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Volumn 11, Issue 7, 2015, Pages

An Internally Translated MAVS Variant Exposes Its Amino-terminal TRAF-Binding Motifs to Deregulate Interferon Induction

Author keywords

[No Author keywords available]

Indexed keywords

BETA INTERFERON; IMMUNOGLOBULIN ENHANCER BINDING PROTEIN; INTERFERON; INTERFERON REGULATORY FACTOR; MITOCHONDRION ANTIVIRAL SIGNALING PROTEIN; MITOCHONDRION ANTIVIRAL SIGNALING PROTEIN 50; MITOCHONDRION ANTIVIRAL SIGNALING PROTEIN 70; PATTERN RECOGNITION RECEPTOR; PROTEIN; TUMOR NECROSIS FACTOR RECEPTOR ASSOCIATED FACTOR; TUMOR NECROSIS FACTOR RECEPTOR ASSOCIATED FACTOR 2; TUMOR NECROSIS FACTOR RECEPTOR ASSOCIATED FACTOR 6; UNCLASSIFIED DRUG; VIRUS PROTEIN; INTERFERON INDUCING AGENT; PROTEIN BINDING; SIGNAL TRANSDUCING ADAPTOR PROTEIN; VISA PROTEIN, HUMAN;

EID: 84938786868     PISSN: 15537366     EISSN: 15537374     Source Type: Journal    
DOI: 10.1371/journal.ppat.1005060     Document Type: Article
Times cited : (11)

References (49)
  • 1
    • 77950343791 scopus 로고    scopus 로고
    • Pattern recognition receptors and inflammation
    • Takeuchi O, Akira S, (2010) Pattern recognition receptors and inflammation. Cell 140: 805–820. doi: 10.1016/j.cell.2010.01.022 20303872
    • (2010) Cell , vol.140 , pp. 805-820
    • Takeuchi, O.1    Akira, S.2
  • 2
    • 84896958063 scopus 로고    scopus 로고
    • Innate immune sensing and signaling of cytosolic nucleic acids
    • Wu J, Chen ZJ, (2014) Innate immune sensing and signaling of cytosolic nucleic acids. Annu Rev Immunol 32: 461–488. doi: 10.1146/annurev-immunol-032713-120156 24655297
    • (2014) Annu Rev Immunol , vol.32 , pp. 461-488
    • Wu, J.1    Chen, Z.J.2
  • 3
    • 84878173821 scopus 로고    scopus 로고
    • Cytosolic sensing of viruses
    • Goubau D, Deddouche S, Reis e Sousa C, (2013) Cytosolic sensing of viruses. Immunity 38: 855–869. doi: 10.1016/j.immuni.2013.05.007 23706667
    • (2013) Immunity , vol.38 , pp. 855-869
    • Goubau, D.1    Deddouche, S.2    Reis e Sousa, C.3
  • 4
    • 33750984771 scopus 로고    scopus 로고
    • RIG-I-mediated antiviral responses to single-stranded RNA bearing 5'-phosphates
    • Pichlmair A, Schulz O, Tan CP, Naslund TI, Liljestrom P, et al. (2006) RIG-I-mediated antiviral responses to single-stranded RNA bearing 5'-phosphates. Science 314: 997–1001. 17038589
    • (2006) Science , vol.314 , pp. 997-1001
    • Pichlmair, A.1    Schulz, O.2    Tan, C.P.3    Naslund, T.I.4    Liljestrom, P.5
  • 5
    • 33646342149 scopus 로고    scopus 로고
    • Differential roles of MDA5 and RIG-I helicases in the recognition of RNA viruses
    • Kato H, Takeuchi O, Sato S, Yoneyama M, Yamamoto M, et al. (2006) Differential roles of MDA5 and RIG-I helicases in the recognition of RNA viruses. Nature 441: 101–105. 16625202
    • (2006) Nature , vol.441 , pp. 101-105
    • Kato, H.1    Takeuchi, O.2    Sato, S.3    Yoneyama, M.4    Yamamoto, M.5
  • 6
    • 33750976374 scopus 로고    scopus 로고
    • 5'-Triphosphate RNA is the ligand for RIG-I
    • Hornung V, Ellegast J, Kim S, Brzozka K, Jung A, et al. (2006) 5'-Triphosphate RNA is the ligand for RIG-I. Science 314: 994–997. 17038590
