Institute for Hygiene and Microbiology, University of Würzburg, 97080, Würzburg, Germany.
Institute for Molecular Infection Biology (IMIB), University of Würzburg, 97080, Würzburg, Germany.
Nat Commun. 2020 Jun 4;11(1):2823. doi: 10.1038/s41467-020-16650-6.
FinO-domain proteins are a widespread family of bacterial RNA-binding proteins with regulatory functions. Their target spectrum ranges from a single RNA pair, in the case of plasmid-encoded FinO, to global RNA regulons, as with enterobacterial ProQ. To assess whether the FinO domain itself is intrinsically selective or promiscuous, we determine in vivo targets of Neisseria meningitidis, which consists of solely a FinO domain. UV-CLIP-seq identifies associations with 16 small non-coding sRNAs and 166 mRNAs. Meningococcal ProQ predominantly binds to highly structured regions and generally acts to stabilize its RNA targets. Loss of ProQ alters transcript levels of >250 genes, demonstrating that this minimal ProQ protein impacts gene expression globally. Phenotypic analyses indicate that ProQ promotes oxidative stress resistance and DNA damage repair. We conclude that FinO domain proteins recognize some abundant type of RNA shape and evolve RNA binding selectivity through acquisition of additional regions that constrain target recognition.
FinO 结构域蛋白是一类广泛存在于细菌中的 RNA 结合蛋白,具有调节功能。它们的靶标范围从质粒编码的 FinO 中的单个 RNA 对到全局性的 RNA 调控子,如肠杆菌 ProQ。为了评估 FinO 结构域本身是固有选择性的还是非特异性的,我们鉴定了脑膜炎奈瑟菌的体内靶标,该菌仅由一个 FinO 结构域组成。UV-CLIP-seq 鉴定了与 16 个小非编码 sRNA 和 166 个 mRNA 的关联。脑膜炎奈瑟菌的 ProQ 主要结合高度结构化的区域,通常起到稳定其 RNA 靶标的作用。ProQ 的缺失会改变超过 250 个基因的转录水平,这表明这种最小的 ProQ 蛋白会全局影响基因表达。表型分析表明,ProQ 促进了氧化应激抗性和 DNA 损伤修复。我们的结论是,FinO 结构域蛋白识别某些丰富的 RNA 形状,并通过获得额外的区域来限制靶标识别,从而进化出 RNA 结合的选择性。