Architecture et Réactivité de l'ARN, Université de Strasbourg, CNRS, IBMC, Strasbourg, France.
PLoS Genet. 2012 Jun;8(6):e1002782. doi: 10.1371/journal.pgen.1002782. Epub 2012 Jun 28.
RNA turnover plays an important role in both virulence and adaptation to stress in the Gram-positive human pathogen Staphylococcus aureus. However, the molecular players and mechanisms involved in these processes are poorly understood. Here, we explored the functions of S. aureus endoribonuclease III (RNase III), a member of the ubiquitous family of double-strand-specific endoribonucleases. To define genomic transcripts that are bound and processed by RNase III, we performed deep sequencing on cDNA libraries generated from RNAs that were co-immunoprecipitated with wild-type RNase III or two different cleavage-defective mutant variants in vivo. Several newly identified RNase III targets were validated by independent experimental methods. We identified various classes of structured RNAs as RNase III substrates and demonstrated that this enzyme is involved in the maturation of rRNAs and tRNAs, regulates the turnover of mRNAs and non-coding RNAs, and autoregulates its synthesis by cleaving within the coding region of its own mRNA. Moreover, we identified a positive effect of RNase III on protein synthesis based on novel mechanisms. RNase III-mediated cleavage in the 5' untranslated region (5'UTR) enhanced the stability and translation of cspA mRNA, which encodes the major cold-shock protein. Furthermore, RNase III cleaved overlapping 5'UTRs of divergently transcribed genes to generate leaderless mRNAs, which constitutes a novel way to co-regulate neighboring genes. In agreement with recent findings, low abundance antisense RNAs covering 44% of the annotated genes were captured by co-immunoprecipitation with RNase III mutant proteins. Thus, in addition to gene regulation, RNase III is associated with RNA quality control of pervasive transcription. Overall, this study illustrates the complexity of post-transcriptional regulation mediated by RNase III.
RNA 周转在革兰氏阳性人类病原体金黄色葡萄球菌的毒力和应激适应中都起着重要作用。然而,这些过程中涉及的分子参与者和机制仍知之甚少。在这里,我们探索了金黄色葡萄球菌内切核糖核酸酶 III(RNase III)的功能,RNase III 是双链特异性内切核糖核酸酶普遍家族的成员。为了定义与 RNase III 结合并加工的基因组转录本,我们对与野生型 RNase III 或两种不同的体内无切割缺陷突变体共免疫沉淀的 RNA 进行了深度测序 cDNA 文库。通过独立的实验方法验证了几个新鉴定的 RNase III 靶标。我们鉴定了几种结构 RNA 作为 RNase III 的底物,并证明该酶参与 rRNA 和 tRNA 的成熟,调节 mRNA 和非编码 RNA 的周转,以及通过自身 mRNA 编码区内的切割来自我调节其合成。此外,我们根据新的机制确定了 RNase III 对蛋白质合成的积极影响。RNase III 在 5'非翻译区(5'UTR)的切割增强了编码主要冷休克蛋白的 cspA mRNA 的稳定性和翻译。此外,RNase III 切割转录方向相反的基因的重叠 5'UTR,产生无启动子的 mRNA,这构成了一种新的协调邻近基因的方式。与最近的发现一致,覆盖 44%注释基因的低丰度反义 RNA 被 RNase III 突变蛋白的共免疫沉淀捕获。因此,除了基因调控外,RNase III 还与普遍转录的 RNA 质量控制有关。总的来说,这项研究说明了由 RNase III 介导的转录后调控的复杂性。