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               本刊及时向广大读者介绍国外医学微生物学,包括细菌、病毒、真菌、抗感染免疫等在临床、基础及实验检验等方面的最新动向和研究进展,供从事医学微生物学和免疫学的科研、教学、临床、检验工作者、卫生防疫以及其他从事卫生事业人员参考。                

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首页>微生物与感染杂志
  • 杂志名称:微生物与感染杂志
  • 主管单位:中华人民共和国教育部
  • 主办单位:复旦大学
  • 国际刊号:1673-6184
  • 国内刊号:31-1966/R
  • 出版周期:季刊
期刊荣誉:获卫生部《国外医学》系列评比三等奖期刊收录:万方收录(中), 统计源核心期刊(中国科技论文核心期刊), 上海图书馆馆藏, 知网收录(中), 维普收录(中), 国家图书馆馆藏
微生物与感染杂志2012年第01期

Three-dimensional structures of virulence proteins of Legionella establish targets for new antibacterials

关键词:DegQ, FeoB, HtrA, Legionella, Macrophage infectivity potentiator
摘要:Legionella pneumophila,the causative agent of Legionnaires' disease,has been recognized as a major health problem responsible for an estimated number of 15 000-30 000 cases of severe pneumonia per year in Germany alone.Despite of the high clinical relevance,many aspects of the intracellular life cycle of Legionella,especially details on interactions with host cells,are not well understood.Structural information on virulence proteins helps unravel basal pathogenicity mechanisms and is a prerequisite for the rational development of effective drug molecules.Here we discuss structures of three important virulence proteins ofLegionella that have been determined in our laboratory.The structure of the macrophage infectivity potentiator (Mip) protein of Legionella pneumophila is the first of a novel subgroup within the family of FK506-binding protein (FKBP) peptidyl-prolyl cis/trans isomerases.On the basis of the Mip structure,promising antibacterial agents are being designed.Recently,structures of two equally exciting Legionella proteins have been reported.The ferrous iron transport protein FeoB is a transmembrane protein responsible for Fe2+ aquisition after entry of the pathogen into the host cell.The structure of the cytoplasmic domain of FeoB provides insights into the family of prokaryotic G proteins and allows a detailed comparison with structures of related FeoBs.Furthermore,the characterization of DegQ,a periplasmatic chaperone-protease involved in protein quality control represents an intriguing example of how enzymatic activity is regulated by oligomerization as well as by an intrinsic loop activation cascade,depending on subtle conformational rearrangements.