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Varicella-zoster Virus 2010 ed. [Kõva köide]

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  • Formaat: Hardback, 378 pages, kõrgus x laius: 235x155 mm, kaal: 919 g, XIV, 378 p., 1 Hardback
  • Sari: Current Topics in Microbiology and Immunology 342
  • Ilmumisaeg: 30-Aug-2010
  • Kirjastus: Springer-Verlag Berlin and Heidelberg GmbH & Co. K
  • ISBN-10: 3642127274
  • ISBN-13: 9783642127274
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  • Formaat: Hardback, 378 pages, kõrgus x laius: 235x155 mm, kaal: 919 g, XIV, 378 p., 1 Hardback
  • Sari: Current Topics in Microbiology and Immunology 342
  • Ilmumisaeg: 30-Aug-2010
  • Kirjastus: Springer-Verlag Berlin and Heidelberg GmbH & Co. K
  • ISBN-10: 3642127274
  • ISBN-13: 9783642127274
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Varicella-zostervirus(VZV)isamedicallyimportanthumanherpesvirus,belo- ingtothesubfamilyAlphaherpesviridae. Thecapacitytopersistinsensoryneurons isade ningcharacteristicoftheAlphaherpesviridaesubgroupwhichalsoincludes herpessimplexvirus1and2;likeVZV,simianvaricellavirus(SVV),pseudorabies virus-1(PRV-1),andequineherpesvirus-1(EHV-1)belongtotheVaricellovirus genus. ThebasicelementsoftheinfectiouscycleofVZVinthehumanhostarethat infectionofthena vehostresultsinvaricella,commonlyknownaschickenpox, latencyisestablishedinsensoryganglia,andreactivationcauseszosteror"sh- gles. "Therelationshipbetweenthecausative agentofvaricellaandzoster was demonstratedmorethan100yearsagowhenchildreninoculatedwithmaterialfrom zosterlesionswereshowntodevelopvaricella. Thelocalizeddistributionofthe zosterrashwasalsorecognizedasdemarcatingthedematomeinnervatedbyaxons fromneuronsineachofthesensoryganglia. Earlyelectronmicroscopystudies showedthatvirusparticleswerepresentinhighconcentrationsinthevesicular ?uidfrombothvaricellaandzosterlesions,andVZVwasamongthe rstviruses propagatedinvitrobyJohnEndersandThomasWeller. Theintroductionofim- nosuppressivetherapiesformalignancyledtoobservationssuggestingtheneed forcell-mediatedimmunityinthehostresponsetovaricellaanditsroleinma- tainingVZVlatency. Fortunately,earlystudiesofthemolecularvirologyofVZV revealedthatitwasinhibitedbyinterferencewiththethymidinekinasegene,and thelife-threateningandoftenfatalVZVinfectionsexperiencedbythesepatients becametreatablewithantiviraldrugs. Subsequently,thecapacitytogrowVZVin tissueculturewasexploitedtocreatealiveattenuatedVZVvaccinebyMichiaki Tashihaki. Whilenowtakenforgranted,theseearlyinsightsaboutVZVandits characteristicsasahumanpathogenaswellasthedevelopmentofeffectivean- viral drugs and vaccines occurred over many decades. Importantly, these early observationssetthestagefortheremarkableprogressthathasbeenmadeinour understandingofthemolecularbiologyofVZV,thesubtletiesofitstropismfor differentiatedhumancells,includinglymphocytesaswellasskinandneurons,and themechanismsbywhichthevirusachievesanequilibriumwiththehostsothatit persistsnotjustintheindividualbutinthehumanpopulation. v vi Preface Thepurposeofthisvolumeistoreviewkeyareasofprogressinthe eldofVZV research,aswellasworkontherelatedSVV,writtenbythosewhohavecontributed manyofthenew? ndingsthathaveenrichedourknowledgeoftheuniquech- acteristicsofthisubiquitoushumanpathogen. AlthoughtheVZVgenomeisthe smallestamongthehumanherpesviruses,therapidlyacceleratingpaceofdiscovery about VZV and VZV-host interactions re ected in these reviews promises to continueasnewtoolsareavailableandnewhypothesesaregeneratedtoexplain howVZVhascreatedandmaintaineditsnicheinthehuman"virome"Therelationshipbetween thecausative agentofvaricellaandzoster was demonstratedmorethan100yearsagowhenchildreninoculatedwithmaterialfrom zosterlesionswereshowntodevelopvaricella. Thelocalizeddistributionofthe zosterrashwasalsorecognizedasdemarcatingthedematomeinnervatedbyaxons fromneuronsineachofthesensoryganglia. Earlyelectronmicroscopystudies showedthatvirusparticleswerepresentinhighconcentrationsinthevesicular ?uidfrombothvaricellaandzosterlesions,andVZVwasamongthe rstviruses propagatedinvitrobyJohnEndersandThomasWeller. Theintroductionofim- nosuppressivetherapiesformalignancyledtoobservationssuggestingtheneed forcell-mediatedimmunityinthehostresponsetovaricellaanditsroleinma- tainingVZVlatency. Fortunately,earlystudiesofthemolecularvirologyofVZV revealedthatitwasinhibitedbyinterferencewiththethymidinekinasegene,and