GLOSA LUB KOMENTARZ PRAWNICZY
Gra o przetrwanie: strategie manipulacji autofagii przez herpeswirusy
Dariusz Miszczak 1 , Joanna Cymerys 11. Division of Microbiology, Department of Preclinical Sciences, Faculty of Veterinary Medicine, Warsaw University of Life Sciences, Warsaw, Poland
Opublikowany: 2014-12-04
DOI: 10.5604/17322693.1130653
GICID: 01.3001.0003.1381
Dostępne wersje językowe: pl en
Wydanie: Postepy Hig Med Dosw 2014; 68 : 1406-1414
Abstrakt
Przypisy
- 1. Alexander D.E., Ward S.L., Mizushima N., Levine B., Leib D.A.:Analysis of the role of autophagy in replication of herpes simplexvirus in cell culture. J. Virol., 2007; 81: 12128-12134
Google Scholar - 2. Bisbal C., Silverman R.H.: Diverse functions of RNase L and implicationsin pathology. Biochimie, 2007; 89: 789-798
Google Scholar - 3. Brown S.M., MacLean A.R., Aitken J.D., Harland J.: ICP34.5 influencesherpes simplex virus type 1 maturation and egress from infectedcell in vitro. J. Gen. Virol., 1994; 75: 3679-3686
Google Scholar - 4. Brown S.M., MacLean A.R., McKie E.A., Harland J.: The herpes simplexvirus virulence factor ICP34.5 and the cellular protein MyD116complex with proliferating cell nuclear antigen through the 63-amino-aciddomain conserved in ICP34.5, MyD116, and GADD34. J. Virol.,1997; 71: 9442-9449
Google Scholar - 5. Carpenter J.E., Jackson W., Benetti L., Grose C.: Autophagosomeformation during varicella-zoster virus infection following endoplasmicreticulum stress and the unfolded protein response. J. Virol.,2011; 85: 9414-9424
Google Scholar - 6. Cattaneo R.: Four viruses, two bacteria, and one receptor: membranecofactor protein (CD46) as pathogens’ magnet. J. Virol. 2004;78: 4385-4388
Google Scholar - 7. Cavignac Y., Esclatine A.: Herpesviruses and autophagy: catch meif you can! Viruses, 2010; 2: 314-333
Google Scholar - 8. Chakrabarti A., Ghosh P.K., Banerjee S., Gaughan C., SilvermanR.H.: RNase L triggers autophagy in response to viral infections. J.Virol., 2012; 86: 11311-11321
Google Scholar - 9. Chaumorcel M., Lussignol M., Mouna L., Cavignac Y., Fahie K.,Cotte-Laffitte J., Geballe A., Brune W., Beau I., Codogno P., EsclatineA.: The human cytomegalovirus protein TRS1inhibits autophagy viaits interaction with Beclin 1. J. Virol., 2012; 86: 2571-2584
Google Scholar - 10. Chaumorcel M., Souquere S., Pierron G., Codogno P., EsclatineA.: Human cytomegalovirus controls a new autophagy-dependentcellular antiviral defense mechanism. Autophagy, 2008; 4: 46-53
Google Scholar - 11. Crawford S.E., Estes M.K.: Viroporin-mediated calcium-activatedautophagy. Autophagy, 2013; 9: 797-798
Google Scholar - 12. Dabo S., Meurs E.F.: dsRNA-dependent protein kinase PKR and itsrole in stress, signaling and HCV infection. Viruses, 2012; 4: 2598-2635
Google Scholar - 13. English L., Chemali M., Duron J., Rondeau C., Laplante A., GingrasD., Alexander D., Leib D., Norbury C., Lippé R., Desjardins M.:Autophagy enhances the presentation of endogenous viral antigenson MHC class I molecules during HSV-1 infection. Nat. Immunol.,2009; 10: 480-487
Google Scholar - 14. Gannage M., Münz C.: MHC presentation via autophagy and howviruses escape from it. Semin. Immunopathol., 2010; 32: 373-381
Google Scholar - 15. Geiser V., Rose S., Jones C.: Bovine herpesvirus type 1 inducescell death by a cell type dependent fashion. Microb. Pathog., 2008;44: 459-466
Google Scholar - 16. Glick D., Barth S., Macleod K.F.: Autophagy: cellular and molecularmechanisms. J. Pathol., 2010; 221: 3-12
Google Scholar - 17. Gobeil P.A., Leib D.A.: Herpes simplex virus g34.5 interferes withautophagosome maturation and antigen presentation in dendriticcells. MBio, 2012; 3: e00267-12
