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首页> 外文期刊>Applied and Environmental Microbiology >Integration of Signals through Crc and PtsN in Catabolite Repression of Pseudomonas putida TOL Plasmid pWW0
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Integration of Signals through Crc and PtsN in Catabolite Repression of Pseudomonas putida TOL Plasmid pWW0

机译:通过Crc和PtsN信号整合在恶臭假单胞菌TOL质粒pWW0的分解代谢抑制中

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Toluene degradation in Pseudomonas putida KT2440 pWW0 plasmid is subjected to catabolite repression. Pu and PS1 promoters of the pWW0 TOL plasmid are down-regulated in vivo during exponential growth in rich medium. In cells growing on minimal medium, yeast extract (YE) addition mimics exponential-phase rich medium repression of these promoters. We have constructed and tested mutants in a series of global regulators described in Pseudomonas. We describe that a mutant in crc (catabolite repression control) partially relieves YE repression. Macroarray experiments show that crc transcription is strongly increased in the presence of YE, inversely correlated with TOL pathway expression. On the other hand, we have found that induced levels of expression from Pu and PS in the presence of YE are partially derepressed in a ptsN mutant of P. putida. PtsN but not Crc seems to directly interfere with XylR activation at target promoters. The effect of the double mutation in ptsN and crc is not the sum of the effects of each independent mutation and suggests that both regulators are elements of a common regulatory pathway. Basal expression levels from these promoters in the absence of inducer are still XylR dependent and are also repressed in the presence of yeast extract. Neither crc nor ptsN could relieve this repression.
机译:恶臭假单胞菌KT2440 pWW0质粒中的甲苯降解受到分解代谢物的抑制。 pWW0 TOL质粒的Pu和PS1启动子在丰富培养基中的指数生长过程中在体内被下调。在基本培养基上生长的细胞中,酵母提取物(YE)的添加模拟了这些启动子的指数相富集培养基抑制。我们已经在假单胞菌中描述的一系列全球调控因子中构建和测试了突变体。我们描述了一个突变体在crc(分解代谢物阻遏控制)部分缓解YE阻遏。宏阵列实验表明,在YE存在下crc转录会大大增加,与TOL途径表达呈负相关。另一方面,我们发现在恶臭假单胞菌的ptsN突变体中,存在YE时Pu和PS诱导的表达水平被部分抑制。 PtsN而不是Crc似乎直接干扰目标启动子处的XylR激活。 ptsN和crc中双重突变的作用并非每个独立突变作用的总和,表明这两个调节子都是共同调节途径的组成部分。在缺乏诱导剂的情况下,来自这些启动子的基础表达水平仍然是XylR依赖性的,并且在存在酵母提取物的情况下也受到抑制。 crc和ptsN都无法缓解这种压制。

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