    • (2006) Science , vol.314 , pp. 994-997
    • Hornung, V.1    Ellegast, J.2    Kim, S.3    Brzozka, K.4    Jung, A.5
  • 7
    • 24944538819 scopus 로고    scopus 로고
    • VISA is an adapter protein required for virus-triggered IFN-beta signaling
    • Xu LG, Wang YY, Han KJ, Li LY, Zhai Z, et al. (2005) VISA is an adapter protein required for virus-triggered IFN-beta signaling. Mol Cell 19: 727–740. 16153868
    • (2005) Mol Cell , vol.19 , pp. 727-740
    • Xu, L.G.1    Wang, Y.Y.2    Han, K.J.3    Li, L.Y.4    Zhai, Z.5
  • 8
    • 24144461689 scopus 로고    scopus 로고
    • Identification and characterization of MAVS, a mitochondrial antiviral signaling protein that activates NF-kappaB and IRF 3
    • Seth RB, Sun L, Ea CK, Chen ZJ, (2005) Identification and characterization of MAVS, a mitochondrial antiviral signaling protein that activates NF-kappaB and IRF 3. Cell 122: 669–682. 16125763
    • (2005) Cell , vol.122 , pp. 669-682
    • Seth, R.B.1    Sun, L.2    Ea, C.K.3    Chen, Z.J.4
  • 9
    • 27144440476 scopus 로고    scopus 로고
    • Cardif is an adaptor protein in the RIG-I antiviral pathway and is targeted by hepatitis C virus
    • Meylan E, Curran J, Hofmann K, Moradpour D, Binder M, et al. (2005) Cardif is an adaptor protein in the RIG-I antiviral pathway and is targeted by hepatitis C virus. Nature 437: 1167–1172. 16177806
    • (2005) Nature , vol.437 , pp. 1167-1172
    • Meylan, E.1    Curran, J.2    Hofmann, K.3    Moradpour, D.4    Binder, M.5
  • 10
    • 27144440523 scopus 로고    scopus 로고
    • IPS-1, an adaptor triggering RIG-I- and Mda5-mediated type I interferon induction
    • Kawai T, Takahashi K, Sato S, Coban C, Kumar H, et al. (2005) IPS-1, an adaptor triggering RIG-I- and Mda5-mediated type I interferon induction. Nat Immunol 6: 981–988. 16127453
    • (2005) Nat Immunol , vol.6 , pp. 981-988
    • Kawai, T.1    Takahashi, K.2    Sato, S.3    Coban, C.4    Kumar, H.5
  • 11
    • 0030613551 scopus 로고    scopus 로고
    • The IkappaB kinase complex (IKK) contains two kinase subunits, IKKalpha and IKKbeta, necessary for IkappaB phosphorylation and NF-kappaB activation
    • Zandi E, Rothwarf DM, Delhase M, Hayakawa M, Karin M, (1997) The IkappaB kinase complex (IKK) contains two kinase subunits, IKKalpha and IKKbeta, necessary for IkappaB phosphorylation and NF-kappaB activation. Cell 91: 243–252. 9346241
    • (1997) Cell , vol.91 , pp. 243-252
    • Zandi, E.1    Rothwarf, D.M.2    Delhase, M.3    Hayakawa, M.4    Karin, M.5
  • 12
    • 0030004897 scopus 로고    scopus 로고
    • Site-specific phosphorylation of IkappaBalpha by a novel ubiquitination-dependent protein kinase activity
    • Chen ZJ, Parent L, Maniatis T, (1996) Site-specific phosphorylation of IkappaBalpha by a novel ubiquitination-dependent protein kinase activity. Cell 84: 853–862. 8601309
    • (1996) Cell , vol.84 , pp. 853-862
    • Chen, Z.J.1    Parent, L.2    Maniatis, T.3
  • 13
    • 0038393016 scopus 로고    scopus 로고
    • IKKepsilon and TBK1 are essential components of the IRF3 signaling pathway
