Vector and Host Contributions to the Regulation of E. chaffeensis Gene Expression
Vector and Host Contributions to the Regulation of E. chaffeensis Gene Expression
批准号:
7989987
负责人:
ROMAN R. GANTA
金额:
$35.77万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-12-15 至 2012-11-30
关键词:
AnaplasmaAnaplasma phagocytophilumAntigensArthropodsBacteriaBiologicalBovine AnaplasmosisBudgetsCellsComplexCritiquesDataEhrlichiaEhrlichia chaffeensisEhrlichiosisEnvironmentFundingGene ExpressionGene Expression RegulationGenesGenetic TranscriptionHealthHumanImmune responseIn VitroKnock-outMapsMinorModificationMorphologyMutationPatternPrimer ExtensionProteinsPublished CommentRegulationRickettsialesSignal TransductionSystemTextTicksTissue-Specific Gene ExpressionTranscription Initiation SiteTranslationsVertebratesWorkhuman granulocytic ehrlichiosisin vivomacrophagepathogenpromoterprotein expressionresearch studyresponsevector
中文摘要
描述(由申请人提供):近年来,由埃立克体属和无形体属的蜱传立克次体引起的疾病已成为日益严重的健康问题。这些疾病包括人单核细胞埃立克体病、人粒细胞埃立克体病和人粒细胞无形体病。ewingii和嗜吞噬细胞无形体。尽管节肢动物和脊椎动物的细胞环境复杂,具有复杂的防御系统,立克次氏体进化出逃避宿主清除的策略。例如,E.巨噬细胞和蜱细胞中的chaffeensis在它们的形态上显著不同,具有不同的蛋白表达模式。表达模式包括来自p28-Omp多基因位点的22个基因的差异表达。在巨噬细胞中,p28 Omp基因表达主要限于p28-Omp基因19,而在蜱细胞中,表达的抗原主要来自p28-Omp基因14。我们的研究还表明,在脊椎动物和蜱细胞中的差异表达有助于改变宿主反应,例如在脊椎动物宿主中对蜱细胞来源的E. chaffeensis相比,巨噬细胞来源的细菌。本研究将集中在从p28-Omp多基因位点的基因表达调控的基本认识。本研究的中心假设是,p28-Omp基因在E. Chaffeensis在响应环境信号时受到差异调节,并且宿主细胞特异性基因表达对于病原体在脊椎动物和蜱细胞环境中的存活是必需的。本研究的具体目标是:1)建立用于定位埃里希体启动子的体外转录和翻译系统,2)定位p28-Omp基因座的差异表达基因14和19中的转录机制,3)评估巨噬细胞和蜱细胞环境对基因14和19的差异表达的贡献,和4)评估p28-Omp基因14和19的敲除突变以评估宿主细胞特异性表达的生物学相关性。本研究结果将为深入了解E. chaffeensis基因调控以及巨噬细胞和蜱细胞中的立克次氏体如何对差异表达蛋白的表达丧失作出反应。
英文摘要
DESCRIPTION (provided by applicant): Illnesses caused by the tick-borne rickettsiales of the genera Ehrlichia and Anaplasma have been a growing health concern in recent years. These illnesses include human monocytic ehrlichiosis, human granulocytic ehrlichiosis and human granulocytic anaplasmosis which are caused by Ehrlichia chaffeensis, E. ewingii and Anaplasma phagocytophilum, respectively. Despite the complex cellular environment of arthropods and vertebrates having sophisticated systems of defense, the rickettsiales evolved strategies to evade host clearance. For example, E. chaffeensis in macrophages and tick cells differ significantly in their morphology with distinct patterns of protein expression. The expression patterns include the differential expression from the p28-Omp multigene locus which contains 22 genes. The p28 Omp gene expression is restricted primarily to the p28-Omp gene 19 in macrophages, whereas in tick cells the expressed antigen is predominantly from the p28-Omp gene 14. Our studies also demonstrate that the differential expression in vertebrate and tick cells contributes to the altered host response, such as the delayed clearance in a vertebrate host for tick cell- derived E. chaffeensis compared to that for macrophage-derived bacteria. This study will focus on the basic understanding of the regulation of gene expression from the p28-Omp multigene locus. The central hypothesis of this study is that the transcription from the p28-Omp locus in E. chaffeensis is differentially regulated in response to environmental signals and that the host cell-specific gene expression is essential for pathogen's survival in vertebrate and tick cell environments. Specific aims of this study are; 1) establish in vitro transcription and translation system for mapping Ehrlichia promoters, 2) map transcriptional machinery in differentially expressed genes 14 and 19 of the p28-Omp locus, 3) evaluate the contributions of macrophage and tick cell environments for differential expression from genes 14 and 19, and 4) evaluate knockout mutations for the p28-Omp genes 14 and 19 to assess the biological relevance of host cell specific expression. The results from this study will provide important information for understanding E. chaffeensis gene regulation and how the rickettsiale in macrophages and tick cells respond to the loss of expression from a differentially expressed protein.
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