Transcriptional regulation in chronic renal disease pathogenesis
Transcriptional regulation in chronic renal disease pathogenesis
批准号:
7233263
负责人:
Leslie A Bruggeman
金额:
$22.5万
依托单位国家:
美国
项目类别:
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-08-01 至 2009-04-30
关键词:
AIDS/HIV problemAdaptor Signaling ProteinApoptosisAttenuatedC-terminalCYC 202Cell Cycle ProteinsCell Cycle RegulationCellsChemotactic FactorsChronic Kidney FailureCyclin D1CyclinsDataDefectDiseaseDisease ProgressionDissociationEpithelialEpithelial Cell ProliferationEpithelial CellsEpitheliumEvaluationFibrosisFundingGene TargetingHIVHIV InfectionsHIV-1HumanI Kappa B-AlphaImmuneIn VitroInfectionInflammationInflammation MediatorsInflammatoryInflammatory ResponseInjuryKidneyKidney DiseasesLeukocytesMediatingMembraneMigration AssayModelingMolecular ConformationNF-kappa BPathogenesisPathologicPatientsPhenotypePhosphorylationPhosphotransferasesProcessReceptor SignalingRecruitment ActivityReportingResearch PersonnelRoleScreening procedureSignal PathwaySignal TransductionSignal Transduction PathwayStimulusTNF geneTestingTherapeutic AgentsTranscriptional RegulationTransgenic OrganismsTumor Necrosis Factor ReceptorViralViral ProteinsViruschemokinecytokinein vivoinhibitor/antagonistkidney cellmouse modelnef Proteinnovelnovel therapeuticsprogramsreceptorresearch studyresponsesmall moleculetherapy developmenttranscription factor
中文摘要
描述(由申请人提供):核因子κ B (NF-kB)是一种普遍存在的转录因子,介导免疫和炎症过程。我们已经确定NF-kB在HIVAN中持续激活,HIVAN是一种塌陷的肾小球病,在细胞水平上以上皮细胞增殖、凋亡和分化缺陷为特征。我们假设,在HIVAN中,一种病毒蛋白(可能是Nef)与NF-kB激活信号体相关,减弱了正常的失活机制,导致NF-kB激活持续存在,最终导致上皮细胞增殖、免疫细胞募集和炎症,这是HIVAN的关键表型。特异性目标1将识别导致NF-kB持续激活的病毒蛋白,以及它“劫持”的宿主信号通路。我们的初步数据表明,HIV蛋白Nef的相互作用增强了IKK信号体的活性,允许持续的NF-kB激活,这可以通过抑制TNF受体信号传导来抑制。特异性目标2和3将测试NF-kB是否部分导致上皮细胞增殖(目标2)和免疫细胞募集和炎症(目标3)。异常上皮增生是HIVAN的主要病理表型。在特定的目标2中,我们提出细胞周期蛋白D1依赖nf - kb的转录调节导致上皮细胞增殖增加。尽管我们在第一个资助期已经表明,HIVAN中细胞凋亡增加,但我们预测并将测试HIVAN相关的细胞凋亡是否是增加上皮细胞增殖的代偿反应。在特定目标3中,我们将研究NF-kB激活在感染上皮细胞募集免疫细胞和炎症中的作用,炎症是hiv发病机制中一个不明确的方面。利用体外迁移试验作为免疫细胞募集模型的初步研究表明,使用小分子NF-kB抑制剂CYC202和BAY11-7082可有效抑制受感染肾细胞产生的化学引诱剂。由于NF-kB控制着许多免疫调节剂的表达,我们将使用靶向阵列筛选来表征NF-kB在人肾细胞感染过程中诱导的转录反应,重点关注那些促炎细胞因子。此外,初步研究表明,NF-kB的小分子抑制剂以及TNF受体阻断(可能是一种上游刺激信号)可抑制受感染肾细胞中NF-kB的激活。鉴于这些观察结果,我们将在转基因HIVAN小鼠模型中测试NF-kB抑制剂或TNF受体阻断是否抑制炎症并改善肾脏疾病进展。明确NF-kB失调的机制和病理后遗症将为HIVAN和其他以致病性增殖或炎症为特征的肾小球疾病确定新的治疗靶点。
英文摘要
DESCRIPTION (provided by applicant): Nuclear Factor kappa B (NF-kB) is a ubiquitous transcription factor that mediates immune and inflammatory processes. We have established that NF-kB is persistently activated in HIVAN, a collapsing glomerulopathy, which is characterized at the cellular level by defects in epithelial cell proliferation, apoptosis and differentiation. We hypothesize, in HIVAN, that a viral protein (likely Nef) associates with the NF-kB-activating signalsome and attenuates the normal, inactivating mechanism, resulting in persistence of NF-kB activation, and ultimately epithelial cell proliferation and immune cell recruitment and inflammation, key HIVAN phenotypes. Specific aim 1 will identify the viral protein that causes persistent NF-kB activation, as well as the host signaling pathway it "hijacks". Our preliminary data suggest interaction of the HIV protein Nef enhances IKK signalsome activity permitting persistent NF-kB activation, which can be suppressed by inhibition of TNF receptor signaling. Specific aims 2 and 3 will test if NF-kB causes, in part, epithelial cell proliferation (aim 2) and immune cell recruitment and inflammation (aim 3). Abnormal epithelial proliferation is the major pathologic phenotype in HIVAN. In specific aim 2, we propose increased epithelial proliferation results from NF-kB-dependent transcriptional regulation of Cyclin D1. Although we have shown in the first funding period that apoptosis is increased in HIVAN, we predict and will test if HIVAN-associated apoptosis is a compensatory response to increase epithelial cell proliferation. In specific aim 3, we will investigate the role of NF-kB activation in immune cell recruitment by infected epithelial cells and in inflammation, a poorly defined aspect of HIVAN pathogenesis. Preliminary studies using in vitro migration assays as a model for immune cell recruitment indicate that the use of small molecule NF-kB inhibitors, CYC202 and BAY11-7082, are effective at suppressing chemoattractants produced by infected renal cells. Since NF-kB controls the expression of many immune modulatory agents, we will use targeted array screening to characterize the transcriptional responses induced by NF-kB during infection of human renal cells, focusing on those pro-inflammatory cytokines. In addition, preliminary studies show that small molecule inhibitors of NF-kB, as well as TNF receptor blockade (a likely upstream stimulatory signaling) suppress NF-kB activation in infected renal cells. Given these observations, we will test in a transgenic mouse model of HIVAN if NF-kB inhibitors or TNF receptor blockade suppresses inflammation and ameliorates renal disease progression. Defining mechanisms and pathologic sequelae of NF-kB dysregulation will identify novel treatment targets for HIVAN and other glomerulopathies characterized by pathogenic proliferation or inflammation.
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会议论文
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