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百日咳博德特氏菌不耐热毒素的产生及特性

Production and properties of Bordetella pertussis heat-labile toxin.

作者信息

Livey I, Wardlaw A C

出版信息

J Med Microbiol. 1984 Feb;17(1):91-103. doi: 10.1099/00222615-17-1-91.

Abstract

Twelve selected strains of Bordetella pertussis were compared quantitatively for their ability to produce heat-labile toxin (HLT); all proved to be active producers, with only a three-fold range between the highest and the lowest. Bordet-Gengou agar, charcoal agar, modified Hornibrook medium and Stainer and Schölte (12G) medium differed little in their ability to support toxin production by three B. pertussis strains. However, cells grown on the solid media for 24 h were slightly more toxic than their counterparts grown for 72 h whereas in the liquid media the opposite was true. The concentration of iron in the medium did not influence HLT production, but high concentrations of nicotinic acid significantly reduced the HLT content of the cells. Crude preparations of toxin underwent only a 10% loss of toxicity per annum at -20 degrees C and were stable for up to 2 weeks at 4 degrees C. At 37 degrees C, toxicity was lost within a few days. The toxin was partially purified by a series of mild procedures and had a mol. wt by gel filtration of 89 000 +/- 10%. HLT was toxoided by treatment with formaldehyde to give a product which was immunogenic in rabbits but not in mice. Because anti-HLT could be absorbed out of the rabbit antisera by treatment with intact B. pertussis, it was concluded that some of the HLT in the bacteria is surface-exposed even though the main part may have a cytoplasmic location.

摘要

对12株选定的百日咳博德特氏菌产生不耐热毒素(HLT)的能力进行了定量比较;结果表明,所有菌株均为活跃的产生者,最高产量与最低产量之间仅相差三倍。博-金氏琼脂、活性炭琼脂、改良霍尼布鲁克培养基以及施泰纳和舍尔特(12G)培养基在支持三株百日咳博德特氏菌产生毒素的能力方面差异不大。然而,在固体培养基上培养24小时的细胞毒性略高于培养72小时的细胞,而在液体培养基中情况则相反。培养基中铁的浓度不影响HLT的产生,但高浓度的烟酸会显著降低细胞中的HLT含量。毒素粗制品在-20℃下每年毒性仅损失10%,在4℃下可稳定保存长达2周。在37℃下,几天内毒性就会丧失。通过一系列温和的程序对毒素进行了部分纯化,经凝胶过滤测定其分子量为89 000±10%。用甲醛处理使HLT类毒素化,得到的产物在兔体内具有免疫原性,但在小鼠体内则没有。由于用完整的百日咳博德特氏菌处理可从兔抗血清中吸收抗HLT,因此得出结论,尽管细菌中的HLT主要部分可能位于细胞质中,但仍有一些HLT暴露于表面。

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