The Brucella abortus CcrM DNA methyltransferase is essential for viability, and its overexpression attenuates intracellular replication in murine macrophages

被引:104
作者
Robertson, GT
Reisenauer, A
Wright, R
Jensen, RB
Jensen, A
Shapiro, L
Roop, RM
机构
[1] Louisiana State Univ, Hlth Sci Ctr, Dept Microbiol & Immunol, Shreveport, LA 71130 USA
[2] Stanford Univ, Sch Med, Dept Dev Biol, Stanford, CA 94305 USA
[3] ARS, Natl Anim Dis Ctr, USDA, Ames, IA 50010 USA
关键词
D O I
10.1128/JB.182.12.3482-3489.2000
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The CcrM DNA methyltransferase of the alpha-proteobacteria catalyzes the methylation of the adenine in the sequence GAnTC. Like Dam in the enterobacteria, CcrM plays a regulatory role in Caulobacter crescentus and Rhizobium meliloti. CcrM is essential for viability in both of these organisms, and we show here that it is also essential in Brucella abortus. Further, increased copy number of the ccrM gene results in striking changes in B. abortus morphology, DNA replication, and growth in murine macrophages, We generated strains that carry ccrM either on a low-copy-number plasmid (strain GR131) or on a moderate-copy-number plasmid (strain GR132). Strain GR131 has wild-type morphology and chromosome number, as assessed by flow cytometry. in contrast, strain GR132 has abnormal branched morphology, suggesting aberrant cell division? and increased chromosome number,. Although these strains exhibit different morphologies and DNA content, the replication of both strains in macrophages is attenuated. These data imply that the reduction in survival in host cells is not due solely to a cell division defect but is due to additional functions of CcrM. Because CcrM is essential in B. abortus and increased ccrM copy number attenuates survival in host cells! we propose that CcrM is an appropriate target for new antibiotics.
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页码:3482 / 3489
页数:8
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共 44 条
  • [1] Transposon-derived Brucella abortus rough mutants are attenuated and exhibit reduced intracellular survival
    Allen, CA
    Adams, LG
    Ficht, TA
    [J]. INFECTION AND IMMUNITY, 1998, 66 (03) : 1008 - 1016
  • [2] [Anonymous], 1983, Statistical methods
  • [3] Baldwin CL, 2002, INFEC AGENT, P255
  • [4] THE GREAT GATC - DNA METHYLATION IN ESCHERICHIA-COLI
    BARRAS, F
    MARINUS, MG
    [J]. TRENDS IN GENETICS, 1989, 5 (05) : 139 - 143
  • [5] Beveridge Terry J., 1994, P42
  • [6] BIOLOGY OF DNA RESTRICTION
    BICKLE, TA
    KRUGER, DH
    [J]. MICROBIOLOGICAL REVIEWS, 1993, 57 (02) : 434 - 450
  • [7] THE ROLE OF DAM METHYLTRANSFERASE IN THE CONTROL OF DNA-REPLICATION IN ESCHERICHIA-COLI
    BOYE, E
    LOBNEROLESEN, A
    [J]. CELL, 1990, 62 (05) : 981 - 989
  • [8] CANNING PC, 1990, ADVANCES IN BRUCELLOSIS RESEARCH, P151
  • [9] *CDCP, 1993, CDC PUBL
  • [10] PATHOGENIC SIGNIFICANCE OF P-FIMBRIATED ESCHERICHIA-COLI IN URINARY-TRACT INFECTIONS
    DOMINGUE, GJ
    ROBERTS, JA
    LAUCIRICA, R
    RATNER, MH
    BELL, DP
    SUAREZ, GM
    KALLENIUS, G
    SVENSON, S
    [J]. JOURNAL OF UROLOGY, 1985, 133 (06) : 983 - 989