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Volumn 88, Issue 9, 2014, Pages 4798-4810

MicroRNA 155 regulates Japanese encephalitis virus-induced inflammatory response by targeting Src homology 2-containing inositol phosphatase 1

Author keywords

[No Author keywords available]

Indexed keywords

BETA INTERFERON; BINDING PROTEIN; MICRORNA 155; PROTEIN TYROSINE KINASE; SRC HOMOLOGY 2 CONTAINING INOSITOL PHOSPHATASE 1; TANK BINDING KINASE 1; UNCLASSIFIED DRUG;

EID: 84897491448     PISSN: 0022538X     EISSN: 10985514     Source Type: Journal    
DOI: 10.1128/JVI.02979-13     Document Type: Article
Times cited : (112)

References (52)
  • 1
    • 70449504004 scopus 로고    scopus 로고
    • Japanese encephalitis-a pathological and clinical perspective
    • Ghosh D, Basu A. 2009. Japanese encephalitis-a pathological and clinical perspective. PLoS Negl. Trop. Dis. 3:e437. http://dx.doi.org/10.1371/journal.pntd.0000437.
    • (2009) PLoS Negl. Trop. Dis. , vol.3
    • Ghosh, D.1    Basu, A.2
  • 2
    • 77953346430 scopus 로고    scopus 로고
    • Japanese encephalitis: pathogenesis, prophylactics and therapeutics
    • Dutta K, Rangarajan PN, Vrati S, Basu A. 2010. Japanese encephalitis: pathogenesis, prophylactics and therapeutics. Curr. Sci. 98:326-334. http://eprints.iisc.ernet.in/id/eprint/27043.
    • (2010) Curr. Sci. , vol.98 , pp. 326-334
    • Dutta, K.1    Rangarajan, P.N.2    Vrati, S.3    Basu, A.4
  • 3
    • 0030822499 scopus 로고    scopus 로고
    • Viral encephalitis in Southeast Asia
    • Solomon T. 1997. Viral encephalitis in Southeast Asia. Neurol. Infect. Epidemiol. 2:191-199.
    • (1997) Neurol. Infect. Epidemiol. , vol.2 , pp. 191-199
    • Solomon, T.1
  • 4
    • 84885033094 scopus 로고    scopus 로고
    • Japanese encephalitis virus infection: effect on brain development and repair
    • Sengupta N, Basu A. 2013. Japanese encephalitis virus infection: effect on brain development and repair. Curr. Sci. 105:1-5. http://www.currentscience.ac.in/Volumes/105/06/0815.pdf.
    • (2013) Curr. Sci. , vol.105 , pp. 1-5
    • Sengupta, N.1    Basu, A.2
  • 5
    • 84866166958 scopus 로고    scopus 로고
    • The involvement of microglial cells in Japanese encephalitis infections
    • Thongtan T, Thepparit C, Smith DR. 2012. The involvement of microglial cells in Japanese encephalitis infections. Clin. Dev. Immunol. 2012: 890586. http://dx.doi.org/10.1155/2012/890586.
    • (2012) Clin. Dev. Immunol. , vol.2012 , pp. 890586
    • Thongtan, T.1    Thepparit, C.2    Smith, D.R.3
  • 6
    • 77952293291 scopus 로고    scopus 로고
    • Overview: Japanese encephalitis
    • Misra UK, Kalita J. 2010. Overview: Japanese encephalitis. Prog. Neurobiol. 91:108-120. http://dx.doi.org/10.1016/j.pneurobio.2010.01.008.
    • (2010) Prog. Neurobiol. , vol.91 , pp. 108-120
    • Misra, U.K.1    Kalita, J.2
  • 8
    • 84897544832 scopus 로고    scopus 로고
    • Japanese encephalitis virus and human CNS infection
    • Singh SK, Ruzek D (ed). CRC Press, New York, NY.
    • Dutta K, Nazmi A, Basu A. 2013. Japanese encephalitis virus and human CNS infection, p 193-210. In Singh SK, Ruzek D (ed) Neuroviral infections: RNA viruses and retroviruses, vol 2. CRC Press, New York, NY.
