Structural Biology Unit, CIC bioGUNE, Technology Park of Bizkaia, Derio-Bilbao 48160, Spain.
J Biomol Struct Dyn. 2012;30(5):505-23. doi: 10.1080/07391102.2012.687517. Epub 2012 Jun 25.
Human genetic trinucleotide repeat expansion diseases (TREDs) are characterized by triplet repeat expansions, most frequently found as CNG-tracts in genome. At RNA level, such expansions suggestively result in formation of double-helical hairpins that become a potential source for small RNAs involved in RNA interference (RNAi). Here, we present three crystal structures of RNA fragments composed of triplet repeats CUG and CGG/CUG, as well as two crystal structures of same triplets in a protein-bound state. We show that both 20mer pG(CUG)(6)C and 19mer pGG(CGG)(3)(CUG)(2)CC form A-RNA duplexes, in which U·U or G·U mismatches are flanked/stabilized by two consecutive Watson-Crick G·C base pairs resulting in high-stacking GpC steps in every third position of the duplex. Despite interruption of this regularity in another 19mer, p(CGG)(3)C(CUG)(3), the oligonucleotide still forms regular double-helical structure, characterized, however, by 12 bp (rather than 11 bp) per turn. Analysis of newly determined molecular structures reveals the dynamic aspects of U·U and G·U mismatching within CNG-repetitive A-RNA and in a protein-bound state, as well as identifies an additional mode of U·U pairing essential for its dynamics and sheds the light on possible role of regularity of trinucleotide repeats for double-helical RNA structure. Findings are important for understanding the structural behavior of CNG-repetitive RNA double helices implicated in TREDs.
人类遗传三核苷酸重复扩展疾病(TREDs)的特征是三核苷酸重复扩展,最常见的是基因组中的 CNG- 链段。在 RNA 水平上,这种扩展暗示形成了双链发夹,成为参与 RNA 干扰(RNAi)的小 RNA 的潜在来源。在这里,我们展示了由三核苷酸重复 CUG 和 CGG/CUG 组成的 RNA 片段的三个晶体结构,以及两种在蛋白质结合状态下的相同三核苷酸的晶体结构。我们表明,20mer pG(CUG)(6)C 和 19mer pGG(CGG)(3)(CUG)(2)CC 都形成 A-RNA 双链,其中 U·U 或 G·U 错配被两个连续的 Watson-Crick G·C 碱基对侧翼/稳定,导致双链的每第三个位置有高堆积的 GpC 步骤。尽管另一个 19mer p(CGG)(3)C(CUG)(3) 中断了这种规则性,但寡核苷酸仍然形成规则的双链结构,但每转 12 个碱基(而不是 11 个碱基)。对新确定的分子结构的分析揭示了 CNG 重复 A-RNA 内和蛋白质结合状态下 U·U 和 G·U 错配的动态方面,并确定了 U·U 配对的另一种模式,这对其动力学至关重要,并阐明了三核苷酸重复的规则性对双链 RNA 结构的可能作用。这些发现对于理解涉及 TRED 的 CNG 重复 RNA 双链的结构行为很重要。