Investigating Entamoeba histolytica colonic pathogenesis
Investigating Entamoeba histolytica colonic pathogenesis
批准号:
8070830
负责人:
UPINDER SINGH
金额:
$8.66万
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:
2010-06-01 至 2012-05-31
关键词:
AdherenceAdhesionsAffectAmoeba genusAnimal ModelAttenuatedBiochemicalBiological AssayBiologyCell CommunicationCell surfaceCellsColonic DiseasesCytoplasmic TailCytoskeletal GeneCytoskeletal ProteinsDataDeveloping CountriesDiseaseDysenteryEntamoebaEntamoeba histolyticaErythrophagocytosisEventExtracellular DomainExtracellular ProteinGene ExpressionGene Expression ProfileGenesGeneticGoalsHealthHumanIn VitroInfectionIsoleucineLifeLiver AbscessMicroarray AnalysisMolecularParasitesPathogenesisPhenotypePinocytosisPropertyProteinsResearch InfrastructureRoleSerineSignal TransductionSystemTertiary Protein StructureTestingThreonineTransgenic OrganismsTsunamiVirulenceVirulentWater PurificationWorkbasecell motilitycellular imagingextracellulargene functiongenetic manipulationglycosylationin vitro Assayin vivointerestmonolayernoveloverexpressionpathogenprotein Epublic health relevancesocial
中文摘要
描述(由申请方提供):原生动物寄生虫溶组织内阿米巴(Entamoeba histolytica)估计每年导致5000万例侵袭性疾病。阿米巴感染最常见的表现是结肠疾病和肝脏疾病。我们的目标是确定新的毒力决定因素在大肠杆菌。目的是了解阿米巴致病的分子基础。我们以前已经开发和使用微阵列技术,以确定基因的表达是有限的毒性菌株和条件。一个这样的基因,编码一个E。溶组织菌丝氨酸、苏氨酸、异亮氨酸富集蛋白(EhSTIRP)仅在毒性菌株和条件下表达,在非毒性菌株和条件下表达非常低或不表达。初步数据表明,EhSTIRP下调的寄生虫在体外具有降低的粘附性和毒力。此外,在EhSTIRP下调的寄生虫细胞骨架基因的表达减少。我们的假设是EhSTIRP是大肠杆菌的一个关键毒力决定因子。在寄生虫粘附和与阿米巴发病机制相关的信号传导中具有潜在作用。我们建议进一步表征EhSTIRP对E.体外溶组织病原体毒力,确定EhSTIRP是否是体内毒力所必需的,鉴定宿主入侵过程中EhSTIRP的定位,表征与寄生虫毒力相关的EhSTIRP结构域,并鉴定与EhSTIRP相互作用的阿米巴蛋白。我们将使用遗传和生物化学的方法来解剖基因功能,活细胞成像,以确定阿米巴宿主细胞相互作用和微阵列分析,以确定寄生虫转录组的变化与EhSTIRP的遗传操作EhSTIRP的本地化。这些方法有望确定EhSTIRP在阿米巴发病机制中的作用,并剖析与EhSTIRP相关的遗传和生化网络,并调节溶组织内阿米巴的毒力。公共卫生相关性:溶组织内阿米巴是一种重要的病原体,在全球范围内对人类健康产生影响。主要临床表现为痢疾、肝火旺。虽然大多数疾病发生在发展中国家,但这种寄生虫可以在任何地方引起感染,从而对水净化系统产生不利影响。海啸或一个地区的政治和社会基础设施动荡等事件可能导致疾病的出现。我们有兴趣了解寄生虫用于引起疾病的分子机制。
英文摘要
DESCRIPTION (provided by applicant): The protozoan parasite Entamoeba histolytica causes an estimated 50 million cases of invasive disease annually. The most common manifestations of amebic infection are colonic disease and liver abscesses. Our goal is to identify novel virulence determinants in E. histolytica with the aim of understanding the molecular basis of amebic pathogenesis. We have previously developed and used microarray technology to identify genes whose expression is restricted to virulent strains and conditions. One such gene, encoding an E. histolytica serine, threonine, isoleucine, rich protein (EhSTIRP) is expressed only in virulent strains and conditions and has very low to no expression in non-virulent strains and conditions. Preliminary data indicate that parasites in which EhSTIRP is downregulated have decreased adhesion and virulence in vitro. Additionally, in EhSTIRP downregulated parasites have reduced expression of cytoskeletal genes. Our hypothesis is that EhSTIRP is a key virulence determinant in E. histolytica with potential roles in parasite adhesion and signaling relevant to amebic pathogenesis. We propose to further characterize the contribution of EhSTIRP to E. histolytica virulence in vitro, determine whether EhSTIRP is necessary for virulence in vivo, identify the localization of EhSTIRP during host invasion, characterize domains of EhSTIRP with relevance to parasite virulence, and identify amebic proteins that interact with EhSTIRP. We will use genetic and biochemical approaches to dissect gene function, live cell imaging to determine EhSTIRP localization during amebic host cell interaction and microarray analysis to define parasite transcriptome changes associated with genetic manipulation of EhSTIRP. These approaches promise to identify the role of EhSTIRP in amebic pathogenesis and dissect the genetic and biochemical network that is associated with EhSTIRP and which regulates virulence in Entamoeba histolytica. PUBLIC HEALTH RELEVANCE: Entamoeba histolytica is an important pathogen and has an impact on human health on a global scale. The main disease manifestations are dysentery and liver abscesses. Although the majority of disease is in developing countries, this parasite can cause infections anywhere that water purification systems get adversely affected. Events such as the Tsunami or upheaval in the political and social infrastructure of a region can allow disease to emerge. We are interested in understanding the molecular mechanisms that the parasite uses to cause disease.
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会议论文
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海外基金