Ng L C, Poh C L, Shingler V
Institute of Cell and Molecular Biology, Umeå University, Sweden.
J Bacteriol. 1995 Mar;177(6):1485-90. doi: 10.1128/jb.177.6.1485-1490.1995.
Pseudomonas putida P35X (NCIB 9869) metabolizes phenol and monomethylphenols via a chromosomally encoded meta-cleavage pathway. We have recently described a 13.4-kb fragment of the chromosome that codes for the first eight genes of the catabolic pathway and a divergently transcribed positive regulator, phhR. The eight structural genes lie in an operon, the phh operon, downstream of a -24 TGGC, -12 TTGC promoter sequence. Promoters of this class are recognized by RNA polymerase that utilizes the alternative sigma 54 factor encoded by rpoN (ntrA) and are positively regulated by activators of the NtrC family. In this study, we have identified the coding region for the 63-kDa PhhR gene product by nucleotide sequencing of a 2,040-bp region and polypeptide analysis. PhhR was found to have homology with the NtrC family of transcriptional activators, in particular with DmpR, the pVI150-encoded regulator of (methyl)phenol catabolism by Pseudomonas sp. strain CF600. By using a luciferase reporter system, PhhR alone was shown to be sufficient to activate transcription from the phh operon promoter in an RpoN+ background but not an RpoN- background. Luciferase reporter systems were also used to directly compare the aromatic effector profiles of PhhR and DmpR. Evidence that the difference in the growth substrate ranges of strains P35X and CF600 is due to the effector activation specificities of the regulators of these systems rather than the substrate specificities of the catabolic enzymes is presented.
恶臭假单胞菌P35X(NCIB 9869)通过染色体编码的间位裂解途径代谢苯酚和单甲基苯酚。我们最近描述了一个13.4 kb的染色体片段,它编码分解代谢途径的前八个基因以及一个反向转录的正调控因子phhR。这八个结构基因位于一个操纵子中,即phh操纵子,在一个-24 TGGC、-12 TTGC启动子序列的下游。这类启动子由利用rpoN(ntrA)编码的替代σ54因子的RNA聚合酶识别,并由NtrC家族的激活剂进行正调控。在本研究中,我们通过对一个2040 bp区域的核苷酸测序和多肽分析确定了63 kDa的PhhR基因产物的编码区。发现PhhR与转录激活剂的NtrC家族具有同源性,特别是与假单胞菌属CF600菌株中pVI150编码的(甲基)苯酚分解代谢调节因子DmpR。通过使用荧光素酶报告系统,结果表明在RpoN+背景下,单独的PhhR足以激活phh操纵子启动子的转录,但在RpoN-背景下则不能。荧光素酶报告系统还用于直接比较PhhR和DmpR的芳香效应物谱。本文提供的证据表明,菌株P35X和CF600生长底物范围的差异是由于这些系统的调节因子的效应物激活特异性,而非分解代谢酶的底物特异性。