Google Scholar - 18. Hakki M., Marshall E.E., De Niro K.L., Geballe A.P.: Binding andnuclear relocalization of protein kinase R by human cytomegalovirusTRS1. J. Virol., 2006; 80: 11817-11826
Google Scholar - 19. Harland J., Dunn P., Cameron E., Conner J., Brown S.M.: Theherpes simplex virus (HSV) protein ICP34.5 is a virion componentthat forms a DNA-binding complex with proliferating cell nuclearantigen and HSV replication proteins. J. Neurovirol., 2003; 9: 477-488
Google Scholar - 20. He B., Gross M., Roizman B.: The g134.5 protein of herpes simplexvirus 1 complexes with protein phosphatase 1α to dephosphorylatethe α subunit of the eukaryotic translation initiationfactor 2 and preclude the shutoff of protein synthesis by doublestrandedRNA-activated protein kinase. Proc. Natl. Acad. Sci. USA,1997; 94: 843-848
Google Scholar - 21. He Y., Zhao X., Gao J., Fan L., Yang G., Cho W.C., Chen H.: Quantumdots-basedimmunofluorescent imaging of stromal fibroblasts caveolin-1and light chain 3B expression and identification of their clinical significancein human gastric cancer. Int. J. Mol. Sci., 2012; 13: 13764-13780
Google Scholar - 22. Jing X., Cerveny M., Yang K., He B.: Replication of herpes simplexvirus 1 depends on the g134.5 functions that facilitate virus responseto interferon and egress in the different stages of productive infection.J. Virol., 2004; 78: 7653-7666
Google Scholar - 23. Joubert P.E., Meiffren G., Grégoire I.P., Pontini G., Richetta C.,Flacher M., Azocar O., Vidalain P.O., Vidal M., Lotteau V., Codogno P.,Rabourdin-Combe C., Faure M.: Autophagy induction by the pathogenreceptor CD46. Cell Host Microbe, 2009; 6: 354-366
Google Scholar - 24. Kanai R., Zaupa C., Sgubin D., Antoszczyk S.J., Martuza R.L., WakimotoH., Rabkin S.D.: Effect of g34.5 deletions on oncolytic herpessimplex virus activity in brain tumors. J. Virol., 2012; 86: 4420-4431
Google Scholar - 25. Kim B.H., Shenoy A.R., Kumar P., Das R., Tiwari S., MacMickingJ.D.: A family of IFN-γ-inducible 65-kD GTPases protects against bacterialinfection. Science, 2011; 332: 717-721
Google Scholar - 26. Kobayashi M., Wilson A.C., Chao M.V., Mohr I.: Control of virallatency in neurons by axonal mTOR signaling and the 4E-BP translationrepressor. Genes Dev., 2012; 26: 1527-1532
Google Scholar - 27. Korom M., Wylie K.M., Wang H., Davis K.L., Sangabathula M.S.,Delassus G.S., Morrison L.A.: A proautophagic antiviral role for thecellular prion protein identified by infection with a herpes simplexvirus 1 ICP34.5 mutant. J. Virol., 2013; 87: 5882-5894
Google Scholar - 28. Kudchodkar S.B., Levine B.: Viruses and autophagy. Rev. Med.Virol., 2009; 19: 359-378
Google Scholar - 29. Kudchodkar S.B., Yu Y., Maguire T.G., Alwine J.C.: Human cytomegalovirusinfection alters the substrate specificities and rapamycinsensitivities of raptor- and rictor-containing complexes. Proc.Natl. Acad. Sci. USA, 2006; 103: 14182-14187
Google Scholar - 30. Le Sage V., Banfield B.W.: Dysregulation of autophagy in murinefibroblasts resistant to HSV-1 infection. PLoS One, 2012; 7: e42636
Google Scholar - 31. Lee D.Y., Lee J., Sugden B.: The unfolded protein response andautophagy: herpesviruses rule! J. Virol., 2009; 83: 1168-1172
Google Scholar - 32. Lee D.Y., Sugden B.: The latent membrane protein 1 oncogenemodifies B-cell physiology by regulating autophagy. Oncogene, 2008;27: 2833-2842
Google Scholar - 33. Lee D.Y., Sugden B.: The LMP1 oncogene of EBV activates PERKand the unfolded protein response to drive its own synthesis. Blood,2008; 111: 2280-2289
Google Scholar - 34. Lei Y., Wen H., Ting J.P.: The NLR protein, NLRX1, and its partner,TUFM, reduce type I interferon, and enhance autophagy. Autophagy,2013; 9: 432-433