    • (2013) Neuroviral infections: RNA viruses and retroviruses , vol.2 , pp. 193-210
    • Dutta, K.1    Nazmi, A.2    Basu, A.3
  • 9
    • 3042767202 scopus 로고    scopus 로고
    • MicroRNAs: small RNAs with a big role in gene regulation
    • He L, Hannon GJ. 2004. MicroRNAs: small RNAs with a big role in gene regulation. Nat. Rev. Genet. 5:522-531. http://dx.doi.org/10.1038/nrg1379.
    • (2004) Nat. Rev. Genet. , vol.5 , pp. 522-531
    • He, L.1    Hannon, G.J.2
  • 10
    • 77952690643 scopus 로고    scopus 로고
    • MicroRNAs, macrocontrol: regulation of miRNA processing
    • Slezak-Prochazka I, Durmus S, Kroesen BJ, van den Berg A. 2010. MicroRNAs, macrocontrol: regulation of miRNA processing. RNA 16: 1087-1095. http://dx.doi.org/10.1261/rna.1804410.
    • (2010) RNA , vol.16 , pp. 1087-1095
    • Slezak-Prochazka, I.1    Durmus, S.2    Kroesen, B.J.3    van den Berg, A.4
  • 11
    • 84887264718 scopus 로고    scopus 로고
    • MicroRNAs in the brain: it's regulatory role in neuroinflammation
    • Thounaojam MC, Kaushik DK, Basu A. 2013. MicroRNAs in the brain: it's regulatory role in neuroinflammation. Mol. Neurobiol. 47:1034-1044. http://dx.doi.org/10.1007/s12035-013-8400-3.
    • (2013) Mol. Neurobiol. , vol.47 , pp. 1034-1044
    • Thounaojam, M.C.1    Kaushik, D.K.2    Basu, A.3
  • 12
    • 73349136775 scopus 로고    scopus 로고
    • miR-155: on the crosstalk between inflammation and cancer
    • Tili E, Croce CM, Michaille JJ. 2009. miR-155: on the crosstalk between inflammation and cancer. Int. Rev. Immunol. 28:264-284. http://dx.doi.org/10.1080/08830180903093796.
    • (2009) Int. Rev. Immunol. , vol.28 , pp. 264-284
    • Tili, E.1    Croce, C.M.2    Michaille, J.J.3
  • 13
    • 80052661268 scopus 로고    scopus 로고
    • Silencing microRNA-155 ameliorates experimental autoimmune encephalomyelitis
    • Murugaiyan G, Beynon V, Mittal A, Joller N, Weiner HL. 2011. Silencing microRNA-155 ameliorates experimental autoimmune encephalomyelitis. J. Immunol. 187:2213-2221. http://dx.doi.org/10.4049/jimmunol.1003952.
    • (2011) J. Immunol. , vol.187 , pp. 2213-2221
    • Murugaiyan, G.1    Beynon, V.2    Mittal, A.3    Joller, N.4    Weiner, H.L.5
  • 14
    • 80053576812 scopus 로고    scopus 로고
    • Interferon regulatory factor 3 inhibits astrocyte inflammatory gene expression through suppression of the proinflammatory miR-155 and miR-155*
    • Tarassishin L, Loudig O, Bauman A, Shafit-Zagardo B, Suh HS, Lee SC. 2011. Interferon regulatory factor 3 inhibits astrocyte inflammatory gene expression through suppression of the proinflammatory miR-155 and miR-155*. Glia 59:1911-1922. http://dx.doi.org/10.1002/glia.21233.
    • (2011) Glia , vol.59 , pp. 1911-1922
    • Tarassishin, L.1    Loudig, O.2    Bauman, A.3    Shafit-Zagardo, B.4    Suh, H.S.5    Lee, S.C.6
  • 15
    • 83055176904 scopus 로고    scopus 로고
    • miR-155 modulates microglia-mediated immune response by down-regulating SOCS-1 and promoting cytokine and nitric oxide production
    • Cardoso AL, Guedes JR, Pereira de Almeida L, Pedroso de Lima MC. 2012. miR-155 modulates microglia-mediated immune response by down-regulating SOCS-1 and promoting cytokine and nitric oxide production. Immunology 135:73-88. http://dx.doi.org/10.1111/j.1365-2567.2011.03514.x.
