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BTF-37的分离与特性:从脆弱拟杆菌捕获的染色体DNA,其赋予自身转移性并在拟杆菌属和大肠杆菌中表达菌毛样结构。

Isolation and characterization of BTF-37: chromosomal DNA captured from Bacteroides fragilis that confers self-transferability and expresses a pilus-like structure in Bacteroides spp. and Escherichia coli.

作者信息

Vedantam Gayatri, Hecht David W

机构信息

Departments of Medicine and Microbiology/Immunology and Program in Molecular Biology, Loyola University Medical Center, 2160 S. First Ave., Maywood, IL 60153, USA.

出版信息

J Bacteriol. 2002 Feb;184(3):728-38. doi: 10.1128/JB.184.3.728-738.2002.

Abstract

We report the isolation and preliminary characterization of BTF-37, a new 52-kb transfer factor isolated from Bacteroides fragilis clinical isolate LV23. BTF-37 was obtained by the capture of new DNA in the nonmobilizable Bacteroides-Escherichia coli shuttle vector pGAT400DeltaBglII using a functional assay. BTF-37 is self-transferable within and from Bacteroides and also self-transfers in E. coli. Partial DNA sequencing, colony hybridization, and PCR revealed the presence of Tet element-specific sequences in BTF-37. In addition, Tn5520, a small mobilizable transposon that we described previously (G. Vedantam, T. J. Novicki, and D. W. Hecht, J. Bacteriol. 181:2564-2571, 1999), was also coisolated within BTF-37. Scanning and transmission electron microscopy of Tet element-containing Bacteroides spp. and BTF-37-harboring Bacteroides and E. coli strains revealed the presence of pilus-like cell surface structures. These structures were visualized in Bacteroides spp. only when BTF-37 and Tet element strains were induced with subinhibitory concentrations of tetracycline and resembled those encoded by E. coli broad-host-range plasmids. We conclude that we have captured a new, self-transferable transfer factor from B. fragilis LV23 and that this new factor encodes a tetracycline-inducible Bacteroides sp. conjugation apparatus.

摘要

我们报告了BTF-37的分离及初步特性分析,BTF-37是一种从脆弱拟杆菌临床分离株LV23中分离出的新的52千碱基转移因子。通过使用功能测定法在不可移动的拟杆菌-大肠杆菌穿梭载体pGAT400DeltaBglII中捕获新DNA获得了BTF-37。BTF-37可在拟杆菌内部及从拟杆菌转移至其他菌,并且也能在大肠杆菌中自我转移。部分DNA测序、菌落杂交和PCR揭示了BTF-37中存在四环素抗性元件特异性序列。此外,我们之前描述过的一种小型可移动转座子Tn5520(G. Vedantam、T. J. Novicki和D. W. Hecht,《细菌学杂志》181:2564 - 2571,1999年)也在BTF-37中共同分离得到。对含有四环素抗性元件的拟杆菌属以及携带BTF-37的拟杆菌和大肠杆菌菌株进行扫描和透射电子显微镜观察,发现存在菌毛样细胞表面结构。仅当用亚抑制浓度的四环素诱导BTF-37和四环素抗性元件菌株时,这些结构才在拟杆菌属中可见,并且类似于由大肠杆菌广泛宿主范围质粒编码的结构。我们得出结论,我们从脆弱拟杆菌LV23中捕获了一种新的、可自我转移的转移因子,并且这种新因子编码一种四环素诱导型拟杆菌属接合装置。

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