Departamento de Biotecnología Microbiana, Centro Nacional de Biotecnología, CSIC, Darwin 3, Cantoblanco, 28049, Madrid, Spain.
Environ Microbiol. 2015 Jan;17(1):105-18. doi: 10.1111/1462-2920.12499. Epub 2014 Jun 2.
The Crc protein is a global regulator that has a key role in catabolite repression and optimization of metabolism in Pseudomonads. Crc inhibits gene expression post-transcriptionally, preventing translation of mRNAs bearing an AAnAAnAA motif [the catabolite activity (CA) motif] close to the translation start site. Although Crc was initially believed to bind RNA by itself, this idea was recently challenged by results suggesting that a protein co-purifying with Crc, presumably the Hfq protein, could account for the detected RNA-binding activity. Hfq is an abundant protein that has a central role in post-transcriptional gene regulation. Herein, we show that the Pseudomonas putida Hfq protein can recognize the CA motifs of RNAs through its distal face and that Crc facilitates formation of a more stable complex at these targets. Crc was unable to bind RNA in the absence of Hfq. However, pull-down assays showed that Crc and Hfq can form a co-complex with RNA containing a CA motif in vitro. Inactivation of the hfq or the crc gene impaired catabolite repression to a similar extent. We propose that Crc and Hfq cooperate in catabolite repression, probably through forming a stable co-complex with RNAs containing CA motifs to result in inhibition of translation initiation.
Crc 蛋白是一种全局调控因子,在假单胞菌中对分解代谢物抑制和代谢优化起着关键作用。Crc 在后转录水平抑制基因表达,防止靠近翻译起始位点的含有 AAnAAnAA 基序(分解代谢物活性 (CA) 基序)的 mRNA 进行翻译。尽管最初认为 Crc 可以单独结合 RNA,但最近的研究结果挑战了这一观点,表明与 Crc 共纯化的一种假定蛋白(Hfq 蛋白)可能解释了检测到的 RNA 结合活性。Hfq 是一种丰富的蛋白质,在转录后基因调控中起着核心作用。在此,我们表明,假单胞菌的 Hfq 蛋白可以通过其远端表面识别 RNA 的 CA 基序,并且 Crc 有助于在这些靶标上形成更稳定的复合物。没有 Hfq,Crc 无法结合 RNA。然而,下拉实验表明,Crc 和 Hfq 可以在体外与含有 CA 基序的 RNA 形成共复合物。hfq 或 crc 基因的失活在分解代谢物抑制方面造成类似的损伤。我们提出 Crc 和 Hfq 可能通过与含有 CA 基序的 RNA 形成稳定的共复合物来协同作用于分解代谢物抑制,从而抑制翻译起始。