Department of Immunology and Infectious Diseases, Harvard T.H. Chan School of Public Health, Boston, MA 02115.
The Broad Institute of MIT and Harvard, Cambridge, MA 02142.
Proc Natl Acad Sci U S A. 2018 Jun 19;115(25):6464-6469. doi: 10.1073/pnas.1718003115. Epub 2018 Jun 5.
One key to the success of as a pathogen is its ability to reside in the hostile environment of the human macrophage. Bacteria adapt to stress through a variety of mechanisms, including the use of small regulatory RNAs (sRNAs), which posttranscriptionally regulate bacterial gene expression. However, very little is currently known about mycobacterial sRNA-mediated riboregulation. To date, mycobacterial sRNA discovery has been performed primarily in log-phase growth, and no direct interaction between any mycobacterial sRNA and its targets has been validated. Here, we performed large-scale sRNA discovery and expression profiling in during exposure to five pathogenically relevant stresses. From these data, we identified a subset of sRNAs that are highly induced in multiple stress conditions. We focused on one of these sRNAs, ncRv11846, here renamed mycobacterial regulatory sRNA in iron (MrsI). We characterized the regulon of MrsI and showed in mycobacteria that it regulates one of its targets, , through a direct binding interaction. MrsI mediates an iron-sparing response that is required for optimal survival of under iron-limiting conditions. However, MrsI is induced by multiple host-like stressors, which appear to trigger MrsI as part of an anticipatory response to impending iron deprivation in the macrophage environment.
作为病原体,分枝杆菌成功的一个关键因素是其能够在人类巨噬细胞的恶劣环境中生存。细菌通过多种机制适应应激,包括使用小的调节 RNA(sRNA),后者通过转录后调控细菌基因表达。然而,目前对于分枝杆菌 sRNA 介导的核糖调控知之甚少。迄今为止,分枝杆菌 sRNA 的发现主要是在对数生长期进行的,并且尚未验证任何分枝杆菌 sRNA 与其靶标之间的直接相互作用。在这里,我们在暴露于五种与发病相关的应激条件下对进行了大规模的 sRNA 发现和表达谱分析。从这些数据中,我们鉴定出了一组在多种应激条件下高度诱导的 sRNAs。我们专注于其中一种 sRNA,ncRv11846,在这里将其命名为铁调节分枝杆菌 sRNA(MrsI)。我们对 MrsI 的调控组进行了表征,并在分枝杆菌中表明,它通过直接结合相互作用来调节其靶标之一。MrsI 介导一种铁节约反应,这对于在缺铁条件下的最佳生存是必需的。然而,MrsI 被多种宿主样应激诱导,这似乎促使 MrsI 作为巨噬细胞环境中即将发生铁剥夺的预期反应的一部分。