Google Scholar - 35. Leib D.A., Alexander D.E., Cox D., Yin J., Ferguson T.A.: Interactionof ICP34.5 with Beclin 1 modulates herpes simplex virus type 1 pathogenesis through control of CD4+ T-cell responses. J. Virol.,2009; 83: 12164-12171
Google Scholar - 36. Leidal A.M., Cyr D.P., Hill R.J., Lee P.W., McCormick C.: Subversionof autophagy by Kaposi’s sarcoma-associated herpesvirusimpairs oncogene-induced senescence. Cell Host Microbe, 2012;11: 167-180
Google Scholar - 37. Lussignol M., Queval C., Bernet-Camard M.F., Cotte-Laffitte J.,Beau I., Codogno P., Esclatine A.: The herpes simplex virus 1 Us11protein inhibits autophagy through its interaction with the proteinkinase PKR. J. Virol., 2013; 87: 859-871
Google Scholar - 38. McFarlane S., Aitken J., Sutherland J.S., Nicholl M.J., Preston V.G.,Preston C.M.: Early induction of autophagy in human fibroblasts afterinfection with human cytomegalovirus or herpes simplex virus 1 J. Virol., 2011; 85: 4212-4221
Google Scholar - 39. Montagnaro S., Ciarcia R., Pagnini F., De Martino L., Puzio M.V.,Granato G.E., Avino F., Pagnini U., Iovane G., Giordano A.: Bovineherpesvirus type 4 infection modulates autophagy in a permissivecell line. J. Cell. Biochem., 2013; 114: 1529-1535
Google Scholar - 40. Moorman N.J., Cristea I.M., Terhune S.S., Rout M.P., Chait B.T.,Shenk T.: Human cytomegalovirus protein UL38 inhibits host cellstress responses by antagonizing the tuberous sclerosis protein complex.Cell Host Microbe, 2008; 3: 253-262
Google Scholar - 41. Oh S., E X., Hwang S., Liang C.: Autophagy evasion in herpesvirallatency. Autophagy, 2010; 6: 151-152
Google Scholar - 42. Orvedahl A., Alexander D., Tallóczy Z., Sun Q., Wei Y., Zhang W.,Burns D., Leib D.A., Levine B.: HSV-1 ICP34.5 confers neurovirulenceby targeting the Beclin 1 autophagy protein. Cell Host Microbe,2007; 1: 23-35
Google Scholar - 43. Paludan C., Schmid D., Landthaler M., Vockerodt M., Kube D.,Tuschl T., Münz C.: Endogenous MHC class II processing of a viralnuclear antigen after autophagy. Science, 2005; 307: 593-596
Google Scholar - 44. Pei Y., Chen Z.P., Ju H.Q., Komatsu M., Ji Y.H., Liu G., Guo C.W.,Zhang Y.J., Yang C.R., Wang Y.F., Kitazato K.: Autophagy is involvedin anti-viral activity of pentagalloylglucose (PGG) against Herpessimplex virus type 1 infection in vitro. Biochem. Biophys. Res. Commun.,2011; 405: 186-191
Google Scholar - 45. Pyo J.O., Nah J., Jung Y.K.: Molecules and their functions in autophagy.Exp. Mol. Med., 2012; 44: 73-80
Google Scholar - 46. Qian Z., Xuan B., Gualberto N., Yu D.: The human cytomegalovirusprotein pUL38 suppresses endoplasmic reticulum stressmediatedcell death independently of its ability to induce mTORC1activation. J. Virol., 2011; 85: 9103-9113
Google Scholar - 47. Radtke K., English L., Rondeau C., Leib D., Lippé R., DesjardinsM: Inhibition of the host translation shutoff response by herpessimplex virus 1 triggers nuclear envelope-derived autophagy. J. Virol.,2013; 87: 3990-3997
Google Scholar - 48. Rasmussen S.B., Horan K.A., Holm C.K., Stranks A.J., MettenleiterT.C., Simon A.K., Jensen S.B., Rixon F.J., He B., Paludan S.R.: Activationof autophagy by α-herpesviruses in myeloid cells is mediated by cytoplasmicviral DNA through a mechanism dependent on stimulatorof IFN genes. J. Immunol., 2011; 187: 5268-5276
Google Scholar - 49. Santana S., Recuero M., Bullido M.J., Valdivieso F., Aldudo J.:Herpes simplex virus type induces the accumulation of intracellularβ-amyloid in autophagic compartments and the inhibition ofthe non-amyloidogenic pathway in human neuroblastoma cells.Neurobiol. Aging, 2012; 33: 430.e19-430.e33
Google Scholar - 50. Schoggins J.W., Rice C.M.: Interferon-stimulated genes and theirantiviral effector functions. Curr. Opin. Virol., 2011; 1: 519-525