    • Fitzgerald KA, McWhirter SM, Faia KL, Rowe DC, Latz E, et al. (2003) IKKepsilon and TBK1 are essential components of the IRF3 signaling pathway. Nat Immunol 4: 491–496. 12692549
    • (2003) Nat Immunol , vol.4 , pp. 491-496
    • Fitzgerald, K.A.1    McWhirter, S.M.2    Faia, K.L.3    Rowe, D.C.4    Latz, E.5
  • 14
    • 0038363463 scopus 로고    scopus 로고
    • Triggering the interferon antiviral response through an IKK-related pathway
    • Sharma S, tenOever BR, Grandvaux N, Zhou GP, Lin R, et al. (2003) Triggering the interferon antiviral response through an IKK-related pathway. Science 300: 1148–1151. 12702806
    • (2003) Science , vol.300 , pp. 1148-1151
    • Sharma, S.1    tenOever, B.R.2    Grandvaux, N.3    Zhou, G.P.4    Lin, R.5
  • 15
    • 84880288803 scopus 로고    scopus 로고
    • Evasion of adaptive and innate immune response mechanisms by gamma-herpesviruses
    • Feng P, Moses A, Fruh K, (2013) Evasion of adaptive and innate immune response mechanisms by gamma-herpesviruses. Curr Opin Virol 3: 285–295. doi: 10.1016/j.coviro.2013.05.011 23735334
    • (2013) Curr Opin Virol , vol.3 , pp. 285-295
    • Feng, P.1    Moses, A.2    Fruh, K.3
  • 16
    • 30544444850 scopus 로고    scopus 로고
    • CARD games between virus and host get a new player
    • Johnson CL, Gale M, Jr. (2006) CARD games between virus and host get a new player. Trends Immunol 27: 1–4. 16309964
    • (2006) Trends Immunol , vol.27 , pp. 1-4
    • Johnson, C.L.1    Gale, M.2
  • 17
    • 84938774939 scopus 로고    scopus 로고
    • RIG-I in RNA virus recognition
    • Kell AM, Gale M, Jr. (2015) RIG-I in RNA virus recognition. Virology.
    • (2015) Virology
    • Kell, A.M.1    Gale, M.2
  • 18
    • 14544280209 scopus 로고    scopus 로고
    • Immune evasion by hepatitis C virus NS4/4A protease-mediated cleavage of the Toll-like receptor 3 adaptor protein TRIF
    • Li K, Foy E, Ferreon JC, Nakamura M, Ferreon AC, et al. (2005) Immune evasion by hepatitis C virus NS4/4A protease-mediated cleavage of the Toll-like receptor 3 adaptor protein TRIF. Proc Natl Acad Sci U S A 102: 2992–2997. 15710891
    • (2005) Proc Natl Acad Sci U S A , vol.102 , pp. 2992-2997
    • Li, K.1    Foy, E.2    Ferreon, J.C.3    Nakamura, M.4    Ferreon, A.C.5
  • 19
    • 29144462494 scopus 로고    scopus 로고
    • Hepatitis C virus protease NS4/4A cleaves mitochondrial antiviral signaling protein off the mitochondria to evade innate immunity
    • Li XD, Sun L, Seth RB, Pineda G, Chen ZJ, (2005) Hepatitis C virus protease NS4/4A cleaves mitochondrial antiviral signaling protein off the mitochondria to evade innate immunity. Proc Natl Acad Sci U S A 102: 17717–17722. 16301520
    • (2005) Proc Natl Acad Sci U S A , vol.102 , pp. 17717-17722
    • Li, X.D.1    Sun, L.2    Seth, R.B.3    Pineda, G.4    Chen, Z.J.5
  • 20
    • 34249855382 scopus 로고    scopus 로고
    • Disruption of innate immunity due to mitochondrial targeting of a picornaviral protease precursor
    • Yang Y, Liang Y, Qu L, Chen Z, Yi M, et al. (2007) Disruption of innate immunity due to mitochondrial targeting of a picornaviral protease precursor. Proc Natl Acad Sci U S A 104: 7253–7258. 17438296
    • (2007) Proc Natl Acad Sci U S A , vol.104 , pp. 7253-7258
