[1] Pennisi E. Genome reveals wiles and weak points of syphilis. Science, 1998, 281:324-325. [2] Fraser CM, Norris SJ, Weinstock GM, et al.Complete genome sequence of Treponema pallidum, the syphilis spirochete. Science,1998, 281:375-388. [3] Xia X, Xie Z, Li WH. Effects of GC content and mutational pressure on the lengths of exons and coding sequences. J Mol Evol,2003, 56:362-370. [4] Indest KJ, Ramamoorthy R, Philipp MT.Transcriptional regulation in spirochetes. J Mol Microbiol Biotechnol, 2000, 2:473-481. [5] Jovanovic T, Ascenso C, Hazlett KR, et al.Neelaredoxin, an iron-binding protein from the syphilis spirochete, Treponema pallidum, is a superoxide reductase. J Biol Chem, 2000, 275:28439-28448. [6] Lombard M, Touati D, Fontecave M, et al.Superoxide reductase as a unique defense system against superoxide stress in the microaerophile Treponema pallidum. J Biol Chem, 2000, 275:27021-27026. [7] Norris SJ, Cox DL, Weinstock GM. Biology of Treponema pallidum:correlation of functional activities with genome sequence data.J Mol Microbiol Biotechnol, 2001, 3:37-62. [8] Subramanian G, Koonin EV, Aravind L.Comparative genome analysis of the pathogenic spirochetes Borrelia burgdorferi and Treponema pallidum. Infect Immun,2000, 68:1633-1648. [9] Pietravalle M, Pimpinelli F, Maini A, et al.Diagnostic relevance of polymerase chain reaction technology for T. pallidum in subjects with syphilis in different phases of infection. New Microbiol, 1999, 22:99-104. [10] Norris SJ, Weinstock GM. The genome sequence of Treponema pallidum, the syphilis spirochete:will clinicians benefit? Curr Opin Infect Dis, 2000, 13:29-36. |