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氯喹对枯草芽孢杆菌孢子萌发的优先抑制作用。

The preferential inhibition of Bacillus subtilis spore outgrowth by chloroquine.

作者信息

Smith K T, Dawes I W

机构信息

Department of Microbiology, University of Edinburgh, UK.

出版信息

Arch Microbiol. 1989;152(3):251-7. doi: 10.1007/BF00409659.

Abstract

Chloroquine inhibited the outgrowth of Bacillus subtilis spores at a 10-fold lower concentration than that required to prevent vegetative growth. Analysis of macromolecular synthesis in outgrowing spores and vegetative cells in the presence of chloroquine indicated that it acted preferentially on transcription. Differential sensitivity of outgrowing spores and vegetative cells to chloroquine was not due to changes in the specificity of the RNA-polymerase, since RNA-polymerase activity measured in permeabilized cells was not affected differently by the drug. The preferential inhibition of spore outgrowth was not evident at pH 8.0, at which the majority of chloroquine is in a monovalent, more lipophilic, form. In the presence of inhibitors affecting membrane potential, vegetative cells were as sensitive to chloroquine as outgrowing spores. Measurement of [14C]-chloroquine uptake showed that early outgrowing spores accumulated twice as much drug as resistant late outgrowing spores and seven times more than vegetative cells. Treatment of vegetative cells with metabolic inhibitors led them to accumulate chloroquine to the levels found in outgrowing spores. Therefore, the preferential inhibition of outgrowing spores by chloroquine is the result of increased uptake of the drug, reflecting differences in energy metabolism from vegetative cells.

摘要

氯喹抑制枯草芽孢杆菌孢子生长的浓度比抑制其营养生长所需浓度低10倍。对氯喹存在下正在生长的孢子和营养细胞中的大分子合成进行分析表明,氯喹优先作用于转录过程。正在生长的孢子和营养细胞对氯喹的敏感性差异并非由于RNA聚合酶特异性的改变,因为在透化细胞中测得的RNA聚合酶活性受该药物的影响并无差异。在pH 8.0时,孢子生长的优先抑制作用不明显,此时大多数氯喹呈单价、亲脂性更强的形式。在存在影响膜电位的抑制剂时,营养细胞对氯喹的敏感性与正在生长的孢子相同。对[14C] -氯喹摄取的测量表明,早期正在生长的孢子积累的药物量是抗性较强的晚期正在生长孢子的两倍,是营养细胞的七倍。用代谢抑制剂处理营养细胞会使其积累氯喹至正在生长的孢子中的水平。因此,氯喹对正在生长的孢子的优先抑制作用是药物摄取增加的结果,反映了其与营养细胞能量代谢的差异。

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