Grad-seq analysis of Enterococcus faecalis and Enterococcus faecium provides a global view of RNA and protein complexes in these two opportunistic pathogens.

microLife Pub Date : 2022-12-27 eCollection Date: 2023-01-01 DOI:10.1093/femsml/uqac027
Charlotte Michaux, Milan Gerovac, Elisabeth E Hansen, Lars Barquist, Jörg Vogel
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Abstract

Enterococcus faecalis and Enterococcus faecium are major nosocomial pathogens. Despite their relevance to public health and their role in the development of bacterial antibiotic resistance, relatively little is known about gene regulation in these species. RNA-protein complexes serve crucial functions in all cellular processes associated with gene expression, including post-transcriptional control mediated by small regulatory RNAs (sRNAs). Here, we present a new resource for the study of enterococcal RNA biology, employing the Grad-seq technique to comprehensively predict complexes formed by RNA and proteins in E. faecalis V583 and E. faecium AUS0004. Analysis of the generated global RNA and protein sedimentation profiles led to the identification of RNA-protein complexes and putative novel sRNAs. Validating our data sets, we observe well-established cellular RNA-protein complexes such as the 6S RNA-RNA polymerase complex, suggesting that 6S RNA-mediated global control of transcription is conserved in enterococci. Focusing on the largely uncharacterized RNA-binding protein KhpB, we use the RIP-seq technique to predict that KhpB interacts with sRNAs, tRNAs, and untranslated regions of mRNAs, and might be involved in the processing of specific tRNAs. Collectively, these datasets provide departure points for in-depth studies of the cellular interactome of enterococci that should facilitate functional discovery in these and related Gram-positive species. Our data are available to the community through a user-friendly Grad-seq browser that allows interactive searches of the sedimentation profiles (https://resources.helmholtz-hiri.de/gradseqef/).

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通过对粪肠球菌和粪肠球菌进行 Grad-seq 分析,可以全面了解这两种机会性病原体中的 RNA 和蛋白质复合物。
粪肠球菌和粪肠球菌是主要的医院病原体。尽管它们与公共卫生息息相关,并在细菌抗生素耐药性的形成过程中扮演着重要角色,但人们对这些细菌的基因调控却知之甚少。RNA 蛋白复合物在所有与基因表达相关的细胞过程中发挥着关键作用,包括由小调控 RNA(sRNA)介导的转录后控制。在这里,我们利用 Grad-seq 技术全面预测了粪肠球菌 V583 和粪肠球菌 AUS0004 中 RNA 和蛋白质形成的复合物,为研究肠球菌 RNA 生物学提供了新的资源。通过分析生成的全局 RNA 和蛋白质沉降曲线,我们确定了 RNA 蛋白复合物和推测的新型 sRNA。通过验证我们的数据集,我们观察到了成熟的细胞 RNA 蛋白复合物,如 6S RNA-RNA 聚合酶复合物,这表明 6S RNA 介导的全局转录控制在肠球菌中是保守的。我们利用 RIP-seq 技术重点研究了基本未定性的 RNA 结合蛋白 KhpB,预测 KhpB 与 sRNA、tRNA 和 mRNA 的非翻译区相互作用,并可能参与特定 tRNA 的处理。总之,这些数据集为深入研究肠球菌的细胞相互作用组提供了出发点,有助于发现肠球菌及相关革兰氏阳性菌的功能。我们的数据可通过用户友好的 Grad-seq 浏览器提供给社区,该浏览器允许对沉降曲线进行交互式搜索 (https://resources.helmholtz-hiri.de/gradseqef/)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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