    • Yang, Y.1    Liang, Y.2    Qu, L.3    Chen, Z.4    Yi, M.5
  • 21
    • 84876002925 scopus 로고    scopus 로고
    • Enterovirus 71 protease 2Apro targets MAVS to inhibit anti-viral type I interferon responses
    • Wang B, Xi X, Lei X, Zhang X, Cui S, et al. (2013) Enterovirus 71 protease 2Apro targets MAVS to inhibit anti-viral type I interferon responses. PLoS Pathog 9: e1003231. doi: 10.1371/journal.ppat.1003231 23555247
    • (2013) PLoS Pathog , vol.9 , pp. e1003231
    • Wang, B.1    Xi, X.2    Lei, X.3    Zhang, X.4    Cui, S.5
  • 22
    • 77957661741 scopus 로고    scopus 로고
    • Murine gamma-herpesvirus 68 hijacks MAVS and IKKbeta to initiate lytic replication
    • Dong X, Feng H, Sun Q, Li H, Wu TT, et al. (2010) Murine gamma-herpesvirus 68 hijacks MAVS and IKKbeta to initiate lytic replication. PLoS Pathog 6: e1001001. doi: 10.1371/journal.ppat.1001001 20686657
    • (2010) PLoS Pathog , vol.6 , pp. e1001001
    • Dong, X.1    Feng, H.2    Sun, Q.3    Li, H.4    Wu, T.T.5
  • 23
    • 81755163030 scopus 로고    scopus 로고
    • Murine gamma herpesvirus 68 hijacks MAVS and IKKbeta to abrogate NFkappaB activation and antiviral cytokine production
    • Dong X, Feng P, (2011) Murine gamma herpesvirus 68 hijacks MAVS and IKKbeta to abrogate NFkappaB activation and antiviral cytokine production. PLoS Pathog 7: e1002336. doi: 10.1371/journal.ppat.1002336 22110409
    • (2011) PLoS Pathog , vol.7 , pp. e1002336
    • Dong, X.1    Feng, P.2
  • 24
    • 84857070553 scopus 로고    scopus 로고
    • Murine gammaherpesvirus 68 evades host cytokine production via replication transactivator-induced RelA degradation
    • Dong X, He Z, Durakoglugil D, Arneson L, Shen Y, et al. (2012) Murine gammaherpesvirus 68 evades host cytokine production via replication transactivator-induced RelA degradation. J Virol 86: 1930–1941. doi: 10.1128/JVI.06127-11 22130545
    • (2012) J Virol , vol.86 , pp. 1930-1941
    • Dong, X.1    He, Z.2    Durakoglugil, D.3    Arneson, L.4    Shen, Y.5
  • 25
    • 33646592188 scopus 로고    scopus 로고
    • The specific and essential role of MAVS in antiviral innate immune responses
    • Sun Q, Sun L, Liu HH, Chen X, Seth RB, et al. (2006) The specific and essential role of MAVS in antiviral innate immune responses. Immunity 24: 633–642. 16713980
    • (2006) Immunity , vol.24 , pp. 633-642
    • Sun, Q.1    Sun, L.2    Liu, H.H.3    Chen, X.4    Seth, R.B.5
  • 26
    • 84908330408 scopus 로고    scopus 로고
    • Regulation of RIG-I-like receptor signaling by host and viral proteins
    • Chiang JJ, Davis ME, Gack MU, (2014) Regulation of RIG-I-like receptor signaling by host and viral proteins. Cytokine Growth Factor Rev 25: 491–505. doi: 10.1016/j.cytogfr.2014.06.005 25023063
    • (2014) Cytokine Growth Factor Rev , vol.25 , pp. 491-505
    • Chiang, J.J.1    Davis, M.E.2    Gack, M.U.3
  • 27
    • 84961287871 scopus 로고    scopus 로고
    • Viral Pseudo-Enzymes Activate RIG-I via Deamidation to Evade Cytokine Production
    • He S, Zhao J, Song S, He X, Minassian A, et al. (2015) Viral Pseudo-Enzymes Activate RIG-I via Deamidation to Evade Cytokine Production. Mol Cell.
