Department of Computational Biology and Medical Sciences, Graduate School of Frontier Sciences, The University of Tokyo, Kashiwa, Chiba, 277-8562, Japan.
Nat Commun. 2023 Aug 10;14(1):4686. doi: 10.1038/s41467-023-40420-9.
U6 snRNA is a catalytic RNA responsible for pre-mRNA splicing reactions and undergoes various post-transcriptional modifications during its maturation process. The 3'-oligouridylation of U6 snRNA by the terminal uridylyltransferase, TUT1, provides the Lsm-binding site in U6 snRNA for U4/U6 di-snRNP formation and this ensures pre-mRNA splicing. Here, we present the crystal structure of human TUT1 (hTUT1) complexed with U6 snRNA, representing the post-uridylation of U6 snRNA by hTUT1. The N-terminal ZF-RRM and catalytic palm clamp the single-stranded AUA motif between the 5'-short stem and the 3'-telestem of U6 snRNA, and the ZF-RRM specifically recognizes the AUA motif. The ZF and the fingers hold the telestem, and the 3'-end of U6 snRNA is placed in the catalytic pocket of the palm for oligouridylation. The oligouridylation of U6 snRNA depends on the internal four-adenosine tract in the 5'-part of the telestem of U6 snRNA, and hTUT1 adds uridines until the internal adenosine tract can form base-pairs with the 3'-oligouridine tract. Together, the recognition of the specific structure and sequence of U6 snRNA by the multi-domain TUT1 protein and the intrinsic sequence and structure of U6 snRNA ensure the oligouridylation of U6 snRNA.
U6 snRNA 是一种催化性 RNA,负责前体 mRNA 的剪接反应,并在成熟过程中经历各种转录后修饰。U6 snRNA 的 3′-寡尿苷酸化由末端尿苷酰转移酶 TUT1 完成,为 U6 snRNA 提供了 Lsm 结合位点,用于 U4/U6 二-snRNP 的形成,从而确保前体 mRNA 的剪接。在这里,我们展示了人 TUT1(hTUT1)与 U6 snRNA 复合物的晶体结构,代表了 U6 snRNA 被 hTUT1 后尿苷酸化。N 端 ZF-RRM 和催化柄夹住 U6 snRNA 的 5′-短茎和 3′-telestem 之间的单链 AUA 基序,ZF-RRM 特异性识别 AUA 基序。ZF 和手指握住 telestem,U6 snRNA 的 3′-末端置于 palm 的催化口袋中进行寡尿苷酸化。U6 snRNA 的寡尿苷酸化取决于 U6 snRNA telestem 的 5′-部分内部的四腺苷序列,并且 hTUT1 会添加尿苷,直到内部腺苷序列可以与 3′-寡尿苷酸序列形成碱基对。总之,多结构域 TUT1 蛋白对 U6 snRNA 特异性结构和序列的识别以及 U6 snRNA 的固有序列和结构确保了 U6 snRNA 的寡尿苷酸化。