    • (2012) Immunology , vol.135 , pp. 73-88
    • Cardoso, A.L.1    Guedes, J.R.2    Pereira de Almeida, L.3    Pedroso de Lima, M.C.4
  • 16
    • 55249124589 scopus 로고    scopus 로고
    • Epstein-Barr virus-induced miR-155 attenuates NF-kappaB signaling and stabilizes latent virus persistence
    • Lu F, Weidmer A, Liu CG, Volinia S, Croce CM, Lieberman PM. 2008. Epstein-Barr virus-induced miR-155 attenuates NF-kappaB signaling and stabilizes latent virus persistence. J. Virol. 82:10436-10443. http://dx.doi.org/10.1128/JVI.00752-08.
    • (2008) J. Virol. , vol.82 , pp. 10436-10443
    • Lu, F.1    Weidmer, A.2    Liu, C.G.3    Volinia, S.4    Croce, C.M.5    Lieberman, P.M.6
  • 18
    • 70450159733 scopus 로고    scopus 로고
    • Reticuloendotheliosis virus strain T induces miR-155, which targets JARID2 and promotes cell survival
    • Bolisetty MT, Dy G, Tam W, Beemon KL. 2009. Reticuloendotheliosis virus strain T induces miR-155, which targets JARID2 and promotes cell survival. J. Virol. 83:12009-12017. http://dx.doi.org/10.1128/JVI.01182-09.
    • (2009) J. Virol. , vol.83 , pp. 12009-12017
    • Bolisetty, M.T.1    Dy, G.2    Tam, W.3    Beemon, K.L.4
  • 19
    • 84897114286 scopus 로고    scopus 로고
    • MicroRNA-29b modulates Japanese encephalitis virus-induced microglia activation by targeting tumor necrosis factor alpha-induced protein 3
    • 16 November
    • Thounaojam MC, Kaushik DK, Kundu K, Basu A. 16 November 2013. MicroRNA-29b modulates Japanese encephalitis virus-induced microglia activation by targeting tumor necrosis factor alpha-induced protein 3. J. Neurochem. http://dx.doi.org/10.1111/jnc.12609.
    • (2013) J. Neurochem.
    • Thounaojam, M.C.1    Kaushik, D.K.2    Kundu, K.3    Basu, A.4
  • 21
    • 84878786612 scopus 로고    scopus 로고
    • Japanese encephalitis virus infection alters both neuronal and astrocytic differentiation of neural stem/progenitor cells
    • Ariff IM, Thounaojam MC, Das S, Basu A. 2013. Japanese encephalitis virus infection alters both neuronal and astrocytic differentiation of neural stem/progenitor cells. J. Neuroimmune Pharmacol. 8:664-676. http://dx.doi.org/10.1007/s11481-013-9455-7.
    • (2013) J. Neuroimmune Pharmacol. , vol.8 , pp. 664-676
    • Ariff, I.M.1    Thounaojam, M.C.2    Das, S.3    Basu, A.4
  • 22
    • 0033026132 scopus 로고    scopus 로고
    • Molecular characterization of an Indian isolate of Japanese encephalitis virus that shows an extended lag phase during growth
    • Vrati S, Agarwal V, Malik P, Wani SA, Saini M. 1999. Molecular characterization of an Indian isolate of Japanese encephalitis virus that shows an extended lag phase during growth. J. Gen. Virol. 80:1665-1671.
