首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Crc Global Regulator Inhibits the Pseudomonas putida pWW0 Toluene/Xylene Assimilation Pathway by Repressing the Translation of Regulatory and Structural Genes
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The Crc Global Regulator Inhibits the Pseudomonas putida pWW0 Toluene/Xylene Assimilation Pathway by Repressing the Translation of Regulatory and Structural Genes

机译:Crc全球监管机构通过抑制调节基因和结构基因的翻译抑制恶臭假单胞菌pWW0甲苯/二甲苯同化途径。

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摘要

In Pseudomonas putida, the expression of the pWW0 plasmid genes for the toluene/xylene assimilation pathway (the TOL pathway) is subject to complex regulation in response to environmental and physiological signals. This includes strong inhibition via catabolite repression, elicited by the carbon sources that the cells prefer to hydrocarbons. The Crc protein, a global regulator that controls carbon flow in pseudomonads, has an important role in this inhibition. Crc is a translational repressor that regulates the TOL genes, but how it does this has remained unknown. This study reports that Crc binds to sites located at the translation initiation regions of the mRNAs coding for XylR and XylS, two specific transcription activators of the TOL genes. Unexpectedly, eight additional Crc binding sites were found overlapping the translation initiation sites of genes coding for several enzymes of the pathway, all encoded within two polycistronic mRNAs. Evidence is provided supporting the idea that these sites are functional. This implies that Crc can differentially modulate the expression of particular genes within polycistronic mRNAs. It is proposed that Crc controls TOL genes in two ways. First, Crc inhibits the translation of the XylR and XylS regulators, thereby reducing the transcription of all TOL pathway genes. Second, Crc inhibits the translation of specific structural genes of the pathway, acting mainly on proteins involved in the first steps of toluene assimilation. This ensures a rapid inhibitory response that reduces the expression of the toluene/xylene degradation proteins when preferred carbon sources become available.
机译:在恶臭假单胞菌中,甲苯/二甲苯同化途径(TOL途径)的pWW0质粒基因的表达受环境和生理信号的影响而受到复杂的调节。这包括通过分解代谢物抑制产生的强抑制作用,这种抑制作用是由碳源引起的,即细胞比碳氢化合物更喜欢。 Crc蛋白是一种控制假单胞菌碳流量的全局调节剂,在这种抑制作用中起着重要作用。 Crc是一种调节TOL基因的翻译阻遏物,但是如何做到这一点仍然未知。这项研究报告说,Crc结合到位于编码TOL基因的两个特定转录激活因子XylR和XylS的mRNA的翻译起始区域的位点。出乎意料的是,发现八个额外的Crc结合位点与编码该途径的几种酶的基因的翻译起始位点重叠,均在两个多顺反子mRNA中编码。提供的证据支持这些站点可以正常运行的想法。这意味着Crc可以差异调节多顺反子mRNA中特定基因的表达。提出Crc以两种方式控制TOL基因。首先,Crc抑制XylR和XylS调节剂的翻译,从而减少所有TOL途径基因的转录。其次,Crc抑制该途径的特定结构基因的翻译,主要作用于参与甲苯同化第一步的蛋白质。这样可确保获得快速的抑制反应,从而在可获得首选碳源时降低甲苯/二甲苯降解蛋白的表达。

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