    • (2015) Mol Cell
    • He, S.1    Zhao, J.2    Song, S.3    He, X.4    Minassian, A.5
  • 28
    • 84894177433 scopus 로고    scopus 로고
    • A bicistronic MAVS transcript highlights a class of truncated variants in antiviral immunity
    • Brubaker SW, Gauthier AE, Mills EW, Ingolia NT, Kagan JC, (2014) A bicistronic MAVS transcript highlights a class of truncated variants in antiviral immunity. Cell 156: 800–811. doi: 10.1016/j.cell.2014.01.021 24529381
    • (2014) Cell , vol.156 , pp. 800-811
    • Brubaker, S.W.1    Gauthier, A.E.2    Mills, E.W.3    Ingolia, N.T.4    Kagan, J.C.5
  • 29
    • 77951708374 scopus 로고    scopus 로고
    • Reconstitution of the RIG-I pathway reveals a signaling role of unanchored polyubiquitin chains in innate immunity
    • Zeng W, Sun L, Jiang X, Chen X, Hou F, et al. (2010) Reconstitution of the RIG-I pathway reveals a signaling role of unanchored polyubiquitin chains in innate immunity. Cell 141: 315–330. doi: 10.1016/j.cell.2010.03.029 20403326
    • (2010) Cell , vol.141 , pp. 315-330
    • Zeng, W.1    Sun, L.2    Jiang, X.3    Chen, X.4    Hou, F.5
  • 30
    • 84898747432 scopus 로고    scopus 로고
    • Structural basis for the prion-like MAVS filaments in antiviral innate immunity
    • Xu H, He X, Zheng H, Huang LJ, Hou F, et al. (2014) Structural basis for the prion-like MAVS filaments in antiviral innate immunity. Elife 3: e01489. doi: 10.7554/eLife.01489 24569476
    • (2014) Elife , vol.3 , pp. e01489
    • Xu, H.1    He, X.2    Zheng, H.3    Huang, L.J.4    Hou, F.5
  • 31
    • 79961133270 scopus 로고    scopus 로고
    • MAVS forms functional prion-like aggregates to activate and propagate antiviral innate immune response
    • Hou F, Sun L, Zheng H, Skaug B, Jiang QX, et al. (2011) MAVS forms functional prion-like aggregates to activate and propagate antiviral innate immune response. Cell 146: 448–461. doi: 10.1016/j.cell.2011.06.041 21782231
    • (2011) Cell , vol.146 , pp. 448-461
    • Hou, F.1    Sun, L.2    Zheng, H.3    Skaug, B.4    Jiang, Q.X.5
  • 32
    • 0033197872 scopus 로고    scopus 로고
    • The structural basis for the recognition of diverse receptor sequences by TRAF2
    • Ye H, Park YC, Kreishman M, Kieff E, Wu H, (1999) The structural basis for the recognition of diverse receptor sequences by TRAF2. Mol Cell 4: 321–330. 10518213
    • (1999) Mol Cell , vol.4 , pp. 321-330
    • Ye, H.1    Park, Y.C.2    Kreishman, M.3    Kieff, E.4    Wu, H.5
  • 33
    • 18444390259 scopus 로고    scopus 로고
    • Distinct molecular mechanism for initiating TRAF6 signalling
    • Ye H, Arron JR, Lamothe B, Cirilli M, Kobayashi T, et al. (2002) Distinct molecular mechanism for initiating TRAF6 signalling. Nature 418: 443–447. 12140561
    • (2002) Nature , vol.418 , pp. 443-447
    • Ye, H.1    Arron, J.R.2    Lamothe, B.3    Cirilli, M.4    Kobayashi, T.5
  • 34
    • 84865119303 scopus 로고    scopus 로고
    • Linear ubiquitination of NEMO negatively regulates the interferon antiviral response through disruption of the MAVS-TRAF3 complex
    • Belgnaoui SM, Paz S, Samuel S, Goulet ML, Sun Q, et al. (2012) Linear ubiquitination of NEMO negatively regulates the interferon antiviral response through disruption of the MAVS-TRAF3 complex. Cell Host Microbe 12: 211–222. doi: 10.1016/j.chom.2012.06.009 22901541