Google Scholar - 51. Severa M., Giacomini E., Gafa V., Anastasiadou E., Rizzo F., CorazzariM., Romagnoli A., Trivedi P., Fimia G.M., Coccia E.M.: EBV stimulatesTLR- and autophagy-dependent pathways and impairs maturationin plasmacytoid dendritic cells: implications for viral immuneescape. Eur. J. Immunol., 2013; 43: 147-158
Google Scholar - 52. Shen S., Niso-Santano M., Adjemian S., Takehara T., Malik S.A.,Minoux H., Souquere S., Marino G., Lachkar S., Senovilla L., GalluzziL., Kepp O., Pierron G., Maiuri M.C., Hikita H., Kroemer R., KroemerG.: Cytoplasmic STAT3 represses autophagy by inhibiting PKR activity.Mol. Cell, 2012; 48: 667-680
Google Scholar - 53. Siddiqui M.A., Malathi K.: RNase L induces autophagy via c-JunN-terminal kinase and double-stranded RNA-dependent proteinkinase signaling pathways. J. Biol. Chem., 2012; 287: 43651-43664
Google Scholar - 54. Sir D., Ou J.H.: Autophagy in viral replication and pathogenesis.Mol. Cells, 2010; 29: 1-7
Google Scholar - 55. Takahashi M.N., Jackson W., Laird D.T., Culp T.D., Grose C., HaynesJ.I. 2nd, Benetti L.: Varicella-zoster virus infection induces autophagyin both cultured cells and human skin vesicles. J. Virol., 2009;83: 5466-5476
Google Scholar - 56. Tallóczy Z., Jiang W., Virgin H.W. 4th, Leib D.A., Scheuner D.,Kaufman R.J., Eskelinen E.L., Levine B.: Regulation of starvation- andvirus-induced autophagy by the eIF2α kinase signaling pathway.Proc. Natl. Acad. Sci. USA, 2002; 99: 190-195
Google Scholar - 57. Tallóczy Z., Virgin H.W. 4th, Levine B.: PKR-dependent autophagicdegradation of herpes simplex virus type 1. Autophagy, 2006; 2: 24-29
Google Scholar - 58. Tang S., Bertke A.S., Patel A., Wang K., Cohen J.I., Krause P.R.:An acutely and latently expressed herpes simplex virus 2 viral microRNAinhibits expression of ICP34.5, a viral neurovirulence factor.Proc. Natl. Acad. Sci. USA, 2008; 105: 10931-10936
Google Scholar - 59. Taylor G.S., Long H.M., Haigh T.A., Larsen M., Brooks J., RickinsonA.B.: A role for intercellular antigen transfer in the recognition ofEBV-transformed B cell lines by EBV nuclear antigen-specific CD4+T cells. J. Immunol., 2006; 177: 3746-3756
Google Scholar - 60. Thompson M.R., Kaminski J.J., Kurt-Jones E.A., Fitzgerald K.A.:Pattern recognition receptors and the innate immune response toviral infection. Viruses, 2011; 3: 920-940
Google Scholar - 61. Verpooten D., Ma Y., Hou S., Yan Z., He B.: Control of TANKbindingkinase 1-mediated signaling by the g134.5 protein of herpessimplex virus 1. J. Biol. Chem., 2009; 284: 1097-1105
Google Scholar - 62. Wen H.J., Yang Z., Zhou Y., Wood C.: Enhancement of autophagyduring lytic replication by the Kaposi’s sarcoma-associated herpesvirusreplication and transcription activator. J. Virol., 2010; 84:7448-7458
Google Scholar - 63. Wirawan E., Vanden Berghe T., Lippens S., Agostinis P., VandenabeeleP.: Autophagy: for better or for worse. Cell Res., 2012; 22: 43-61
Google Scholar - 64. Yordy B., Iijima N., Huttner A., Leib D., Iwasaki A.: A neuronspecificrole for autophagy in antiviral defense against herpes simplexvirus. Cell Host Microbe, 2012; 12: 334-345
Google Scholar - 65. Yordy B., Iwasaki A.: Cell type-dependent requirement of autophagyin HSV-1 antiviral defense. Autophagy, 2013; 9: 236-238
Google Scholar - 66. Zhang M., Covar J., Zhang N.Y., Chen W., Marshall B., Mo J.,Atherton S.S.: Virus spread and immune response following anteriorchamber inoculation of HSV-1 lacking the Beclin-binding domain(BBD). J. Neuroimmunol., 2013; 260: 82-91
Google Scholar - 67. Zhang Y., Wu Y., Cheng Y., Zhao Z., Tashiro S., Onodera S., IkejimaT.: Fas-mediated autophagy requires JNK activation in HeLa cells.Biochem. Biophys. Res. Commun., 2008; 377: 1205-1210
Google Scholar