School of Biological Science, Nanyang Technological University, 637551 Singapore, RIKEN Advanced Science Institute, Saitama 351-0198, Japan, Swiss Light Source, Paul Scherrer Institut, CH-5232, Switzerland and Institute of Molecular and Cell Biology, A-STAR, 138673, Singapore.
Nucleic Acids Res. 2013 Nov;41(20):9549-56. doi: 10.1093/nar/gkt742. Epub 2013 Aug 14.
As a typical endoribonuclease, YoeB mediates cellular adaptation in diverse bacteria by degrading mRNAs on its activation. Although the catalytic core of YoeB is thought to be identical to well-studied nucleases, this enzyme specifically targets mRNA substrates that are associated with ribosomes in vivo. However, the molecular mechanism of mRNA recognition and cleavage by YoeB, and the requirement of ribosome for its optimal activity, largely remain elusive. Here, we report the structure of YoeB bound to 70S ribosome in pre-cleavage state, revealing that both the 30S and 50S subunits participate in YoeB binding. The mRNA is recognized by the catalytic core of YoeB, of which the general base/acid (Glu46/His83) are within hydrogen-bonding distance to their reaction atoms, demonstrating an active conformation of YoeB on ribosome. Also, the mRNA orientation involves the universally conserved A1493 and G530 of 16S rRNA. In addition, mass spectrometry data indicated that YoeB cleaves mRNA following the second position at the A-site codon, resulting in a final product with a 3'-phosphate at the newly formed 3' end. Our results demonstrate a classical acid-base catalysis for YoeB-mediated RNA hydrolysis and provide insight into how the ribosome is essential for its specific activity.
作为一种典型的内切核酸酶,YoeB 通过激活后降解 mRNA 来介导多种细菌的细胞适应。尽管 YoeB 的催化核心被认为与研究充分的核酸酶相同,但该酶特异性靶向与体内核糖体相关的 mRNA 底物。然而,YoeB 对 mRNA 的识别和切割的分子机制,以及核糖体对其最佳活性的要求,在很大程度上仍然难以捉摸。在这里,我们报告了 YoeB 与预切割状态的 70S 核糖体结合的结构,揭示了 30S 和 50S 亚基都参与了 YoeB 的结合。mRNA 被 YoeB 的催化核心识别,其中通用碱基/酸(Glu46/His83)与它们的反应原子处于氢键距离内,表明 YoeB 在核糖体上具有活性构象。此外,mRNA 的取向涉及到 16S rRNA 上普遍保守的 A1493 和 G530。此外,质谱数据表明,YoeB 在 A 位密码子的第二个位置切割 mRNA,导致新形成的 3' 端带有 3'-磷酸的最终产物。我们的结果证明了 YoeB 介导的 RNA 水解的经典酸碱催化,并深入了解了核糖体对其特异性活性的重要性。