    • (1999) J. Gen. Virol. , vol.80 , pp. 1665-1671
    • Vrati, S.1    Agarwal, V.2    Malik, P.3    Wani, S.A.4    Saini, M.5
  • 23
    • 43549123047 scopus 로고    scopus 로고
    • Minocycline neuroprotects, reduces microglial activation, inhibits caspase 3 induction, and viral replication following Japanese encephalitis
    • Mishra MK, Basu A. 2008. Minocycline neuroprotects, reduces microglial activation, inhibits caspase 3 induction, and viral replication following Japanese encephalitis. J. Neurochem. 105:1582-1595. http://dx.doi.org/10.1111/j.1471-4159.2008.05238.x.
    • (2008) J. Neurochem. , vol.105 , pp. 1582-1595
    • Mishra, M.K.1    Basu, A.2
  • 24
    • 84857684496 scopus 로고    scopus 로고
    • NLRP3 inflammasome: key mediator of neuroinflammation in murine Japanese encephalitis
    • Kaushik DK, Gupta M, Kumawat KL, Basu A. 2012. NLRP3 inflammasome: key mediator of neuroinflammation in murine Japanese encephalitis. PLoS One 7:e32270. http://dx.doi.org/10.1371/journal.pone.0032270.
    • (2012) PLoS One , vol.7
    • Kaushik, D.K.1    Gupta, M.2    Kumawat, K.L.3    Basu, A.4
  • 25
    • 77957922334 scopus 로고    scopus 로고
    • Kruppel-like factor 4, a novel transcription factor regulates microglial activation and subsequent neuroinflammation
    • Kaushik DK, Gupta M, Das S, Basu A. 2010. Kruppel-like factor 4, a novel transcription factor regulates microglial activation and subsequent neuroinflammation. J. Neuroinflammation 7:68. http://dx.doi.org/10.1186/1742-2094-7-68.
    • (2010) J. Neuroinflammation , vol.7 , pp. 68
    • Kaushik, D.K.1    Gupta, M.2    Das, S.3    Basu, A.4
  • 26
    • 84880103893 scopus 로고    scopus 로고
    • Microglial activation: measurement of cytokines by flow cytometry
    • Kaushik DK, Basu A. 2013. Microglial activation: measurement of cytokines by flow cytometry. Methods Mol. Biol. 1041:71-82. http://dx.doi.org/10.1007/978-1-62703-520-0_9.
    • (2013) Methods Mol. Biol. , vol.1041 , pp. 71-82
    • Kaushik, D.K.1    Basu, A.2
  • 27
    • 0033795196 scopus 로고    scopus 로고
    • Interferons: cell signalling, immune modulation, antiviral response and virus countermeasures
    • Goodbourn S, Didcock L, Randall RE. 2000. Interferons: cell signalling, immune modulation, antiviral response and virus countermeasures. J. Gen. Virol. 81:2341-2364.
    • (2000) J. Gen. Virol. , vol.81 , pp. 2341-2364
    • Goodbourn, S.1    Didcock, L.2    Randall, R.E.3
  • 28
    • 36348940608 scopus 로고    scopus 로고
    • Interferons and viruses: an interplay between induction, signalling, antiviral responses and virus countermeasures
    • Randall RE, Goodbourn S. 2008. Interferons and viruses: an interplay between induction, signalling, antiviral responses and virus countermeasures. J. Gen. Virol. 89:1-47. http://dx.doi.org/10.1099/vir.0.83391-0.
    • (2008) J. Gen. Virol. , vol.89 , pp. 1-47
    • Randall, R.E.1    Goodbourn, S.2
  • 29
    • 78249250574 scopus 로고    scopus 로고
    • MNaGC: TLR3 sensing of viral infection
    • Dunlevy F. 2010. MNaGC: TLR3 sensing of viral infection. Open Infect. Dis. J. 4:1-10. http://dx.doi.org/10.2174/1874279301004010001.
    • (2010) Open Infect. Dis. J. , vol.4 , pp. 1-10
    • Dunlevy, F.1
  • 30
    • 84881219431 scopus 로고    scopus 로고
    • MicroRNA profiling of Sendai virusinfected A549 cells identifies miR-203 as an interferon-inducible regulator of IFIT1/ISG56
    • Buggele WA, Horvath CM. 2013. MicroRNA profiling of Sendai virusinfected A549 cells identifies miR-203 as an interferon-inducible regulator of IFIT1/ISG56. J. Virol. 87:9260-9270. http://dx.doi.org/10.1128/JVI.01064-13.
