Bacterial cell envelope in polar positioning of autotransporter proteins
Bacterial cell envelope in polar positioning of autotransporter proteins
批准号:
8917850
负责人:
Marcia B Goldberg
金额:
$26.1万
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:
2014-09-01 至 2017-08-31
关键词:
ActinsAdhesionsAttenuatedBacteriaBacterial GenomeBacterial InfectionsBacterial ProteinsBordetella pertussisCell divisionCell membraneCell physiologyCellsCellular biologyCenters for Disease Control and Prevention (U.S.)Chlamydia trachomatisChlamydophila pneumoniaeComplexCytoplasmDataDevelopmentDiseaseFaceFamilyGenerationsGram-Negative BacteriaHaemophilus influenzaeHealthHelicobacter pyloriHumanIgA-specific serine endopeptidaseIndividualInvestigationLipaseMediatingMembraneModelingMolecularNational Institute of Allergy and Infectious DiseaseNeisseria meningitidisOrganismPathway interactionsPeptide HydrolasesPlayPositioning AttributeProcessProkaryotic CellsProtein FamilyProteinsProteobacteriaPseudomonas aeruginosaPublishingResearch PersonnelResistanceRickettsia rickettsiiRoleSalmonella entericaSerratia marcescensSerumShigellaSurfaceTestingVirulenceVirulence FactorsWorkYersinia pestisbasecell envelopecytotoxicityesteraseinsightmembermutantnew therapeutic targetnovelpathogenpathogenic Escherichia coliperiplasmpertactinpolymerization
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Autotransporters are the most abundant family of secreted proteins in gram-negative bacteria. Many of those that have been characterized are virulence proteins. We have previously shown that autotransporter proteins are secreted at the bacterial pole and that these proteins are targeted to the pole in the bacterial cytoplasm, prior t secretion across the cytoplasmic membrane. Our preliminary data indicate that the cell division protein FtsQ is involved in establishing polar positional information recognized by autotransporters and that the periplasmic domain of FtsQ is sufficient for the generation of this information. We propose exploratory investigations into the role of cell envelope remodeling in the establishment of polar positional information that is recognized in the cytoplasm by autotransporter proteins. Our specific aims are: 1. Characterize mutants of FtsQ defective in establishing polarity of the Shigella spp. autotransporter IcsA. 2. Identify using an unbiased approach, and characterize, proteins in the pathway downstream of FtsQ in autotransporter polarity. 3. Identify using a candidate approach, and characterize, proteins that interact with FtsQ in the autotransporter polarity pathway. The exploratory investigations we propose in this application will generate insights into the mechanisms involved in the establishment of polarity and into the dynamic development and remodeling of the cell envelope in prokaryotes.
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