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Identification of the promoter for a peptide antibiotic biosynthesis gene from Bacillus brevis and its regulation in Bacillus subtilis.

机译:短芽孢杆菌肽抗生素生物合成基因启动子的鉴定及其在枯草芽孢杆菌中的调控。

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摘要

Tyrocidine is a cyclic decapeptide antibiotic which is produced and secreted by stationary-phase cells of the sporeforming bacterium Bacillus brevis. We identified the promoter for the B. brevis structural gene (tycA) for tyrocidine synthetase I, the enzyme catalyzing the first step in tyrocidine biosynthesis, and studied its regulation in cells of B. brevis and Bacillus subtilis. Transcription from the tycA promoter was induced at the end of the exponential phase of the growth cycle in B. brevis cells growing in sporulation medium. To study the regulation of tycA in B. subtilis, we constructed a derivative of the B. subtilis bacteriophage SP beta containing a transcriptional fusion of the tycA promoter to the lacZ gene of Escherichia coli and introduced the tycA-lacZ operon fusion by means of specialized transduction into sporulation mutants known to be blocked in sporulation-associated antibiotic production. Our principal finding was that tycA-directed lacZ expression was impaired in the stage-0 mutants with mutations spo0A, spo0B, and spo0E but not in spo0C, spo0F, spo0H, or spo+ bacteria. The dependence on the spo0A gene product could be entirely bypassed by an abrB suppressor mutation, which caused tycA-lacZ to be transcribed constitutively at all stages of growth. A simple model is proposed for the mechanism of tycA induction based on the Spo0A-dependent inactivation of Ab-B protein, which is proposed to be a negative regulator of tycA transcription.
机译:噻唑烷是一种环状十肽抗生素,由短芽孢杆菌芽孢杆菌的固定相细胞产生和分泌。我们为酪氨酸合成酶I鉴定了短双歧杆菌结构基因(tycA)的启动子,该酶催化酪氨酸生物合成的第一步,并研究了其在短双歧杆菌和枯草芽孢杆菌细胞中的调控。在孢子形成培养基中生长的短双歧杆菌细胞中,在生长周期的指数期结束时诱导tycA启动子的转录。为了研究tycA在枯草芽孢杆菌中的调控,我们构建了枯草芽孢杆菌噬菌体SP beta的衍生物,其中含有tycA启动子与大肠杆菌lacZ基因的转录融合体,并通过专门的方法引入了tycA-lacZ操纵子融合体。转导到形成孢子的突变体中,该突变体在与孢子形成有关的抗生素生产中被阻断。我们的主要发现是在spo0A,spo0B和spo0E突变的0期突变体中tycA指导的lacZ表达受损,但在spo0C,spo0F,spo0H或spo +细菌中却没有。可以通过abrB抑制子突变完全绕过对spo0A基因产物的依赖性,该突变导致tycA-lacZ在生长的所有阶段都组成性转录。针对Ab-B蛋白的Spo0A依赖性失活,提出了一个简单的tycA诱导机制模型,该模型被认为是tycA转录的负调节剂。

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