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一种用于杜克雷嗜血杆菌广泛诱变的系统。

A system for generalized mutagenesis of Haemophilus ducreyi.

作者信息

Stevens M K, Cope L D, Radolf J D, Hansen E J

机构信息

Department of Microbiology, University of Texas Southwestern Medical Center, Dallas 75235-9048, USA.

出版信息

Infect Immun. 1995 Aug;63(8):2976-82. doi: 10.1128/iai.63.8.2976-2982.1995.

Abstract

The lack of a generalized mutagenesis system for Haemophilus ducreyi has hampered efforts to identify virulence factors expressed by this sexually transmitted pathogen. To address this issue, the transposable element Tn1545-delta 3, which encodes resistance to kanamycin, was evaluated for its ability to insert randomly into the H. ducreyi chromosome and produce stable, isogenic mutants. Electroporation of H. ducreyi with 1 microgram of plasmid pMS1 carrying Tn1545-delta 3 resulted in the production of 10(4) kanamycin-resistant transformants; Southern blot analysis of a number of these transformants indicated that insertion of the transposon into the chromosome occurred at a number of different sites. This pMS1-based transposon delivery system was used to produce an H. ducreyi mutant that expressed an altered lipooligosaccharide (LOS). Passage of this mutant in vitro in the presence or absence of kanamycin did not affect the stability of the transposon insertion. To confirm that the observed mutant phenotype was the result of the transposon insertion, a chromosomal fragment containing Tn1545-delta 3 was cloned from this H. ducreyi LOS mutant. Electroporation of the wild-type H. ducreyi strain with this DNA fragment yielded numerous kanamycin-resistant transformants, the majority of which had the same altered LOS phenotype as the original mutant. Southern blot analysis confirmed the occurrence of proper allelic exchange in the LOS-deficient transformants obtained in this backcross experiment. The ability of Tn1545-delta 3 to produce insertion mutations in H. ducreyi should facilitate genetic analysis of this pathogen.

摘要

缺少针对杜克雷嗜血杆菌的通用诱变系统阻碍了对这种性传播病原体所表达毒力因子的鉴定工作。为解决这一问题,对编码卡那霉素抗性的转座元件Tn1545-δ3随机插入杜克雷嗜血杆菌染色体并产生稳定同基因突变体的能力进行了评估。用1微克携带Tn1545-δ3的质粒pMS1对杜克雷嗜血杆菌进行电穿孔,产生了10⁴个卡那霉素抗性转化子;对其中一些转化子的Southern印迹分析表明,转座子插入染色体发生在多个不同位点。这个基于pMS1的转座子递送系统被用于产生一个表达改变的脂寡糖(LOS)的杜克雷嗜血杆菌突变体。该突变体在有或没有卡那霉素存在的情况下在体外传代,并不影响转座子插入的稳定性。为了证实观察到的突变表型是转座子插入的结果,从这个杜克雷嗜血杆菌LOS突变体中克隆了包含Tn1545-δ3的染色体片段。用该DNA片段对野生型杜克雷嗜血杆菌菌株进行电穿孔,产生了大量卡那霉素抗性转化子,其中大多数具有与原始突变体相同的LOS改变表型。Southern印迹分析证实了在这个回交实验中获得的LOS缺陷型转化子中发生了正确的等位基因交换。Tn1545-δ3在杜克雷嗜血杆菌中产生插入突变的能力应该有助于对这种病原体进行遗传分析。

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