Institut für Mikrobiologie und Molekularbiologie; Universität Giessen; Giessen, Germany.
RNA Biol. 2013 Mar;10(3):347-52. doi: 10.4161/rna.23769. Epub 2013 Feb 7.
Living cells use a variety of regulatory network motifs for accurate gene expression in response to changes in their environment or during differentiation processes. In Rhodobacter sphaeroides, a complex regulatory network controls expression of photosynthesis genes to guarantee optimal energy supply on one hand and to avoid photooxidative stress on the other hand. Recently, we identified a mixed incoherent feed-forward loop comprising the transcription factor PrrA, the sRNA PcrZ and photosynthesis target genes as part of this regulatory network. This point-of-view provides a comparison to other described feed-forward loops and discusses the physiological relevance of PcrZ in more detail.
活细胞使用各种调节网络基序来精确地表达基因,以响应其环境变化或在分化过程中的变化。在球形红杆菌中,一个复杂的调节网络控制着光合作用基因的表达,一方面保证了最佳的能量供应,另一方面避免了光氧化应激。最近,我们确定了一个由转录因子 PrrA、sRNA PcrZ 和光合作用靶基因组成的混合非相干前馈回路作为这个调节网络的一部分。这篇观点文章提供了与其他描述的前馈回路的比较,并更详细地讨论了 PcrZ 的生理相关性。