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Control of Butanol Formation in Clostridium acetobutylicum by Transcriptional Activation

机译:通过转录激活控制丙酮丁醇梭菌中丁醇的形成

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The sol operon of Clostridium acetobutylicum is the essential transcription unit for formation of the solvents butanol and acetone. The recent proposal that transcriptional regulation of this operon is controlled by the repressor Orf5/SolR (R. V. Nair, E. M. Green, D. E. Watson, G. N. Bennett, and E. T. Papoutsakis, J. Bacteriol. 181:319-330, 1999) was found to be incorrect. Instead, regulation depends on activation, most probably by the multivalent transcription factor Spo0A. The operon is transcribed from a single promoter. A second signal identified in primer extension studies results from mRNA processing and can be observed only in the natural host, not in a heterologous host. The first structural gene in the operon (adhE, encoding a bifunctional butyraldehyde/butanol dehydrogenase) is translated into two different proteins, the mature AdhE enzyme and the separate butanol dehydrogenase domain. The promoter of the sol operon is preceded by three imperfect repeats and a putative Spo0A-binding motif, which partially overlaps with repeat 3 (R3). Reporter gene analysis performed with the lacZ gene of Thermoanaerobacterium thermosulfurigenes and targeted mutations of the regulatory region revealed that the putative Spo0A-binding motif, R3, and R1 are essential for control. The data obtained also indicate that an additional activator protein is involved.
机译:丙酮丁醇梭菌的 sol 操纵子是丁醇和丙酮溶剂形成的必需转录单位。发现该操纵子的转录调控由阻遏物Orf5 / SolR(RV Nair,EM Green,DE Watson,GN Bennett和ET Papoutsakis,J. Bacteriol。181:319-330,1999)控制的最新提议。不正确相反,调节取决于激活,最有可能取决于多价转录因子Spo0A。操纵子从单个启动子转录。在引物延伸研究中鉴定出的第二个信号来自mRNA加工,只能在天然宿主中观察到,而在异源宿主中则不能观察到。操纵子中的第一个结构基因( adhE ,编码双功能丁醛/​​丁醇脱氢酶)被翻译成两种不同的蛋白质,即成熟的AdhE酶和单独的丁醇脱氢酶结构域。 sol 操纵子的启动子之前是三个不完美的重复序列和一个假定的Spo0A结合基序,该基序与重复序列3(R3)部分重叠。用热嗜热厌氧杆菌的 基因和调控区域的定向突变进行的记者基因分析表明,假定的Spo0A-结合基序R3和R1对于控制至关重要。所获得的数据还表明涉及另外的激活蛋白。

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