Vercruysse Maarten, Köhrer Caroline, Shen Yang, Proulx Sandra, Ghosal Anubrata, Davies Bryan W, RajBhandary Uttam L, Walker Graham C
Department of Biology, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA.
Department of Electrical and Computer Engineering, TEES-AgriLife Center for Bioinformatics and Genomic Systems Engineering, Texas A&M University, College Station, Texas, USA.
mBio. 2016 Nov 8;7(6):e01785-16. doi: 10.1128/mBio.01785-16.
YbeY is part of a core set of RNases in Escherichia coli and other bacteria. This highly conserved endoribonuclease has been implicated in several important processes such as 16S rRNA 3' end maturation, 70S ribosome quality control, and regulation of mRNAs and small noncoding RNAs, thereby affecting cellular viability, stress tolerance, and pathogenic and symbiotic behavior of bacteria. Thus, YbeY likely interacts with numerous protein or RNA partners that are involved in various aspects of cellular physiology. Using a bacterial two-hybrid system, we identified several proteins that interact with YbeY, including ribosomal protein S11, the ribosome-associated GTPases Era and Der, YbeZ, and SpoT. In particular, the interaction of YbeY with S11 and Era provides insight into YbeY's involvement in the 16S rRNA maturation process. The three-way association between YbeY, S11, and Era suggests that YbeY is recruited to the ribosome where it could cleave the 17S rRNA precursor endonucleolytically at or near the 3' end maturation site. Analysis of YbeY missense mutants shows that a highly conserved beta-sheet in YbeY-and not amino acids known to be important for YbeY's RNase activity-functions as the interface between YbeY and S11. This protein-interacting interface of YbeY is needed for correct rRNA maturation and stress regulation, as missense mutants show significant phenotypic defects. Additionally, structure-based in silico prediction of putative interactions between YbeY and the Era-30S complex through protein docking agrees well with the in vivo results.
Ribosomes are ribonucleoprotein complexes responsible for a key cellular function, protein synthesis. Their assembly is a highly coordinated process of RNA cleavage, RNA posttranscriptional modification, RNA conformational changes, and protein-binding events. Many open questions remain after almost 5 decades of study, including which RNase is responsible for final processing of the 16S rRNA 3' end. The highly conserved RNase YbeY, belonging to a core set of RNases essential in many bacteria, was previously shown to participate in 16S rRNA processing and ribosome quality control. However, detailed mechanistic insight into YbeY's ribosome-associated function has remained elusive. This work provides the first evidence that YbeY is recruited to the ribosome through interaction with proteins involved in ribosome biogenesis (i.e., ribosomal protein S11, Era). In addition, we identified key residues of YbeY involved in the interaction with S11 and propose a possible binding mode of YbeY to the ribosome using in silico docking.
YbeY是大肠杆菌和其他细菌中一组核心核糖核酸酶的一部分。这种高度保守的内切核糖核酸酶参与了多个重要过程,如16S rRNA 3'端成熟、70S核糖体质量控制以及mRNA和小非编码RNA的调控,从而影响细菌的细胞活力、应激耐受性以及致病和共生行为。因此,YbeY可能与众多参与细胞生理学各个方面的蛋白质或RNA伙伴相互作用。利用细菌双杂交系统,我们鉴定了几种与YbeY相互作用的蛋白质,包括核糖体蛋白S11、核糖体相关GTP酶Era和Der、YbeZ以及SpoT。特别是,YbeY与S11和Era的相互作用为YbeY参与16S rRNA成熟过程提供了深入了解。YbeY、S11和Era之间的三方关联表明,YbeY被招募到核糖体,在那里它可以在3'端成熟位点或其附近对17S rRNA前体进行内切核酸酶切割。对YbeY错义突变体的分析表明,YbeY中一个高度保守的β-折叠——而非已知对YbeY核糖核酸酶活性重要的氨基酸——作为YbeY与S11之间的界面发挥作用。YbeY的这种蛋白质相互作用界面对于正确的rRNA成熟和应激调节是必需的,因为错义突变体表现出明显的表型缺陷。此外,通过蛋白质对接对YbeY与Era-30S复合物之间假定相互作用进行的基于结构的计算机模拟预测与体内结果非常吻合。
核糖体是负责关键细胞功能——蛋白质合成的核糖核蛋白复合物。它们的组装是一个高度协调的过程,包括RNA切割、RNA转录后修饰、RNA构象变化和蛋白质结合事件。经过近50年的研究,仍有许多悬而未决的问题,包括哪种核糖核酸酶负责16S rRNA 3'端的最终加工。高度保守的核糖核酸酶YbeY属于许多细菌中必需的一组核心核糖核酸酶,先前已被证明参与16S rRNA加工和核糖体质量控制。然而,对YbeY核糖体相关功能的详细机制了解仍然不足。这项工作提供了首个证据,表明YbeY通过与参与核糖体生物发生的蛋白质(即核糖体蛋白S11、Era)相互作用而被招募到核糖体。此外,我们确定了YbeY与S11相互作用中涉及的关键残基,并通过计算机模拟对接提出了YbeY与核糖体可能的结合模式。