    • (2013) J. Virol. , vol.87 , pp. 9260-9270
    • Buggele, W.A.1    Horvath, C.M.2
  • 31
    • 84859738629 scopus 로고    scopus 로고
    • STING mediates neuronal innate immune response following Japanese encephalitis virus infection
    • Nazmi A, Mukhopadhyay R, Dutta K, Basu A. 2012. STING mediates neuronal innate immune response following Japanese encephalitis virus infection. Sci. Rep. 2:347. http://dx.doi.org/10.1038/srep00347.
    • (2012) Sci. Rep. , vol.2 , pp. 347
    • Nazmi, A.1    Mukhopadhyay, R.2    Dutta, K.3    Basu, A.4
  • 32
    • 31344477977 scopus 로고    scopus 로고
    • Flavivirus induces interferon-beta gene expression through a pathway involving RIG-I-dependent IRF-3 and PI3K-dependent NF-kappaB activation
    • Chang TH, Liao CL, Lin YL. 2006. Flavivirus induces interferon-beta gene expression through a pathway involving RIG-I-dependent IRF-3 and PI3K-dependent NF-kappaB activation. Microbes Infect. 8:157-171. http://dx.doi.org/10.1016/j.micinf.2005.06.014.
    • (2006) Microbes Infect. , vol.8 , pp. 157-171
    • Chang, T.H.1    Liao, C.L.2    Lin, Y.L.3
  • 33
    • 84872198804 scopus 로고    scopus 로고
    • Japanese encephalitis virus activates autophagy as a viral immune evasion strategy
    • Jin R, Zhu W, Cao S, Chen R, Jin H, Liu Y, Wang S, Wang W, Xiao G. 2013. Japanese encephalitis virus activates autophagy as a viral immune evasion strategy. PLoS One 8:e52909. http://dx.doi.org/10.1371/journal.pone.0052909.
    • (2013) PLoS One , vol.8
    • Jin, R.1    Zhu, W.2    Cao, S.3    Chen, R.4    Jin, H.5    Liu, Y.6    Wang, S.7    Wang, W.8    Xiao, G.9
  • 34
    • 80052058424 scopus 로고    scopus 로고
    • Delayed cytosolic exposure of Japanese encephalitis virus double-stranded RNA impedes interferon activation and enhances viral dissemination in porcine cells
    • Espada-Murao LA, Morita K. 2011. Delayed cytosolic exposure of Japanese encephalitis virus double-stranded RNA impedes interferon activation and enhances viral dissemination in porcine cells. J. Virol. 85:6736-6749. http://dx.doi.org/10.1128/JVI.00233-11.
    • (2011) J. Virol. , vol.85 , pp. 6736-6749
    • Espada-Murao, L.A.1    Morita, K.2
  • 35
    • 78650658467 scopus 로고    scopus 로고
    • Inducible microRNA-155 feedback promotes type I IFN signaling in antiviral innate immunity by targeting suppressor of cytokine signaling 1
    • Wang P, Hou J, Lin L, Wang C, Liu X, Li D, Ma F, Wang Z, Cao X. 2010. Inducible microRNA-155 feedback promotes type I IFN signaling in antiviral innate immunity by targeting suppressor of cytokine signaling 1. J. Immunol. 185:6226-6233. http://dx.doi.org/10.4049/jimmunol.1000491.
    • (2010) J. Immunol. , vol.185 , pp. 6226-6233
    • Wang, P.1    Hou, J.2    Lin, L.3    Wang, C.4    Liu, X.5    Li, D.6    Ma, F.7    Wang, Z.8    Cao, X.9
  • 36
    • 70349331525 scopus 로고    scopus 로고
    • Src homology 2 domain-containing inositol-5-phosphatase and CCAAT enhancer-binding protein beta are targeted by miR-155 in B cells of Emicro-MiR-155 transgenic mice
    • Costinean S, Sandhu SK, Pedersen IM, Tili E, Trotta R, Perrotti D, Ciarlariello D, Neviani P, Harb J, Kauffman LR, Shidham A, Croce CM. 2009. Src homology 2 domain-containing inositol-5-phosphatase and CCAAT enhancer-binding protein beta are targeted by miR-155 in B cells of Emicro-MiR-155 transgenic mice. Blood 114:1374-1382. http://dx.doi.org/10.1182/blood-2009-05-220814.
