GC Tfp Retraction and Stress-Responsive Host Signaling
GC Tfp Retraction and Stress-Responsive Host Signaling
批准号:
7247237
负责人:
MAGDALENE Y SO
金额:
$36.66万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-07-01 至 2010-06-30
关键词:
1-Phosphatidylinositol 3-KinaseAdherenceAffectApoptosisApoptoticBehaviorCell surfaceCellsCompetenceEnvironmentEpithelialEpithelial CellsGene ExpressionGenesGeneticHourInfectionLeadMAP Kinase GeneMechanical StressMembraneModalityModelingMotorNeisseria gonorrhoeaePathogenesisPathway interactionsPhysiologicalPilumProcessProductionRangeRoleSignal PathwaySignal TransductionStressStructureTestingTimebasebiological adaptation to stresscell motilityfallsmagnetic beadsresearch studyresponserole modeltissue culture
中文摘要
淋病奈瑟菌(GC) IV型菌毛(Tfp)是一种可收缩的结构,在运动性、粘附宿主细胞和遗传能力方面起作用。收缩、伸展和底物系缚的循环使GC能够爬行(抽搐运动)并影响上皮细胞信号传导。缩回需要PilT,假设其功能为Tfp拆卸马达。缩回经常发生,而且力度很大。在感染期间,CG在上皮细胞表面爬行并聚集成微菌落,这些微菌落本身在长时间内运动。从一个微菌落计算Tfp收缩力落在生理范围内已知触发细胞反应。因此,我们测试了上皮细胞在感染期间感知并响应Tfp回缩的假设,使用感染的组织培养模型和基因定义的
英文摘要
The N. gonorrhoeas (GC) type IV pilus (Tfp) is a retractile structure that functions in motility, adherence to host cells, and genetic competence. Cycles of retraction, extension, and substrate tethering enable GC to crawl (twitching motility) and influence epithelial cell signaling. Retraction requires PilT, which is hypothesized to function as a Tfp disassembly motor. Retraction occurs often and with substantial force. CG crawl on the epithelial cell surface and aggregate into microcolonies that are themselves motile for long periods during infection. Tfp retraction forces from a microcolony is calculated to fall within the physiologic range known to trigger cellular responses. We therefore tested the hypothesis that epithelial cells sense and respond to Tfp retraction during infection, using a tissue culture model of infection and a genetically-defined
pair of wt and pilT strain expressing Tfp but not Opa. Infection activates the stress-responsive PI-3K/Akt pathway, independent of Opa. A functional pilT strongly enhances activation. PI-3K/Akt activation is detected 0.5-2 hours after infection. PIP3, the product of PI-3K, translocates to the outer leaflet of the epithelial membrane and accumulates beneath microcolonies. PIP3 stimulates microcolony formation and increased p/VTmRNA levels. Thus, Tfp retraction triggers the host to produce an effector that, in turn, influences GC motility behavior. Infection also influences epithelial cell gene expression. Over 300 epithelial genes are differentially regulated after 3 hours of infection, a time when GC have formed microcolonies on the cell surface but have
not yet entered the cell pilT enhances the expression of a subset of these genes, in a process that involves the MAPK pathway. One consequence of pilT-ehnancement of gene expression is the creation of an environment that allows the cell to withstand apoptosis. These pilT-related responses can be replicated by a magnet pulling on GC membrane-coated magnetic beads seeded on cells. These results suggest that the force of Tfp retraction triggers protective stress-response pathways in the epithelial cell. Based on these findings, we propose a model for the role of Tfp retraction in epithelial cell signaling. We propose to test the model to better understand the role of Tfp retraction in bacterial pathogenesis.
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