Structural Biology Program, Memorial Sloan-Kettering Cancer Center, New York, NY 10021, USA.
Structure. 2010 Oct 13;18(10):1364-77. doi: 10.1016/j.str.2010.06.018.
CUG-binding protein 1 (CUGBP1) regulates multiple aspects of nuclear and cytoplasmic mRNA processing, with implications for onset of myotonic dystrophy. CUGBP1 harbors three RRM domains and preferentially targets UGU-rich mRNA elements. We describe crystal structures of CUGBP1 RRM1 and tandem RRM1/2 domains bound to RNAs containing tandem UGU(U/G) elements. Both RRM1 in RRM1-RNA and RRM2 in RRM1/2-RNA complexes use similar principles to target UGU(U/G) elements, with recognition mediated by face-to-edge stacking and water-mediated hydrogen-bonding networks. The UG step adopts a left-handed Z-RNA conformation, with the syn guanine recognized through Hoogsteen edge-protein backbone hydrogen-bonding interactions. NMR studies on the RRM1/2-RNA complex establish that both RRM domains target tandem UGUU motifs in solution, whereas filter-binding assays identify a preference for recognition of GU over AU or GC steps. We discuss the implications of CUGBP1-mediated targeting and sequestration of UGU(U/G) elements on pre-mRNA alternative-splicing regulation, translational regulation, and mRNA decay.
CUG 结合蛋白 1(CUGBP1)调节核内和细胞质 mRNA 加工的多个方面,这对肌强直性营养不良的发病机制有影响。CUGBP1 含有三个 RRM 结构域,优先靶向 UGU 丰富的 mRNA 元件。我们描述了 CUGBP1 的 RRM1 和串联 RRM1/2 结构域与含有串联 UGU(U/G) 元件的 RNA 结合的晶体结构。RRM1-RNA 中的 RRM1 和 RRM1/2-RNA 复合物中的 RRM2 都使用类似的原理来靶向 UGU(U/G) 元件,通过面对面堆积和水介导的氢键网络进行识别。UG 步采用左手 Z-RNA 构象,通过 Hoogsteen 边缘-蛋白质骨架氢键相互作用识别顺式鸟嘌呤。对 RRM1/2-RNA 复合物的 NMR 研究表明,两个 RRM 结构域在溶液中都靶向串联 UGUU 基序,而过滤结合测定则表明对 GU 比 AU 或 GC 步的识别具有偏好性。我们讨论了 CUGBP1 介导的靶向和隔离 UGU(U/G) 元件对前体 mRNA 可变剪接调控、翻译调控和 mRNA 降解的影响。