    • (2009) Blood , vol.114 , pp. 1374-1382
    • Costinean, S.1    Sandhu, S.K.2    Pedersen, I.M.3    Tili, E.4    Trotta, R.5    Perrotti, D.6    Ciarlariello, D.7    Neviani, P.8    Harb, J.9    Kauffman, L.R.10    Shidham, A.11    Croce, C.M.12
  • 40
    • 77951931275 scopus 로고    scopus 로고
    • Absence of SHIP-1 results in constitutive phosphorylation of tank-binding kinase 1 and enhanced TLR3-dependent IFN-beta production
    • Gabhann JN, Higgs R, Brennan K, Thomas W, Damen JE, Ben Larbi N, Krystal G, Jefferies CA. 2010. Absence of SHIP-1 results in constitutive phosphorylation of tank-binding kinase 1 and enhanced TLR3-dependent IFN-beta production. J. Immunol. 184:2314-2320. http://dx.doi.org/10.4049/jimmunol.0902589.
    • (2010) J. Immunol. , vol.184 , pp. 2314-2320
    • Gabhann, J.N.1    Higgs, R.2    Brennan, K.3    Thomas, W.4    Damen, J.E.5    Ben Larbi, N.6    Krystal, G.7    Jefferies, C.A.8
  • 41
    • 79959634861 scopus 로고    scopus 로고
    • Pattern recognition receptors and the innate immune response to viral infection
    • Thompson MR, Kaminski JJ, Kurt-Jones EA, Fitzgerald KA. 2011. Pattern recognition receptors and the innate immune response to viral infection. Viruses 3:920-940. http://dx.doi.org/10.3390/v3060920.
    • (2011) Viruses , vol.3 , pp. 920-940
    • Thompson, M.R.1    Kaminski, J.J.2    Kurt-Jones, E.A.3    Fitzgerald, K.A.4
  • 42
    • 84895542247 scopus 로고    scopus 로고
    • Host-viral interactions: role of pattern recognition receptors (PRRs) in human pneumovirus infections
    • Kolli DVT, Casola A. 2013. Host-viral interactions: role of pattern recognition receptors (PRRs) in human pneumovirus infections. Pathogens 2:232-263. http://dx.doi.org/10.3390/pathogens2020232.
    • (2013) Pathogens , vol.2 , pp. 232-263
    • Kolli, D.V.T.1    Casola, A.2
  • 43
    • 84877650680 scopus 로고    scopus 로고
    • TRIM11 negatively regulates IFNbeta production and antiviral activity by targeting TBK1
    • Lee Y, Song B, Park C, Kwon KS. 2013. TRIM11 negatively regulates IFNbeta production and antiviral activity by targeting TBK1. PLoS One 8:e63255. http://dx.doi.org/10.1371/journal.pone.0063255.
    • (2013) PLoS One , vol.8
    • Lee, Y.1    Song, B.2    Park, C.3    Kwon, K.S.4
  • 44
    • 0034602156 scopus 로고    scopus 로고
    • Multiple regulatory domains control IRF-7 activity in response to virus infection
    • Lin R, Mamane Y, Hiscott J. 2000. Multiple regulatory domains control IRF-7 activity in response to virus infection. J. Biol. Chem. 275:34320-34327. http://dx.doi.org/10.1074/jbc.M002814200.
    • (2000) J. Biol. Chem. , vol.275 , pp. 34320-34327
    • Lin, R.1    Mamane, Y.2    Hiscott, J.3
  • 45
    • 0032538891 scopus 로고    scopus 로고
    • Differential viral induction of distinct interferon-alpha genes by positive feedback through interferon regulatory factor-7
    • Marie I, Durbin JE, Levy DE. 1998. Differential viral induction of distinct interferon-alpha genes by positive feedback through interferon regulatory factor-7. EMBOJ. 17:6660-6669. http://dx.doi.org/10.1093/emboj/17.22.6660.
