Mechanisms of HIV Tat regulation of macrophage gene expression in neuroAIDS
Mechanisms of HIV Tat regulation of macrophage gene expression in neuroAIDS
批准号:
8824971
负责人:
Joan Weinberger Berman
金额:
$11.61万
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-04-01 至 2015-08-31
关键词:
AddressAdenovirusesAmino AcidsApoptosisBindingBinding SitesBiological AssayBrainCCL2 geneCCR5 geneCXCR4 geneCell LineCellsCentral Nervous System DiseasesChIP-seqChemotactic FactorsChronicComplexConsequences of HIVCysteineDNADNA BindingDataDevelopmentFunctional disorderGene ExpressionGene Expression RegulationGenesGenomeHIVHIV InfectionsHIV tat ProteinHIV-associated neurocognitive disorderHumanInfectionInflammationInterventionLeadLifeLife Cycle StagesLuciferasesMediatingMediator of activation proteinMicrogliaModelingMolecularMutationNeurocognitive DeficitNeuronsPathogenesisPathway AnalysisPeripheralPopulationProtein BindingProteinsRecruitment ActivityRegulationRoleSiteSubfamily lentivirinaeT-LymphocyteTherapeuticTherapeutic InterventionTissuesTrans-ActivatorsViralViral ProteinsVirusVirus Diseasesantiretroviral therapybrain tissuechemokinecytokineinnovationmacrophagemonocyteneuroAIDSneuroinflammationneurotoxicpromoterpublic health relevance
中文摘要
描述(申请人提供):HIV在外周感染后2周内进入中枢神经系统,尽管CART,病毒仍然存在。中枢神经系统艾滋病毒感染导致艾滋病毒相关神经认知障碍,或手,在超过50%的受感染人口。HAND至少在一定程度上是由持续的神经炎症和导致中枢神经系统损伤的低水平病毒持续存在所介导的。病毒进入大脑的一个主要机制是艾滋病毒感染的单核细胞跨越血脑屏障的轮回。这些单核细胞在中枢神经系统实质中分化为巨噬细胞。他们阐述了神经毒性和趋化因子,这些因子将更多的感染和未感染的单核细胞招募到中枢神经系统,以及感染血管周围巨噬细胞和小胶质细胞的病毒。因此,慢性炎症在中枢神经系统内持续存在。神经艾滋病的特征是神经元的损伤和丢失,但艾滋病毒不会感染神经元。因此,神经元功能和损伤的改变一定是由于HIV感染的间接影响,主要是巨噬细胞和小胶质细胞作为感染的主要目标,包括神经毒性病毒蛋白TAT的形成。TAT是病毒的反式激活剂,尽管有CART,它仍然会产生。TAT还与宿主基因相互作用,改变它们的表达。我们和其他人证明了TAT诱导巨噬细胞分泌细胞因子,包括CCL2,介导神经炎症,并在手部HIV感染者的中枢神经系统中高表达。TAT还可增加巨噬细胞表面CCR5和CXCR4的表达。因此,我们假设HIV Tat蛋白与人类巨噬细胞宿主基因相互作用,改变其表达,导致巨噬细胞功能障碍、神经炎症、中枢神经系统损伤和随后的手发育。为了解决这一假设,我们将使用我们从CHIP-SEQ分析中获得的数据,这些数据确定了巨噬细胞宿主基因组中的特定TAT结合位点,并从这67个位点的独创性路径分析(IPA)中获得了数据。我们提出了三个目标。目的1验证和鉴定THP-1-TAT-FLAG细胞系中CHIP-SEQ鉴定的基因。目的2是为了证实AIM 1中确认的基因在感染了含有TAT-Flag的腺病毒的原代人巨噬细胞和感染了HIV的人的巨噬细胞中的表达的变化,与未感染的巨噬细胞相比,以及在有手和没有手的HIV感染者的脑组织切片中。目的3研究TAT的氨基酸对宿主基因表达的调节作用。我们的方法将提供有关TAT如何改变宿主基因表达以及这些失调基因在HAND发病机制中的作用的新信息。预计这些数据将表明治疗干预的创新战略,以限制艾滋病毒中枢神经系统感染的后果。
英文摘要
DESCRIPTION (provided by applicant): HIV enters the CNS within 2 weeks after peripheral infection and viral presence persists despite cART. CNS HIV infection results in HIV Associated Neurocognitive Disorders, or HAND, in greater than 50% of the infected population. HAND is mediated, at least in part, by ongoing neuroinflammation and low level viral persistence that causes CNS damage. A major mechanism by which virus enters the brain is by the transmigration of HIV-infected monocytes across the BBB. These monocytes differentiate into macrophages in the CNS parenchyma. They elaborate neurotoxic and chemotactic factors that recruit additional infected and uninfected monocytes into the CNS, as well as virus that infects perivascular macrophages and microglia. Thus, chronic inflammation persists within the CNS. NeuroAIDS is characterized by neuronal damage and loss, but HIV does not infect neurons. Therefore, the altered function and damage seen in neurons must be due to indirect effects of HIV infection, primarily of macrophages and microglia as the major targets of infection, including the elaboration of the neurotoxic viral protein, tat. Tat is the transactivator of the virus and isstill produced despite cART. Tat also interacts with host genes to alter their expression. We and others demonstrated that tat induced cytokine secretion in macrophages, including CCL2, that mediates neuroinflammation and is highly expressed in the CNS of HIV infected people with HAND. Tat also increased the expression of CCR5 and CXCR4 on macrophages. Thus, we hypothesize that the HIV tat protein interacts with human macrophage host genes, altering their expression, resulting in macrophage dysfunction, neuroinflammation, CNS damage and subsequent development of HAND. To address this hypothesis we will use data we obtained from ChIP-seq assays that identified specific tat binding sites in the macrophage host genome and from Ingenuity Pathway Analysis (IPA) of these 67 sites. We propose three Aims. Aim 1 is to confirm and characterize the genes identified by ChIP-seq in THP-1-Tat-Flag cell lines. Aim 2 is to demonstrate alterations in expression of the genes confirmed in AIM 1 in primary human macrophages infected with adenovirus containing Tat-Flag, and with HIV, as compared to uninfected macrophages, and in tissue sections of brains obtained from HIV infected people with and without HAND. Aim 3 is to demonstrate the amino acids of tat that mediate host gene expression. Our approaches will provide new information about how tat alters host gene expression and the contribution of these dysregulated genes to the pathogenesis of HAND. It is anticipated that these data will indicate innovative strategies for therapeutic intervention to limt the consequences of HIV CNS infection.
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