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流感嗜血杆菌的感受态发育受核酸前体可用性的调节。

Competence development by Haemophilus influenzae is regulated by the availability of nucleic acid precursors.

作者信息

MacFadyen L P, Chen D, Vo H C, Liao D, Sinotte R, Redfield R J

机构信息

Departments of Zoology and Chemistry, University of British Columbia, Vancouver, BC, Canada.

出版信息

Mol Microbiol. 2001 May;40(3):700-7. doi: 10.1046/j.1365-2958.2001.02419.x.

Abstract

DNA uptake by naturally competent bacteria provides cells with both genetic information and nucleotides. In Haemophilus influenzae, competence development requires both cAMP and an unidentified signal arising under starvation conditions. To investigate this signal, competence induction was examined in media supplemented with nucleic acid precursors. The addition of physiological levels of AMP and GMP reduced competence 200-fold and prevented the normal competence-induced transcription of the essential competence genes comA and rec-2. The rich medium normally used for growth allows only limited competence. Capillary electrophoresis revealed only a subinhibitory amount of AMP and no detectable GMP, and the addition of AMP or GMP to this medium also reduced competence 20- to 100-fold. Neither a functional stringent response system nor a functional phosphoenolpyruvate:glycose phosphotransferase system (PTS) was found to be required for purine-mediated repression. Added cAMP partially restored both transcription of competence genes and competence development, suggesting that purines may reduce the response to cAMP. Potential binding sites for the PurR repressor were identified in several competence genes, suggesting that competence is part of the PUR regulon. These observations are consistent with models of competence regulation, in which depleted purine pools signal the need for nucleotides, and support the hypothesis that competence evolved primarily for nucleotide acquisition.

摘要

天然感受态细菌摄取DNA为细胞提供了遗传信息和核苷酸。在流感嗜血杆菌中,感受态的发展既需要cAMP,也需要在饥饿条件下产生的一种未知信号。为了研究这种信号,在添加了核酸前体的培养基中检测了感受态诱导情况。添加生理水平的AMP和GMP可使感受态降低200倍,并阻止了必需的感受态基因comA和rec-2正常的感受态诱导转录。通常用于生长的丰富培养基只能诱导有限的感受态。毛细管电泳显示只有亚抑制量的AMP,没有可检测到的GMP,向这种培养基中添加AMP或GMP也会使感受态降低20至100倍。发现嘌呤介导的抑制作用既不需要功能性的严谨反应系统,也不需要功能性的磷酸烯醇式丙酮酸:糖磷酸转移酶系统(PTS)。添加的cAMP部分恢复了感受态基因的转录和感受态发展,这表明嘌呤可能会降低对cAMP的反应。在几个感受态基因中鉴定出了PurR阻遏物的潜在结合位点,这表明感受态是PUR调节子的一部分。这些观察结果与感受态调节模型一致,在该模型中,嘌呤池的耗尽表明需要核苷酸,并支持感受态主要是为获取核苷酸而进化的假说。

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