRIM79alpha, an interferon-stimulated gene   of interferon-stimulated JAK-STAT signalling by
             product, restricts tick-borne encephalitis virus   a tick-borne flavivirus and identification of NS5
             replication by degrading the viral RNA     as an interferon antagonist. J Virol.
             polymerase. Cell Host Microbe. 2011;10:185-96.   2005;79:12828-39.
          31. Panayiotou C, Lindqvist R, Kurhade C, et al.   40. Werme K, Wigerius M, Johansson M. Tick-borne
             Viperin Restricts Zika Virus and Tick-Borne   encephalitis virus NS5 associates with
             Encephalitis Virus Replication by Targeting NS3   membrane protein scribble and impairs
             for Proteasomal Degradation. J Virol. 2018;92.   interferon-stimulated JAK-STAT signalling. Cell
                                                        Microbiol. 2008;10:696-712.
          32. Barkhash AV, Perelygin AA, Babenko VN, et al.
             Variability in the 2'-5'-oligoadenylate   41. Lubick KJ, Robertson SJ, McNally KL, et al.
             synthetase gene cluster is associated with   Flavivirus Antagonism of Type I Interferon
             human predisposition to tick-borne encephalitis   Signalling Reveals Prolidase as a Regulator of
             virus-induced disease. J Infect Dis.       IFNAR1 Surface Expression. Cell Host Microbe.
             2010;202:1813-8.                           2015;18:61-74.
          33. Guo HY, Zhang XC, Jia RY. Toll-Like Receptors   42. Cooper MA, Fehniger TA, Caligiuri MA. The
             and RIG-I-Like Receptors Play Important Roles   biology of human natural killer-cell subsets.
             in Resisting Flavivirus. J Immunol Res.    Trends Immunol. 2001;22:633-40.
             2018;2018:6106582.
                                                      43. Lanier LL. Up on the tightrope: natural killer cell
          34. Kindberg E, Vene S, Mickiene A, Lundkvist A,   activation and inhibition. Nat Immunol.
             Lindquist L, Svensson L. A functional Toll-like   2008;9:495-502.
             receptor 3 gene (TLR3) may be a risk factor for
             tick-borne encephalitis virus (TBEV) infection. J   44. Jost S, Altfeld M. Control of human viral
             Infect Dis. 2011;203:523-8.                infections by natural killer cells. Annu Rev
                                                        Immunol. 2013;31:163-94.
          35. Barkhash AV, Voevoda MI, Romaschenko AG.
             Association of single nucleotide polymorphism   45. Tomazic J, Ihan A. Flow cytometric analysis of
             rs3775291 in the coding region of the TLR3   lymphocytes in cerebrospinal fluid in patients
             gene with predisposition to tick-borne     with tick-borne encephalitis. Acta Neurol Scand.
             encephalitis in a Russian population. Antiviral   1997;95:29-33.
             Res. 2013;99:136-8.                      46. Blom K, Braun M, Pakalniene J, et al. NK Cell
                                                         Responses to Human Tick-Borne Encephalitis
          35. Mickiene A, Pakalniene J, Nordgren J, et al.
             Polymorphisms in chemokine receptor 5 and   Virus Infection. J Immunol. 2016;197:2762-71.
             Toll-like receptor 3 genes are risk factors for   47. Jeren T, Vince A. Cytologic and
             clinical tick-borne encephalitis in the Lithuanian   immunoenzymatic findings in CSF from patients
             population. PLoS One. 2014;9:e106798.       with tick-borne encephalitis. Acta Cytol.
                                                         1998;42:330-4.
          37.   Baker DG, Woods TA, Butchi NB, et al. Toll-
                like receptor 7 suppresses virus replication   48. Grygorczuk S, Swierzbinska R, Kondrusik M, et
                in neurons but does not affect viral    al. The intrathecal expression and pathogenetic
                pathogenesis in a mouse model of Langat   role of Th17 cytokines and CXCR2-binding
                virus infection. J Gen Virol. 2013;94:336-47.   chemokines in tick-borne encephalitis. J
                                                        Neuroinflammation. 2018;15:115.
          38.   38.   Overby AK, Popov VL, Niedrig M,
                Weber F. Tick-borne encephalitis virus   49. Michlmayr D, Bardina SV, Rodriguez CA, Pletnev
                delays interferon induction and hides its   AG, Lim JK. Dual Function of Ccr5 during Langat
                double-stranded RNA in intracellular    Virus Encephalitis: Reduction in Neutrophil-
                membrane vesicles. J Virol. 2010;84:8470-  Mediated Central Nervous System Inflammation
                83.                                     and Increase in T Cell-Mediated Viral Clearance.
                                                        J Immunol. 2016;196:4622-31.



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