thelife-threateningandoftenfatalVZVinfectionsexperiencedbythesepatients becametreatablewithantiviraldrugs. Subsequently,thecapacitytogrowVZVin tissueculturewasexploitedtocreatealiveattenuatedVZVvaccinebyMichiaki Tashihaki. Whilenowtakenforgranted,theseearlyinsightsaboutVZVandits characteristicsasahumanpathogenaswellasthedevelopmentofeffectivean- viral drugs and vaccines occurred over many decades. Importantly, these early observationssetthestagefortheremarkableprogressthathasbeenmadeinour understandingofthemolecularbiologyofVZV,thesubtletiesofitstropismfor differentiatedhumancells,includinglymphocytesaswellasskinandneurons,and themechanismsbywhichthevirusachievesanequilibriumwiththehostsothatit persistsnotjustintheindividualbutinthehumanpopulation. v vi Preface Thepurposeofthisvolumeistoreviewkeyareasofprogressinthe eldofVZV research,aswellasworkontherelatedSVV,writtenbythosewhohavecontributed manyofthenew ndingsthathaveenrichedourknowledgeoftheuniquech- acteristicsofthisubiquitoushumanpathogen. AlthoughtheVZVgenomeisthe smallestamongthehumanherpesviruses,therapidlyacceleratingpaceofdiscovery about VZV and VZV-host interactions re ected in these reviews promises to continueasnewtoolsareavailableandnewhypothesesaregeneratedtoexplain howVZVhascreatedandmaintaineditsnicheinthehuman"virome"sos- cessfully. Further improvements in the clinical management of VZV infection shouldemergeinparallelwithbetterinsightsintoVZVmolecularvirologyand pathogenesis. Stanford,CA,June,2010 AllisonAbendroth AnnM. Arvin JenniferF. Moffat Contents TheVaricella-ZosterVirusGenome ...1 JeffreyI. Cohen VZVMolecularEpidemiology ...15 JudithBreuer RolesofCellularTranscriptionFactorsinVZVReplication ...43 WilliamT. Ruyechan EffectsofVaricella-ZosterVirusonCellCycleRegulatoryPathways ...67 JenniferF. MoffatandRebeccaJ. Greenblatt Varicella-ZosterVirusOpenReadingFrame66ProteinKinase andItsRelationshiptoAlphaherpesvirusUS3Kinases ...79 AngelaErazoandPaulR. Kinchington VZVORF47SerineProteinKinaseandItsViralSubstrates ...99 TeriK. KenyonandCharlesGrose OverviewofVaricella-ZosterVirusGlycoproteinsgC,gHandgL ...113 CharlesGrose,JohnE. Carpenter,WallenJackson,andKarenM. Duus AnalysisoftheFunctionsofGlycoproteinsEandIandTheirPromoters DuringVZVReplicationInVitroandinSkinandT-CellXenografts intheSCIDMouseModelofVZVPathogenesis ...129 AnnM. Arvin,StefanOliver,MikeReichelt,JenniferF. Moffat, MarvinSommer,LeighZerboni,andBarbaraBerarducci Varicella-ZosterVirusGlycoproteinM ...147 YasukoMoriandTomohikoSadaoka vii viii Contents VaricellaZosterVirusImmuneEvasionStrategies ...155 AllisonAbendroth,PaulR. Kinchington,andBarrySlobedman VZVInfectionofKeratinocytes:ProductionofCell-FreeInfectious VirionsInVivo ...173 MichaelD. GershonandAnneA. Gershon Varicella-ZosterVirusTCellTropismandthePathogenesis ofSkinInfection ...189 AnnM. Arvin,JenniferF. Moffat,MarvinSommer,StefanOliver, XibingChe,SusanVleck,LeighZerboni,andChia-ChiKu ExperimentalModelstoStudyVaricella-ZosterVirusInfection ofNeurons ...211 MeganSteain,BarrySlobedman,andAllisonAbendroth MolecularCharacterizationofVaricellaZosterVirusinLatently InfectedHumanGanglia:PhysicalStateandAbundanceofVZV DNA,QuantitationofViralTranscriptsandDetection ofVZV-Speci cProteins ...229 YevgeniyAzarkh,DonGilden,andRandallJ. Cohrs NeurologicalDiseaseProducedbyVaricellaZosterVirusReactivation WithoutRash ...2 43 DonGilden,RandallJ. Cohrs,RaviMahalingam,andMariaA. Nagel Varicella-ZosterVirusNeurotropisminSCIDMouse-Human DorsalRootGangliaXenografts ...255 L. Zerboni,M. Reichelt,andA. Arvin RodentModelsofVaricella-ZosterVirusNeurotropism ...277 JeffreyI. Cohen SimianVaricellaVirus:MolecularVirology ...291 WayneL. Gray SimianVaricellaVirusPathogenesis ...309 RaviMahalingam,IlhemMessaoudi,andDonGilden Varicella-ZosterVirusVaccine:MolecularGenetics ...323 D. ScottSchmid VZVTCell-MediatedImmunity ...341 AdrianaWeinbergandMyronJ. Levin Contents ix PerspectivesonVaccinesAgainstVaricella-ZosterVirusInfections ...359 AnneA. GershonandMichaelD. Gershon Index ...373 . Contributors Allison Abendroth Department of Infectious Diseases and Immunology, UniversityofSydney,BlackburnBuilding,Room601,Camperdown,NSW 2006, Australia and Centre for Virus Research, Westmead Millennium Institute,Westmead,NSW2145,Australia,allison. abendroth@sydney. edu. au AnnM. Arvin StanfordUniversitySchoolofMedicine,G311,Stanford,CA 94305,USA,aarvin@stanford.
