Identification Novel Host Factors Regulating HIV Latency
Identification Novel Host Factors Regulating HIV Latency
批准号:
8326773
负责人:
Warner C. Greene
金额:
$42.36万
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-07-08 至 2016-06-30
关键词:
1-Phosphatidylinositol 3-KinaseAcetyltransferaseAchievementAlgorithmsAntiviral AgentsAreaBindingBiologicalBiological AssayCCCTC-binding factorCD4 Positive T LymphocytesCandidate Disease GeneCell divisionCell modelCellsCessation of lifeChromatinChromatin ModelingCollaborationsComplexCoupledDNADNA Polymerase IIDevelopmentDisease remissionEnzymesGene ExpressionGene TargetingGenesGoalsHIVHIV-1Hela CellsHerpesviridaeHistonesHumanInfectionInstitutesInstructionIntegration Host FactorsLaboratory ResearchLeadLymphoidLymphoid TissueMessenger RNAMicroRNAsMolecularNaturePCAF genePatientsPersonal CommunicationPharmaceutical PreparationsPharmacologyPhosphotransferasesProcessPropertyProteinsProvirusesReporterResearchRestRoleScreening procedureShapesSmall Interfering RNAT memory cellT-LymphocyteTranscriptional ActivationTranslatingViralVirusVirus LatencyZinc Fingersbasecellular targetingchromatin assembly factor Iclinical careclinical remissioncollaboratoryeffective therapygene functiongenome-widehigh throughput screeninginhibitor/antagonistinsightinterestmRNA Cleavage and Polyadenylation Factorsmemory CD4 T lymphocytemonocytenovelnovel strategiesoverexpressionpreventpurgesmall hairpin RNAsmall moleculesuccess
中文摘要
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英文摘要
Quiescent memory CD4 T cells harboring integrated, actively repressed HIV proviruses currently form a
formidable barrier to viral eradication. This latent reservoir could be attacked by activating proviral gene
expression thereby sensifizing the virus to anfiretroviral therapy . For success, this strategy must both
prevent viral spread and result in the death of all latenfiy infected cells without producing a toxic state of
generalized cellular activation. Currenfiy, no effective therapies for HIV latency exist. We hypothesize that a
more complete understanding ofthe molecular underpinnings of HIV latency¿riotably, the full range
of the host's regulatory factors that promote and antagonize latency¿will facilitate the development
of effective therapies. In Aim 1, we will examine five novel candidate HIV repressors identified by genome
wide siRNA screening of HIV-infected HeLa cells. These candidates have biological properties consistent
with a role in latency and are expressed in lymphoid fissues. Expression of these candidate genes will be
analyzed in biologically relevant cells and their function assessed by lentiviral shRNA knockdown. In Aim 2,
we will screen a CD4 T-cell model of HIV latency for microRNAs (miRs) that promote viral latency by
impairing the expression of cellular activators. We will validate mlR acfion using antagomirs in latently
infected primary CD4 T-cells. In Aim 3, we will use bioinformafic and transcriptional profiling approaches to
identify the host gene products that are suppressed by these miRs. Using this dual experimental approach,
we will identify cellular factors that naturally promote and antagonize HIV latency. Where appropriate,
mechanism-of-acfion studies will be performed. Idenfified targets will be prioritized, based on the robustness
of their activity and overall "drugability," for entry into small-molecule high-throughput screening assays and
primary and secondary screening assays will be developed. These proposed studies could identify small
molecules that either inhibit the most interesfing cellular repressors or activate the most compelling mlRNAregulated
HIV activators. These studies fully support the goal of the Collaboratory¿to identify combinafions
of nontoxic small molecules that can eradicate the virus or produce a funcfional cure (drug-free remission).
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NF Kappa Beta and the Regulation of HIV Latency
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依托单位:
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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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Regulation and Action of APOBEC3G
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依托单位:
海外基金