Renesto Patricia, Ogata Hiroyuki, Audic Stéphane, Claverie Jean-Michel, Raoult Didier
Unité des Rickettsies, CNRS UMR 6020, IFR-48, Faculté de Médecine--Universite de la Mediterranee, 27 Boulevard Jean Moulin, 13385 Marseille cedex 05, France.
FEMS Microbiol Rev. 2005 Jan;29(1):99-117. doi: 10.1016/j.femsre.2004.09.002.
Sequencing of the Rickettsia conorii genome and its comparison with its closest sequenced pathogenic relative, i.e., Rickettsia prowazekii, provided powerful insights into the evolution of these microbial pathogens. However, advances in our knowledge of rickettsial diseases are still hindered by the difficulty of working with strict intracellular bacteria and their hosts. Information gained from comparing the genomes of closely related organisms will shed new light on proteins susceptible to be targeted in specific diagnostic assays, by new antimicrobial drugs, and that could be employed in the generation of future rickettsial vaccines. In this review we present a detailed comparison of the metabolic pathways of these bacteria as well as the polymorphisms of their membrane proteins, transporters and putative virulence factors. Environmental adaptation of Rickettsia is also discussed.
对康氏立克次体基因组进行测序,并将其与其亲缘关系最近的已测序致病相关种,即普氏立克次体进行比较,为深入了解这些微生物病原体的进化提供了有力线索。然而,由于难以处理严格的胞内细菌及其宿主,我们对立克次体病的认识进展仍然受到阻碍。通过比较亲缘关系密切的生物体的基因组所获得的信息,将为特定诊断检测中易被靶向的蛋白质、新型抗菌药物以及可用于未来立克次体疫苗研发的蛋白质提供新的线索。在本综述中,我们详细比较了这些细菌的代谢途径以及它们膜蛋白、转运蛋白和假定毒力因子的多态性。还讨论了立克次体的环境适应性。