NF Kappa Beta and the Regulation of HIV Latency
NF Kappa Beta and the Regulation of HIV Latency
批准号:
7899482
负责人:
Warner C. Greene
金额:
$29.28万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-03-15 至 2010-01-31
关键词:
AblationAcquired Immunodeficiency SyndromeAdverse effectsAllelesAnimal ModelAntigensAntiviral AgentsAntiviral TherapyBindingBiochemicalBiologicalBiological AssayBiological ModelsCD4 Positive T LymphocytesCell FractionCell modelCellsChimera organismChromatinChromatin StructureChronicClinicalCollaborationsComplexCytotoxic T-LymphocytesDeacetylationDetectionDevelopmentEnhancersExcisionExperimental ModelsFDA approvedFamilyFamily memberFamily suidaeFrequenciesGene ExpressionGene TargetingGenesGenetic TranscriptionGoalsHIVHIV EnhancerHIV InfectionsHIV-1Half-LifeHistone AcetylationHistone DeacetylaseHistone Deacetylase InhibitorHumanImmuneImmune responseInfectionInflammatory ResponseIntegration Host FactorsInterleukin-6InterventionLaboratoriesLeadLifeLigandsMacacaMacaca mulattaMaintenanceMediatingMemoryMitogensModelingMolecularMonkeysMultienzyme ComplexesNatureNuclearNuclear ExportNuclear ImportPatientsPeptidesPharmaceutical PreparationsPhasePhenylbutyratesPhorbol EstersPhysiologicalPlayPolymerasePost-Translational Protein ProcessingPrimatesProblem SolvingProductionPropertyProtease InhibitorProteinsProvirusesProximal Enhancer ElementRNA Polymerase IIRNA-Directed DNA PolymeraseReactionRegulationRegulatory PathwayRelative (related person)RestReverse TranscriptionRoleSIVSignal TransductionSpleenT memory cellT-Cell ActivationT-LymphocyteTailTestingThymus GlandTransactivationTranscription CoactivatorTranscriptional ActivationViralViral GenesViral Load resultVirusVirus DiseasesVirus LatencyWorkantiretroviral therapybasecellular targetingchromatin immunoprecipitationcombatcyclin T1cytokinefitnesshuman CREB1 proteinin vivoin vivo Modelinsightinterestlatent infectionlymph nodesmembermemory CD4 T lymphocyteperipheral bloodprostratinpurgerecombinant virusresponsesimian human immunodeficiency virussmall moleculetranscription factorverdin photosensitizer
中文摘要
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英文摘要
The eradication of HIV and cure of infected patients has failed chiefly because HIV establishes a latent form of infection
in resting CD4 memory T-cells. Although a total of only 106-107 latently infected ceils may be present in infected
patients, the long lived nature of these cells (T1/2 of 44 months) predicts that -70 years of antiviral therapy will be
required for ablation of this reservoir. A different strategy is clearly required to attack this clinical problem. One
approach could involve purging of the virus from these cells by stimulating transcriptional activation of the HIV LTR.
We hypothesize that the NF-_B/Rel family of transcription factors plays a pivotal role as physiological antagonists of
HIV latency. We propose to conduct a comprehensive set of studies exploring the molecular basis for HIV latency and
the role played by NF-_cB/Rel proteins. These studies will exploit a new cellular model of HIV latency, J-Lat cells, bona
fide latently infected CD4 memory T ceils from infected patients, and a primate model of lentiviral latency. These studies
will involve close and active collaborations with Dr. Eric Verdin (Project 1) Dr. Matija Peterlin (Project 3) and Drs. Tom
North and Paul Luciw (Core B) which together comprise our PPG team. In Specific Aim 1, we will determine which
members of the NF-KB/Rel family of transcription factors function as the most potent activators of latent HIV and will
explore whether new insights into the regulation of NF-KB/Rel action can be exploited to reverse HIV latency. In
Specific Aim 2, we will assess the molecular basis of viral latency using chromatin immunoprecipitation (CHIP) assays
to identify cellular factors that bind to the HIV LTR KB enhancers under the opposing conditions of viral latency and
active viral replication. In Specific Aim 3, we will focus on the intriguing interplay of NF-KB with PTEFb, the cellular
enzyme complex hijacked by HIV Tat to promote high level viral gene expression. These studies will dissect the
molecular basis for NF-KB assembly with PTEFb and explore whether the initial production of Tat depends on this
action of NF-KB. In Specific Aim 4, we will advance our studies of HIV latency and its potential antagonism by NF-KB
into an in vivo model system. We will investigate whether deletion of the _cB enhancers in the HIV LTR of SHIV viruses
enhances latent infection of rhesus memory CD4 T-cells and conversely whether substitution of a constitutively active T
cell enhancer impairs latency. Finally, we will explore whether agents known to activate and sustain nuclear NF-KB
action (prostratin and phenylbutyrate) decrease the frequency of cells latently infected with these SHIVs. These studies
promise to advance our understanding of the molecular, biochemical, and cellular basis for HIV latency, which in turn
may lead to new rational approaches to solving this difficult clinical problem.
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HIV-Induced CD4 T-Cell Depletion: An Innate Host Defense Gone Awry?
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依托单位:
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Viral and Host Factors Promoting Male-to-Female Transmission of HIV
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依托单位:
Effects of Menopause on T-cell Immunity in HIV-Infected Women
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依托单位:
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依托单位:
Regulation and Action of APOBEC3G
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批准号:7005092
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海外基金