    • (1998) EMBOJ. , vol.17 , pp. 6660-6669
    • Marie, I.1    Durbin, J.E.2    Levy, D.E.3
  • 47
    • 0033485542 scopus 로고    scopus 로고
    • NF-kappaB activation by a signaling complex containing TRAF2, TANK and TBK1, a novel IKK-related kinase
    • Pomerantz JL, Baltimore D. 1999. NF-kappaB activation by a signaling complex containing TRAF2, TANK and TBK1, a novel IKK-related kinase. EMBO J. 18: 6694-6704. http://dx.doi.org/10.1093/emboj/18.23.6694.
    • (1999) EMBO J. , vol.18 , pp. 6694-6704
    • Pomerantz, J.L.1    Baltimore, D.2
  • 49
    • 84868554937 scopus 로고    scopus 로고
    • TRAF-interacting protein (TRIP) negatively regulates IFN-beta production and antiviral response by promoting proteasomal degradation of TANK-binding kinase 1
    • Zhang M, Wang L, Zhao X, Zhao K, Meng H, Zhao W, Gao C. 2012. TRAF-interacting protein (TRIP) negatively regulates IFN-beta production and antiviral response by promoting proteasomal degradation of TANK-binding kinase 1. J. Exp. Med. 209:1703-1711. http://dx.doi.org/10.1084/jem.20120024.
    • (2012) J. Exp. Med. , vol.209 , pp. 1703-1711
    • Zhang, M.1    Wang, L.2    Zhao, X.3    Zhao, K.4    Meng, H.5    Zhao, W.6    Gao, C.7
  • 50
    • 41949087849 scopus 로고    scopus 로고
    • Japanese encephalitis virus infection induces IL-18 and IL-1beta in microglia and astrocytes: correlation with in vitro cytokine responsiveness of glial cells and subsequent neuronal death
    • Das S, Mishra MK, Ghosh J, Basu A. 2008. Japanese encephalitis virus infection induces IL-18 and IL-1beta in microglia and astrocytes: correlation with in vitro cytokine responsiveness of glial cells and subsequent neuronal death. J. Neuroimmunol. 195:60-72. http://dx.doi.org/10.1016/j.jneuroim.2008.01.009.
    • (2008) J. Neuroimmunol. , vol.195 , pp. 60-72
    • Das, S.1    Mishra, M.K.2    Ghosh, J.3    Basu, A.4
  • 51
    • 79952299564 scopus 로고    scopus 로고
    • Abrogated inflammatory response promotes neurogenesis in a murine model of Japanese encephalitis
    • Das S, Dutta K, Kumawat KL, Ghoshal A, Adhya D, Basu A. 2011. Abrogated inflammatory response promotes neurogenesis in a murine model of Japanese encephalitis. PLoS One 6:e17225. http://dx.doi.org/10.1371/journal.pone.0017225.
    • (2011) PLoS One , vol.6
    • Das, S.1    Dutta, K.2    Kumawat, K.L.3    Ghoshal, A.4    Adhya, D.5    Basu, A.6
  • 52
    • 33847737758 scopus 로고    scopus 로고
    • Proinflammatory mediators released by activated microglia induces neuronal death in Japanese encephalitis
    • Ghoshal A, Das S, Ghosh S, Mishra MK, Sharma V, Koli P, Sen E, Basu A. 2007. Proinflammatory mediators released by activated microglia induces neuronal death in Japanese encephalitis. Glia 55:483-496. http://dx.doi.org/10.1002/glia.20474.
    • (2007) Glia , vol.55 , pp. 483-496
    • Ghoshal, A.1    Das, S.2    Ghosh, S.3    Mishra, M.K.4    Sharma, V.5    Koli, P.6    Sen, E.7    Basu, A.8


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