    • (2012) Cell Host Microbe , vol.12 , pp. 211-222
    • Belgnaoui, S.M.1    Paz, S.2    Samuel, S.3    Goulet, M.L.4    Sun, Q.5
  • 35
    • 84877870687 scopus 로고    scopus 로고
    • The unfolded protein response element IRE1alpha senses bacterial proteins invading the ER to activate RIG-I and innate immune signaling
    • Cho JA, Lee AH, Platzer B, Cross BC, Gardner BM, et al. (2013) The unfolded protein response element IRE1alpha senses bacterial proteins invading the ER to activate RIG-I and innate immune signaling. Cell Host Microbe 13: 558–569. doi: 10.1016/j.chom.2013.03.011 23684307
    • (2013) Cell Host Microbe , vol.13 , pp. 558-569
    • Cho, J.A.1    Lee, A.H.2    Platzer, B.3    Cross, B.C.4    Gardner, B.M.5
  • 36
    • 33750433585 scopus 로고    scopus 로고
    • Manipulation of the nuclear factor-kappaB pathway and the innate immune response by viruses
    • Hiscott J, Nguyen TL, Arguello M, Nakhaei P, Paz S, (2006) Manipulation of the nuclear factor-kappaB pathway and the innate immune response by viruses. Oncogene 25: 6844–6867. 17072332
    • (2006) Oncogene , vol.25 , pp. 6844-6867
    • Hiscott, J.1    Nguyen, T.L.2    Arguello, M.3    Nakhaei, P.4    Paz, S.5
  • 37
    • 84924778328 scopus 로고    scopus 로고
    • Phosphorylation of innate immune adaptor proteins MAVS, STING, and TRIF induces IRF3 activation
    • Liu S, Cai X, Wu J, Cong Q, Chen X, et al. (2015) Phosphorylation of innate immune adaptor proteins MAVS, STING, and TRIF induces IRF3 activation. Science 347.
    • (2015) Science , vol.347
    • Liu, S.1    Cai, X.2    Wu, J.3    Cong, Q.4    Chen, X.5
  • 38
    • 84882705934 scopus 로고    scopus 로고
    • MAVS recruits multiple ubiquitin E3 ligases to activate antiviral signaling cascades
    • Liu S, Chen J, Cai X, Wu J, Chen X, et al. (2013) MAVS recruits multiple ubiquitin E3 ligases to activate antiviral signaling cascades. Elife 2: e00785. doi: 10.7554/eLife.00785 23951545
    • (2013) Elife , vol.2 , pp. e00785
    • Liu, S.1    Chen, J.2    Cai, X.3    Wu, J.4    Chen, X.5
  • 39
    • 0001033803 scopus 로고    scopus 로고
    • Structural basis for self-association and receptor recognition of human TRAF2
    • Park YC, Burkitt V, Villa AR, Tong L, Wu H, (1999) Structural basis for self-association and receptor recognition of human TRAF2. Nature 398: 533–538. 10206649
    • (1999) Nature , vol.398 , pp. 533-538
    • Park, Y.C.1    Burkitt, V.2    Villa, A.R.3    Tong, L.4    Wu, H.5
  • 40
    • 55949131282 scopus 로고    scopus 로고
    • Roles of RIG-I N-terminal tandem CARD and splice variant in TRIM25-mediated antiviral signal transduction
    • Gack MU, Kirchhofer A, Shin YC, Inn KS, Liang C, et al. (2008) Roles of RIG-I N-terminal tandem CARD and splice variant in TRIM25-mediated antiviral signal transduction. Proc Natl Acad Sci U S A 105: 16743–16748. doi: 10.1073/pnas.0804947105 18948594
    • (2008) Proc Natl Acad Sci U S A , vol.105 , pp. 16743-16748
    • Gack, M.U.1    Kirchhofer, A.2    Shin, Y.C.3    Inn, K.S.4    Liang, C.5
  • 41
    • 77951214649 scopus 로고    scopus 로고
    • Analysis of a TIR-less splice variant of TRIF reveals an unexpected mechanism of TLR3-mediated signaling
