首页> 美国卫生研究院文献>Journal of Bacteriology >Role of the crc Gene in Catabolic Repression of the Pseudomonas putida GPo1 Alkane Degradation Pathway
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Role of the crc Gene in Catabolic Repression of the Pseudomonas putida GPo1 Alkane Degradation Pathway

机译:crc基因在恶臭假单胞菌GPo1烷烃降解途径的分解代谢抑制中的作用

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摘要

Expression of the alkane degradation pathway encoded in the OCT plasmid of Pseudomonas putida GPo1 is induced in the presence of alkanes by the AlkS regulator, and it is down-regulated by catabolic repression. The catabolic repression effect reduces the expression of the two AlkS-activated promoters of the pathway, named PalkB and PalkS2. The P. putida Crc protein participates in catabolic repression of some metabolic pathways for sugars and nitrogenated compounds. Here, we show that Crc has an important role in the catabolic repression exerted on the P. putida GPo1 alkane degradation pathway when cells grow exponentially in a rich medium. Interestingly, Crc plays little or no role on the catabolic repression exerted by some organic acids in a defined medium, which shows that these two types of catabolic repression can be genetically distinguished. Disruption of the crc gene led to a six- to sevenfold increase in the levels of the mRNAs arising from the AlkS-activated PalkB and PalkS2 promoters in cells growing exponentially in rich medium. This was not due to an increase in the half-lives of these mRNAs. Since AlkS activates the expression of its own gene and seems to be present in limiting amounts, the higher mRNA levels observed in the absence of Crc could arise from an increase in either transcription initiation or in the translation efficiency of the alkS mRNA. Both alternatives would lead to increased AlkS levels and hence to elevated expression of PalkB and PalkS2. High expression of alkS from a heterologous promoter eliminated catabolic repression. Our results indicate that catabolic repression in rich medium is directed to down-regulate the levels of the AlkS activator. Crc would thus modulate, directly or indirectly, the levels of AlkS.
机译:AlkS调节剂在烷烃存在下诱导恶臭假单胞菌GPo1的OCT质粒中编码的烷烃降解途径的表达,并通过分解代谢阻抑下调。分解代谢抑制作用降低了该途径的两个被AlkS激活的启动子的表达,称为PalkB和PalkS2。恶臭假单胞菌Crc蛋白参与糖和含氮化合物的某些代谢途径的分解代谢抑制。在这里,我们显示了当细胞在丰富的培养基中成指数生长时,Crc在恶臭假单胞菌GPo1烷烃降解途径中的分解代谢抑制中具有重要作用。有趣的是,Crc在限定的培养基中对某些有机酸所发挥的分解代谢抑制作用几乎没有或没有作用,这表明这两种类型的分解代谢抑制可在遗传上加以区分。 crc基因的破坏导致AlkS激活的PalkB和PalkS2启动子在丰富培养基中呈指数增长的情况下,mRNA的水平增加了6到7倍。这不是由于这些mRNA的半衰期增加。由于AlkS激活其自身基因的表达并似乎以有限的量存在,因此在缺少Crc的情况下观察到的更高的mRNA水平可能来自alkS mRNA的转录起始或翻译效率的提高。两种选择都将导致AlkS水平升高,从而导致PalkB和PalkS2表达升高。来自异源启动子的alkS的高表达消除了分解代谢阻遏。我们的结果表明,富含培养基的分解代谢抑制作用旨在下调AlkS激活剂的水平。因此,Crc将直接或间接调节AlkS的水平。

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