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首页> 外文期刊>Environmental microbiology >Strict and direct transcriptional repression of the pobA gene by benzoate avoids 4-hydroxybenzoate degradation in the pollutant degrader bacterium Cupriavidus necator JMP134
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Strict and direct transcriptional repression of the pobA gene by benzoate avoids 4-hydroxybenzoate degradation in the pollutant degrader bacterium Cupriavidus necator JMP134

机译:苯甲酸酯对pobA基因的严格直接转录抑制可避免污染物降解细菌铜杯菌(Cupriavidus necator)JMP134中的4-羟基苯甲酸酯降解

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摘要

As other environmental bacteria, Cupriavidus necator JMP134 uses benzoate as preferred substrate in mixtures with 4-hydroxybenzoate, strongly inhibiting its degradation. The mechanism underlying this hierarchical use was studied. A C. necator benA mutant, defective in the first step of benzoate degradation, is unable to metabolize 4-hydroxybenzoate when benzoate is also included in the medium, indicating that this substrate and not one of its catabolic intermediates is directly triggering repression. Reverse transcription polymerase chain reaction analysis revealed that 4-hydroxybenzoate 3-hydroxylase-encoding pobA transcripts are nearly absent in presence of benzoate and a fusion of pobA promoter to lacZ reporter confirmed that benzoate drastically decreases the transcription of this gene. Expression of pobA driven by a heterologous promoter in C. necator benA mutant, allows growth on 4-hydroxybenzoate in presence of benzoate, overcoming its repressive effect. In contrast with other bacteria, regulators of benzoate catabolism do not participate in repression of 4-hydroxybenzoate degradation. Moreover, the effect of benzoate on pobA promoter can be observed in heterologous strains with the sole presence of PobR, the transcriptional activator of pobA gene, indicating that PobR is enough to fully reproduce the phenomenon. This novel mechanism for benzoate repression is probably mediated by direct action of benzoate over PobR.
机译:作为其他环境细菌,Cupriavidus necator JMP134在与4-羟基苯甲酸酯的混合物中使用苯甲酸酯作为首选底物,强烈抑制了其降解。研究了这种分层使用的基础机制。当苯甲酸酯也包含在培养基中时,在苯甲酸酯降解的第一步中有缺陷的C. necator benA突变体无法代谢4-羟基苯甲酸酯,表明该底物而不是其分解代谢中间体之一直接触发了阻抑作用。逆转录聚合酶链反应分析表明,在存在苯甲酸酯的情况下几乎不存在编码4-羟基苯甲酸酯3-羟化酶的pobA转录物,并且pobA启动子与lacZ的融合体证实了苯甲酸酯极大地降低了该基因的转录。由C. necator benA突变体中的异源启动子驱动的pobA的表达允许在存在苯甲酸酯的情况下在4-羟基苯甲酸酯上生长,从而克服了其抑制作用。与其他细菌相反,苯甲酸酯分解代谢的调节剂不参与4-羟基苯甲酸酯降解的抑制。此外,在仅存在PobR(pobA基因的转录激活因子)的异源菌株中,可以观察到苯甲酸酯对pobA启动子的影响,表明PobR足以完全重现该现象。苯甲酸酯抑制的这种新机制可能是由苯甲酸酯对PobR的直接作用介导的。

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