Haning Katie, Engels Sean M, Williams Paige, Arnold Margaret, Contreras Lydia M
McKetta Department of Chemical Engineering, The University of Texas at Austin, Austin, TX, United States.
Department of Aerospace Engineering & Engineering Mechanics, The University of Texas at Austin, Austin, TX, United States.
Front Microbiol. 2020 Jan 10;10:2987. doi: 10.3389/fmicb.2019.02987. eCollection 2019.
As global controllers of gene expression, small RNAs represent powerful tools for engineering complex phenotypes. However, a general challenge prevents the more widespread use of sRNA engineering strategies: mechanistic analysis of these regulators in bacteria lags far behind their high-throughput search and discovery. This makes it difficult to understand how to efficiently identify useful sRNAs to engineer a phenotype of interest. To help address this, we developed a forward systems approach to identify naturally occurring sRNAs relevant to a desired phenotype: RNA-seq Examiner for Phenotype-Informed Network Engineering (REFINE). This pipeline uses existing RNA-seq datasets under different growth conditions. It filters the total transcriptome to locate and rank regulatory-RNA-containing regions that can influence a metabolic phenotype of interest, without the need for previous mechanistic characterization. Application of this approach led to the uncovering of six novel sRNAs related to ethanol tolerance in non-model ethanol-producing bacterium . Furthermore, upon overexpressing multiple sRNA candidates predicted by REFINE, we demonstrate improved ethanol tolerance reflected by up to an approximately twofold increase in relative growth rate compared to controls not expressing these sRNAs in 7% ethanol (v/v) RMG-supplemented media. In this way, the REFINE approach informs strain-engineering strategies that we expect are applicable for general strain engineering.
作为基因表达的全局调控因子,小RNA是构建复杂表型的有力工具。然而,一个普遍的挑战阻碍了小RNA工程策略的更广泛应用:细菌中这些调控因子的机制分析远远落后于它们的高通量搜索和发现。这使得人们难以理解如何有效地鉴定出有用的小RNA来构建感兴趣的表型。为了帮助解决这一问题,我们开发了一种正向系统方法来鉴定与所需表型相关的天然存在的小RNA:用于表型知情网络工程的RNA测序检查器(REFINE)。该流程使用不同生长条件下现有的RNA测序数据集。它对整个转录组进行筛选,以定位和排名可能影响感兴趣代谢表型的含调控RNA区域,而无需先前的机制表征。应用这种方法揭示了与非模式产乙醇细菌的乙醇耐受性相关的6种新型小RNA。此外,在过表达REFINE预测的多个小RNA候选物后,我们证明了乙醇耐受性得到改善,在添加7%乙醇(v/v)的RMG培养基中,与未表达这些小RNA的对照相比,相对生长速率提高了约两倍。通过这种方式,REFINE方法为菌株工程策略提供了信息,我们预计这些策略适用于一般的菌株工程。