Department of Biotechnology and Food Sciences, Norwegian University of Science and Technology, 7003 Trondheim, Norway.
Int J Mol Sci. 2021 Apr 28;22(9):4686. doi: 10.3390/ijms22094686.
Genome-wide transcriptomic data obtained in RNA-seq experiments can serve as a reliable source for identification of novel regulatory elements such as riboswitches and promoters. Riboswitches are parts of the 5' untranslated region of mRNA molecules that can specifically bind various metabolites and control gene expression. For that reason, they have become an attractive tool for engineering biological systems, especially for the regulation of metabolic fluxes in industrial microorganisms. Promoters in the genomes of prokaryotes are located upstream of transcription start sites and their sequences are easily identifiable based on the primary transcriptome data. MGA3 is a candidate for use as an industrial workhorse in methanol-based bioprocesses and its metabolism has been studied in systems biology approaches in recent years, including transcriptome characterization through RNA-seq. Here, we identify a putative lysine riboswitch in and test and characterize it. We also select and experimentally verify 10 putative -derived promoters differing in their predicted strength and present their functionality in combination with the lysine riboswitch. We further explore the potential of a -derived purine riboswitch for regulation of gene expression in the thermophilic , establishing a novel tool for inducible gene expression in this bacterium.
从 RNA-seq 实验中获得的全基因组转录组数据可以作为识别新型调节元件(如核糖开关和启动子)的可靠来源。核糖开关是 mRNA 分子 5'非翻译区的一部分,可特异性结合各种代谢物并控制基因表达。因此,它们已成为工程生物系统的一种有吸引力的工具,特别是在工业微生物代谢通量的调控方面。原核生物基因组中的启动子位于转录起始位点的上游,根据初级转录组数据很容易识别它们的序列。MGA3 是甲醇基生物工艺中工业用马的候选者,近年来已在系统生物学方法中对其代谢进行了研究,包括通过 RNA-seq 进行转录组特征描述。在这里,我们鉴定了 中的一个假定赖氨酸核糖开关,并对其进行了测试和表征。我们还选择并实验验证了 10 个具有不同预测强度的 -衍生启动子,并展示了它们与赖氨酸核糖开关结合的功能。我们进一步探索了 -衍生嘌呤核糖开关在调控嗜热 基因表达中的潜力,为该细菌中诱导型基因表达建立了一种新工具。