HIV-1: microRNA interactions
HIV-1: microRNA interactions
批准号:
8607525
负责人:
BRYAN R. CULLEN
金额:
$38.07万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-07-01 至 2015-02-28
关键词:
AffectAffinityApplications GrantsBindingBinding SitesBiological AssayCD4 Positive T LymphocytesCell physiologyCellsCocaineCocaine AbuseComplexDevelopmentDisease ProgressionDrug abuseGene ExpressionGenomeGrantHIV-1HealthHerpesviridaeHumanImmunoprecipitationIndividualInfectionLeadLightMalignant NeoplasmsMessenger RNAMicroRNAsMolecular ProfilingMonoclonal AntibodiesMutatePathogenesisPatientsPatternPharmaceutical PreparationsPlayPolyomavirusPoriferaPositioning AttributeProcessProductionRNARNA InterferenceRNA-Induced Silencing ComplexRecoveryReport (account)ResearchRibonucleosidesSiteSmall Interfering RNAT-LymphocyteTechnologyTestingTranslationsViralVirionVirusVirus DiseasesVirus ReplicationWestern Blottingabstractingcell growth regulationcrosslinkdeep sequencingin vivointerestknock-downmRNA Expressionmacrophagenon-drugnovel strategiesparticleprograms
中文摘要
描述(由申请人提供):摘要MicroRNAs (miRNAs)是最近发现的一类小的,~22-nt的调控rna,目前已知在细胞分化和发育的调控中起关键作用。miRNA表达的错误调控可能导致疾病进展,特别是在癌症的情况下,最近的证据也表明miRNA在病毒复制和发病机制方面具有重要作用。一些病毒,包括许多疱疹病毒和多瘤病毒,现在已知表达一系列病毒编码的miRNA,并且病毒感染也已知以可能促进病毒复制的方式扰乱细胞miRNA的表达。尽管人们对HIV-1如何与细胞miRNA机制相互作用知之甚少,但很明显,HIV-1感染可以改变细胞miRNA表达模式,并且已经提出单个细胞miRNA促进或抑制HIV-1复制。HIV-1也可能编码一个或多个mirna,尽管这一直存在争议。在本次拨款申请中,我们建议使用微阵列和深度测序技术系统地分析HIV-1感染对原代CD4+ T细胞和巨噬细胞中miRNA表达模式的影响。然后,我们将使用交联免疫沉淀(CLIP)技术鉴定hiv -1感染细胞中表达的所有mRNA上的所有RNA诱导沉默复合物(RISC)结合位点,使用argonaute特异性单克隆抗体恢复交联mRNA:RISC复合物,然后我们将通过深度测序对其进行分析。被HIV-1感染细胞中表达的miRNA靶向的细胞或HIV-1 mRNA随后将进行突变分析,并结合功能测定,以确定调节HIV-1复制效率的mRNA:miRNA相互作用。最后,我们将确定药物特异性可卡因滥用是否会改变未感染和HIV-1感染的CD4+ T细胞和巨噬细胞中的miRNA表达谱,我们将检查药物诱导的miRNA表达谱的任何变化是否可以解释从吸毒患者分离的细胞中报道的HIV-1复制增强。总之,这一分析将导致对HIV-1感染如何改变miRNA表达谱的全面理解,并将提供这些变化如何调节HIV-1复制效率的机制理解。
英文摘要
DESCRIPTION (provided by applicant): Abstract MicroRNAs (miRNAs) are a recently discovered class of small, ~22-nt regulatory RNAs that are now known to play key roles in the regulation of cellular differentiation and development. Misregulation of miRNA expression can contribute to disease progression, particularly in the case of cancer, and recent evidence also implicates miRNAs in aspects of viral replication and pathogenesis. Several viruses, including numerous herpesviruses and polyomavirus species, are now known to express a range of virally-encoded miRNAs, and virus infection is also known to perturb cellular miRNA expression in ways that may facilitate virus replication. Although relatively little is know about how HIV-1 interacts with the cellular miRNA machinery, it appears clear that HIV-1 infection can modify the pattern of cellular miRNA expression, and individual cellular miRNAs have been proposed to either facilitate or inhibit HIV-1 replication. It also remains possible that HIV-1 may encode one or more miRNAs, although this has been controversial. In this grant application, we propose to systematically analyze the effect of HIV-1 infection on the pattern of miRNA expression in primary CD4+ T cells and macrophages using microarray and deep sequencing technologies. We will then use cross-linking immunoprecipitation (CLIP) technologies to identify all the RNA induced silencing complex (RISC) binding sites on all the mRNAs expressed in HIV-1-infected cells by using an Argonaute-specific monoclonal antibody to recover cross-linked mRNA:RISC complexes, which we will then analyze by deep sequencing. Cellular or HIV- 1 mRNAs that are targeted by miRNAs expressed in HIV-1-infected cells will then be subjected to mutational analysis, combined with functional assays, to identify mRNA:miRNA interactions that modulate the efficiency of HIV-1 replication. Finally, we will determine whether drug-specifically cocaine-abuse modifies the miRNA expression profile in uninfected and HIV-1-infected CD4+ T cells and macrophages and we will examine whether any drug-induced changes in the miRNA profile can account for the reported enhancement in HIV-1 replication in cells isolated from drug-abusing patients. Together, this analysis will lead to a comprehensive understanding of how HIV-1 infection modifies the miRNA expression profile and will provide a mechanistic understanding of how these changes regulate the efficiency of HIV-1 replication.
期刊论文(3)
专著(0)
科研奖励(0)
会议论文
DOI:
10.1016/j.molcel.2011.06.007
发表时间:
2011-08-05
期刊:
Molecular cell
影响因子:
16
作者:
[Mukherjee N, Corcoran DL, Nusbaum JD, Reid DW, Georgiev S, Hafner M, Ascano M Jr, Tuschl T, Ohler U, Keene JD]
通讯作者:
Keene JD
DOI:
10.1186/gb-2011-12-8-r79
发表时间:
2011-08-18
期刊:
Genome biology
影响因子:
12.3
作者:
[Corcoran DL, Georgiev S, Mukherjee N, Gottwein E, Skalsky RL, Keene JD, Ohler U]
通讯作者:
Ohler U
Reversal of epigenetic silencing rescues integrase-deficient HIV-1 replication
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项目类别:
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资助金额:$23.78万
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财政年份:2021
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依托单位:
Reversal of epigenetic silencing rescues integrase-deficient HIV-1 replication
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Epitranscriptomic modification of HIV-1 transcripts: Effects of drugs of abuse
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Reconstitution of a protective antiviral RNAi response in somatic human cells
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Role and mechanism of action of gamma herpesvirus microRNAs
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资助金额:$39.25万
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依托单位:
HIV-1: microRNA interactions
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批准号:8233429
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资助金额:$38.07万
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财政年份:2010
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依托单位:
Influenza virus small RNAs
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依托单位:
Function of alpha herpesvirus microRNAs
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资助金额:$39.25万
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HIV-1: microRNA interactions
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Influenza virus small RNAs
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资助金额:$2.08万
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依托单位:
MONKEY RHADINOVIRUS, A MONKEY MODEL FOR HUMAN HERPESVIRUS 8
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依托单位:
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依托单位:
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