Institute of Molecular Biophysics, Florida State University, Tallahassee, FL 32306, USA.
Department of Chemistry and Biochemistry, Florida State University, Tallahassee, FL 32306, USA.
Sci Adv. 2023 Aug 18;9(33):eadg8190. doi: 10.1126/sciadv.adg8190.
Pseudouridine is enriched in ribosomal, spliceosomal, transfer, and messenger RNA and thus integral to the central dogma. The chemical basis for how pseudouridine affects the molecular apparatus such as ribosome, however, remains elusive owing to the lack of structures without this natural modification. Here, we studied the translation of a hypopseudouridylated ribosome initiated by the internal ribosome entry site (IRES) elements. We analyzed eight cryo-electron microscopy structures of the ribosome bound with the Taura syndrome virus IRES in multiple functional states. We found widespread loss of pseudouridine-mediated interactions through water and long-range base pairings. In the presence of the translocase, eukaryotic elongation factor 2, and guanosine 5'-triphosphate hydrolysis, the hypopseudouridylated ribosome favors a rare unconducive conformation for decoding that is partially recouped in the ribosome population that remains modified at the P-site uridine. The structural principles learned establish the link between functional defects and modification loss and are likely applicable to other pseudouridine-associated processes.
假尿嘧啶核苷在核糖体、剪接体、转移和信使 RNA 中丰富,因此是中心法则的组成部分。然而,由于缺乏没有这种天然修饰的结构,假尿嘧啶核苷如何影响核糖体等分子仪器的化学基础仍然难以捉摸。在这里,我们研究了由内部核糖体进入位点(IRES)元件起始的低假尿嘧啶核苷核糖体的翻译。我们分析了与 Taura 综合征病毒 IRES 结合的核糖体在多个功能状态下的八个冷冻电子显微镜结构。我们发现,通过水和长距离碱基配对,广泛丧失了假尿嘧啶介导的相互作用。在易位酶、真核延伸因子 2 和鸟苷 5'-三磷酸水解的存在下,低假尿嘧啶核苷核糖体有利于一种罕见的不利于解码的构象,这种构象在仍在 P 位尿嘧啶修饰的核糖体群体中部分恢复。所学到的结构原则将功能缺陷与修饰缺失联系起来,并且可能适用于其他与假尿嘧啶相关的过程。