Stallings S C, Moore P B
Department of Chemistry, Yale University, New Haven, CT 06520-8107, USA.
Structure. 1997 Sep 15;5(9):1173-85. doi: 10.1016/s0969-2126(97)00268-2.
Eukaryotic genes are usually transcribed as precursor mRNAs which are then spliced, removing introns to produce functional mRNAs. Splicing is performed by the spliceosome and provides an important level of post-translational control of gene expression. Stem loop IIa from U2 small nuclear (sn)RNA is required for the efficient association of the U2 small nuclear ribonuclear protein (snRNP) with the nascent spliceosome in yeast. Genetic analysis suggests that stem loop IIa is involved in RNA-protein interactions early in splicing, and it may also interact with other RNA sequences in U2. The sequence of loop IIa is well conserved, consistent with the idea that this loop is important for function.
We have solved the structure of U2A, a 20-base analogue of stem loop IIa from Saccharomyces cerevisiae, using NMR and restrained molecular dynamics. In the process, we have demonstrated the efficacy of a new structure calculation protocol, torsion angle molecular dynamics. The structure that has emerged, which is consistent with the in vivo chemical protection data available for stem loop IIa in the context of intact U2 snRNA, contains a sheared GA pair followed by a U-turn in the loop. The U-turn conformation, which resembles the U-turns in tRNA anticodon loops, makes this stretch of U2 snRNA an obvious target for interactions with proteins and/or other RNA sequences.
The phenotypes of many stem loop IIa mutants can be rationalized assuming that the U-turn conformation in the loop must be preserved for efficient splicing. This observation, combined with the phylogenetic conservation of its sequence, suggests that the conformation of the loop of stem loop IIa is essential for its function in pre-mRNA splicing.
真核基因通常转录为前体mRNA,然后进行剪接,去除内含子以产生功能性mRNA。剪接由剪接体执行,并提供基因表达翻译后调控的重要层面。酵母中U2小核(sn)RNA的茎环IIa是U2小核糖核蛋白(snRNP)与新生剪接体高效结合所必需的。遗传分析表明,茎环IIa在剪接早期参与RNA-蛋白质相互作用,它也可能与U2中的其他RNA序列相互作用。环IIa的序列高度保守,这与该环对功能很重要的观点一致。
我们使用核磁共振和受限分子动力学解析了酿酒酵母茎环IIa的20碱基类似物U2A的结构。在此过程中,我们证明了一种新的结构计算方法——扭转角分子动力学的有效性。所得结构与完整U2 snRNA背景下茎环IIa的体内化学保护数据一致,包含一个剪切的GA对,随后环中有一个U型转弯。这种U型转弯构象类似于tRNA反密码子环中的U型转弯,使这段U2 snRNA成为与蛋白质和/或其他RNA序列相互作用的明显靶点。
假设环中的U型转弯构象必须保留以实现高效剪接,那么许多茎环IIa突变体的表型就可以得到合理的解释。这一观察结果,结合其序列的系统发育保守性,表明茎环IIa环的构象对其在前体mRNA剪接中的功能至关重要。