Department of Molecular Biology, Umeå University, Umeå, SE 90187, Sweden.
Environ Microbiol. 2015 Jan;17(1):119-33. doi: 10.1111/1462-2920.12511. Epub 2014 Jun 25.
Expression of pathways for dissimilation of toxic aromatic compounds such as (methyl)phenols interfaces both stress-response and carbon catabolite repression control cascades. In Pseudomonas putida, carbon catabolite repression is mediated by the protein Crc - a translational repressor that counteracts utilization of less-preferred carbon sources as growth substrates until they are needed. In this work we dissect the regulatory role of the 5'-leader region (5'-LR) of the dmpR gene that encodes the master regulator of (methyl)phenol catabolism. Using deletion and substitution mutants combined with artificial manipulations of Crc availability in P. putida, we present evidence that a DNA motif within the 5'-leader region is critical for inhibition of the output from the Pr promoter that drives transcription of dmpR, while the RNA chaperone Hfq facilitates Crc-mediated translation repression through the 5'-leader region of the dmpR mRNA. The results are discussed in the light of a model in which Hfq assists Crc to target a sequence within a loop formed by secondary structure of the 5'-LR mRNA. Our results support the idea that Crc functions as a global translational inhibitor to co-ordinate hierarchical carbon utilization in Pseudomonads.
异化有毒芳香族化合物(如(甲基)酚)的途径的表达介由应激反应和碳分解代谢物阻遏控制级联。在恶臭假单胞菌中,碳分解代谢物阻遏由蛋白 Crc 介导——一种翻译抑制剂,在需要利用较不优先的碳源作为生长基质之前,它会拮抗其利用。在这项工作中,我们剖析了编码(甲基)酚代谢主调控因子的 dmpR 基因 5'- 前导区(5'-LR)的调节作用。通过使用缺失和替换突变体并结合在恶臭假单胞菌中人为操纵 Crc 的可用性,我们提供的证据表明,5'- 前导区中的一个 DNA 基序对于抑制由 Pr 启动子驱动的 dmpR 转录的输出是至关重要的,而 RNA 伴侣蛋白 Hfq 通过 dmpR mRNA 的 5'- 前导区促进 Crc 介导的翻译抑制。结果在一个模型中进行了讨论,该模型认为 Crc 作为一种全局翻译抑制剂,在假单胞菌中协调层次化的碳利用。我们的结果支持了这样一种观点,即 Crc 作为一种全局翻译抑制剂,在假单胞菌中协调碳利用的层级关系。