The Varicella-Zoster Virus Genome
1(14)
Jeffrey I. Cohen
VZV Molecular Epidemiology
15(28)
Judith Breuer
Roles of Cellular Transcription Factors in VZV Replication
43(24)
William T. Ruyechan
Effects of Varicella-Zoster Virus on Cell Cycle Regulatory Pathways
67(12)
Jennifer F. Moffat
Rebecca J. Greenblatt
Varicella-Zoster Virus Open Reading Frame 66 Protein Kinase and Its Relationship to Alphaherpesvirus US3 Kinases
79(20)
Angela Erazo
Paul R. Kinchington
VZV ORF47 Serine Protein Kinase and Its Viral Substrates
99(14)
Teri K. Kenyon
Charles Grose
Overview of Varicella-Zoster Virus Glycoproteins gC, gH and gL
113(16)
Charles Grose
John E. Carpenter
Wallen Jackson
Karen M. Duus
Analysis of the Functions of Glycoproteins E and I and Their Promoters During VZV Replication In Vitro and in Skin and T-Cell Xenografts in the SCID Mouse Model of VZV Pathogenesis
129(18)
Ann M. Arvin
Stefan Oliver
Mike Reichelt
Jennifer F. Moffat
Marvin Sommer
Leigh Zerboni
Barbara Berarducci
Varicella-Zoster Virus Glycoprotein M
147(8)
Yasuko Mori
Tomohiko Sadaoka
Varicella Zoster Virus Immune Evasion Strategies
155(18)
Allison Abendroth
Paul R. Kinchington
Barry Slobedman
VZV Infection of Keratinocytes: Production of Cell-Free Infectious Virions in Vivo
173(16)
Michael D. Gershon
Anne A. Gershon
Varicella-Zoster Virus T Cell Tropism and the Pathogenesis of Skin Infection
189(22)
Ann M. Arvin
Jennifer F. Moffat
Marvin Sommer
Stefan Oliver
Ximing Chen
Susan Vleck
Leigh Zerboni
Chia-Chi Ku
Experimental Models to Study Varicella-Zoster Virus Infection of Neurons
211(18)
Megan Steain
Barry Slobedman
Allison Abendroth
Molecular Characterization of Varicella Zoster Virus in Latently Infected Human Ganglia: Physical State and Abundance of VZV DNA, Quantitation of Viral Transcripts and Detection of VZV-Specific Proteins
229(14)
Yevgeniy Azarkh
Don Gilden
Randall J. Cohrs
Neurological Disease Produced by Varicella Zoster Virus Reactivation Without Rash
243(12)
Don Gilden
Randall J. Cohrs
Ravi Mahalingam
Maria A. Nagel
Varicella-Zoster Virus Neurotropism in SCID Mouse-Human Dorsal Root Ganglia Xenografts
255(22)
L. Zerboni
M. Reichelt
A. Arvin
Rodent Models of Varicella-Zoster Virus Neurotropism
277(14)
Jeffrey I. Cohen
Simian Varicella Virus: Molecular Virology
291(18)
Wayne L. Gray
Simian Varicella Virus Pathogenesis
309(14)
Ravi Mahalingam
Ilhem Messaoudi
Don Gilden
Varicella-Zoster Virus Vaccine: Molecular Genetics
323(18)
D. Scott Schmid
VZV T Cell-Mediated Immunity
341(18)
Adriana Weinberg
Myron J. Levin
Perspectives on Vaccines Against Varicella-Zoster Virus Infections
359(14)
Anne A. Gershon
Michael D. Gershon
Index 373