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羊种布鲁氏菌16M过氧胺合成酶基因的鉴定以及脂多糖O侧链在羊种布鲁氏菌于小鼠和巨噬细胞中存活的作用

Identification of the perosamine synthetase gene of Brucella melitensis 16M and involvement of lipopolysaccharide O side chain in Brucella survival in mice and in macrophages.

作者信息

Godfroid F, Taminiau B, Danese I, Denoel P, Tibor A, Weynants V, Cloeckaert A, Godfroid J, Letesson J J

机构信息

Unité de Recherche en Biologie Moléculaire (URBM), Laboratoire d'Immunologie et de Microbiologie, Facultés Universitaires Notre Dame de la Paix, Namur, Belgium.

出版信息

Infect Immun. 1998 Nov;66(11):5485-93. doi: 10.1128/IAI.66.11.5485-5493.1998.

Abstract

Brucella organisms are facultative intracellular bacteria that may infect many species of animals as well as humans. The smooth lipopolysaccharide (S-LPS) has been reported to be an important virulence factor of these organisms, but the genetic basis of expression of the S-LPS O antigen has not yet been described. Likewise, the role of the O side chain of S-LPS in the survival of Brucella has not been clearly defined. A mini-Tn5 transposon mutant library of Brucella melitensis 16M was screened by enzyme-linked immunosorbent assay (ELISA) with monoclonal antibodies (MAbs) directed against the O side chain of Brucella. One mutant, designated B3B2, failed to express any O side chain as confirmed by ELISA, Western blot analysis, and colony coloration with crystal violet. Nucleotide sequence analysis demonstrated that the transposon disrupted an open reading frame with significant homology to the putative perosamine synthetase genes of Vibrio cholerae O1 and Escherichia coli O157:H7. The low G+C content of this DNA region suggests that this gene may have originated from a species other than a Brucella sp. The survival of B. melitensis mutant strain B3B2 in the mouse model and in bovine macrophages was examined. The results suggested that S-LPS or, more precisely, its O side chain is essential for survival in mice but not in macrophages.

摘要

布鲁氏菌属微生物是兼性胞内细菌,可感染多种动物及人类。据报道,光滑脂多糖(S-LPS)是这些微生物的一种重要毒力因子,但S-LPS O抗原表达的遗传基础尚未阐明。同样,S-LPS的O侧链在布鲁氏菌生存中的作用也尚未明确界定。用针对布鲁氏菌O侧链的单克隆抗体(MAb)通过酶联免疫吸附测定(ELISA)筛选了羊种布鲁氏菌16M的mini-Tn5转座子突变体文库。经ELISA、蛋白质印迹分析及结晶紫菌落染色证实,一个名为B3B2的突变体未能表达任何O侧链。核苷酸序列分析表明,转座子破坏了一个与霍乱弧菌O1和大肠杆菌O157:H7的假定过氧胺合成酶基因具有显著同源性的开放阅读框。该DNA区域的低G+C含量表明该基因可能起源于布鲁氏菌属以外的物种。检测了羊种布鲁氏菌突变株B3B2在小鼠模型和牛巨噬细胞中的生存情况。结果表明,S-LPS或者更确切地说其O侧链对于在小鼠体内生存至关重要,但对在巨噬细胞中生存并非必需。

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本文引用的文献

1
Differentiation of smooth and nonsmooth colonies of Brucellae.
J Bacteriol. 1951 Feb;61(2):239-40. doi: 10.1128/jb.61.2.239-240.1951.
2
Survival of a bacterioferritin deletion mutant of Brucella melitensis 16M in human monocyte-derived macrophages.
Infect Immun. 1997 Oct;65(10):4337-40. doi: 10.1128/iai.65.10.4337-4340.1997.
3
Bacterial polysaccharide synthesis and gene nomenclature.
Trends Microbiol. 1996 Dec;4(12):495-503. doi: 10.1016/s0966-842x(97)82912-5.
4
Role of the Escherichia coli O157:H7 O side chain in adherence and analysis of an rfb locus.
Infect Immun. 1996 Nov;64(11):4795-801. doi: 10.1128/iai.64.11.4795-4801.1996.
7
Identification of protein coding regions by database similarity search.
Nat Genet. 1993 Mar;3(3):266-72. doi: 10.1038/ng0393-266.
9
Evolution of Salmonella O antigen variation by interspecific gene transfer on a large scale.
Trends Genet. 1993 Jan;9(1):17-22. doi: 10.1016/0168-9525(93)90067-R.

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