    • Han KJ, Yang Y, Xu LG, Shu HB, (2010) Analysis of a TIR-less splice variant of TRIF reveals an unexpected mechanism of TLR3-mediated signaling. J Biol Chem 285: 12543–12550. doi: 10.1074/jbc.M109.072231 20200155
    • (2010) J Biol Chem , vol.285 , pp. 12543-12550
    • Han, K.J.1    Yang, Y.2    Xu, L.G.3    Shu, H.B.4
  • 42
    • 33846307026 scopus 로고    scopus 로고
    • Regulation of innate antiviral defenses through a shared repressor domain in RIG-I and LGP2
    • Saito T, Hirai R, Loo YM, Owen D, Johnson CL, et al. (2007) Regulation of innate antiviral defenses through a shared repressor domain in RIG-I and LGP2. Proc Natl Acad Sci U S A 104: 582–587. 17190814
    • (2007) Proc Natl Acad Sci U S A , vol.104 , pp. 582-587
    • Saito, T.1    Hirai, R.2    Loo, Y.M.3    Owen, D.4    Johnson, C.L.5
  • 43
    • 34250665831 scopus 로고    scopus 로고
    • Regulation of interferon production by RIG-I and LGP2: a lesson in self-control
    • Vitour D, Meurs EF, (2007) Regulation of interferon production by RIG-I and LGP2: a lesson in self-control. Sci STKE 2007: pe20. 17473309
    • (2007) Sci STKE , vol.2007 , pp. pe20
    • Vitour, D.1    Meurs, E.F.2
  • 44
    • 0036048711 scopus 로고    scopus 로고
    • Viral strategies of translation initiation: ribosomal shunt and reinitiation
    • Ryabova LA, Pooggin MM, Hohn T, (2002) Viral strategies of translation initiation: ribosomal shunt and reinitiation. Prog Nucleic Acid Res Mol Biol 72: 1–39. 12206450
    • (2002) Prog Nucleic Acid Res Mol Biol , vol.72 , pp. 1-39
    • Ryabova, L.A.1    Pooggin, M.M.2    Hohn, T.3
  • 45
    • 33646769647 scopus 로고    scopus 로고
    • Translation reinitiation and leaky scanning in plant viruses
    • Ryabova LA, Pooggin MM, Hohn T, (2006) Translation reinitiation and leaky scanning in plant viruses. Virus Res 119: 52–62. 16325949
    • (2006) Virus Res , vol.119 , pp. 52-62
    • Ryabova, L.A.1    Pooggin, M.M.2    Hohn, T.3
  • 46
    • 0035396727 scopus 로고    scopus 로고
    • Internal ribosome entry sites in eukaryotic mRNA molecules
    • Hellen CU, Sarnow P, (2001) Internal ribosome entry sites in eukaryotic mRNA molecules. Genes Dev 15: 1593–1612. 11445534
    • (2001) Genes Dev , vol.15 , pp. 1593-1612
    • Hellen, C.U.1    Sarnow, P.2
  • 48
    • 53049095670 scopus 로고    scopus 로고
    • Kaposi's sarcoma-associated herpesvirus K7 induces viral G protein-coupled receptor degradation and reduces its tumorigenicity
    • Feng H, Dong X, Negaard A, Feng P, (2008) Kaposi's sarcoma-associated herpesvirus K7 induces viral G protein-coupled receptor degradation and reduces its tumorigenicity. PLoS Pathog 4: e1000157. doi: 10.1371/journal.ppat.1000157 18802460
    • (2008) PLoS Pathog , vol.4 , pp. e1000157
    • Feng, H.1    Dong, X.2    Negaard, A.3    Feng, P.4
  • 49
    • 84879715851 scopus 로고    scopus 로고
    • IKK epsilon kinase is crucial for viral G protein-coupled receptor tumorigenesis
    • Wang Y, Lu X, Zhu L, Shen Y, Chengedza S, et al. (2013) IKK epsilon kinase is crucial for viral G protein-coupled receptor tumorigenesis. Proc Natl Acad Sci U S A 110: 11139–11144. doi: 10.1073/pnas.1219829110 23771900
    • (2013) Proc Natl Acad Sci U S A , vol.110 , pp. 11139-11144
    • Wang, Y.1    Lu, X.2    Zhu, L.3    Shen, Y.4    Chengedza, S.5


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.