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睾丸酮丛毛单胞菌R5中苯酚代谢酶调节因子层级体系中处于高水平的一种AraC/XylS家族成员。

An AraC/XylS family member at a high level in a hierarchy of regulators for phenol-metabolizing enzymes in Comamonas testosteroni R5.

作者信息

Teramoto Maki, Ohnishi Kouhei, Harayama Shigeaki, Watanabe Kazuya

机构信息

Marine Biotechnology Institute, Kamaishi Laboratories, Kamaishi City, Iwate 026-0001, Japan.

出版信息

J Bacteriol. 2002 Jul;184(14):3941-6. doi: 10.1128/JB.184.14.3941-3946.2002.

Abstract

Comamonas testosteroni strain R5 expresses a higher level of phenol-oxygenating activity than any other bacterial strain so far characterized. The expression of the operon encoding multicomponent phenol hydroxylase (mPH), which is responsible for the phenol-oxygenating activity, is controlled by two transcriptional regulators, PhcS and PhcR, in strain R5. In this study, we identified a third transcriptional regulator for the mPH operon (PhcT) that belongs to the AraC/XylS family. While the disruption of phcT in strain R5 significantly reduced the expression of the mPH operon, it did not eliminate the expression. However, the disruption of phcT in strain R5 increased the expression of phcR. The phenol-oxygenating activity was abolished by the disruption of phcR, indicating that PhcT alone was not sufficient to activate the expression of the mPH operon. The disruption of phcS has been shown in our previous study to confer the ability of strain R5 to express the mPH operon in the absence of the genuine substrate for mPH. PhcT was not involved in the gratuitous expression. Strain R5 thus possesses a more elaborate mechanism for regulating the mPH operon expression than has been found in other bacteria.

摘要

睾丸酮丛毛单胞菌R5菌株表达的酚氧化活性水平高于迄今所鉴定的任何其他细菌菌株。负责酚氧化活性的多组分酚羟化酶(mPH)编码操纵子的表达在R5菌株中受两个转录调节因子PhcS和PhcR的控制。在本研究中,我们鉴定出mPH操纵子的第三个转录调节因子(PhcT),它属于AraC/XylS家族。虽然R5菌株中phcT的缺失显著降低了mPH操纵子的表达,但并未消除该表达。然而,R5菌株中phcT的缺失增加了phcR的表达。phcR的缺失消除了酚氧化活性,这表明单独的PhcT不足以激活mPH操纵子的表达。在我们之前的研究中已表明,phcS的缺失赋予了R5菌株在缺乏mPH真正底物的情况下表达mPH操纵子的能力。PhcT不参与组成型表达。因此,R5菌株拥有一种比其他细菌中发现的更为精细的调节mPH操纵子表达的机制。

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本文引用的文献

1
PhcS represses gratuitous expression of phenol-metabolizing enzymes in Comamonas testosteroni R5.
J Bacteriol. 2001 Jul;183(14):4227-34. doi: 10.1128/JB.183.14.4227-4234.2001.
5
Adaptation of Comamonas testosteroni TA441 to utilize phenol: organization and regulation of the genes involved in phenol degradation.
Microbiology (Reading). 1998 Oct;144 ( Pt 10):2895-2903. doi: 10.1099/00221287-144-10-2895.
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Phenol hydroxylase cloned from Ralstonia eutropha strain E2 exhibits novel kinetic properties.
Microbiology (Reading). 1998 Jul;144 ( Pt 7):1765-1772. doi: 10.1099/00221287-144-7-1765.
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Arac/XylS family of transcriptional regulators.
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