Yu Y T, Maroney P A, Darzynkiwicz E, Nilsen T W
Department of Molecular Biology and Microbiology, Case Western Reserve University, School of Medicine, Cleveland, Ohio 44106, USA.
RNA. 1995 Mar;1(1):46-54.
U6 snRNA is essential for and may participate in the catalysis of pre-mRNA splicing. Extensive mutational analyses in several systems have identified nucleotides essential for U6 function in splicing; however, relatively little is known regarding the role of the U6 phosphate backbone. We previously described a mutation in a nematode U6 snRNA that causes it to be used as a splicing substrate within the spliceosome. This unusual reaction has made it possible to apply modification interference analysis to U6 function. Here, we have used phosphorothioate substitution to identify pro-R oxygens throughout the U6 backbone that are necessary for the first and/or second catalytic steps of splicing. Four pro-R oxygens are important for the first step; of these only two appear to be required. One additional pro-R oxygen is uniquely required for the second step. The two pro-R oxygens critical for the first step of splicing are in the helix 1b U2/U6 interaction region and the intramolecular stem-loop of U6, respectively. A comparison of the positions of these two pro-R oxygens with those found to be critical for autocatalytic excision of a group II intron suggests a possible functional similarity between U6 snRNA and domain V of group II introns.
U6小核RNA对于前体mRNA剪接的催化是必不可少的,并且可能参与其中。在多个系统中进行的广泛突变分析已经确定了U6在剪接中发挥功能所必需的核苷酸;然而,关于U6磷酸主链的作用,我们了解得相对较少。我们之前描述了一种线虫U6小核RNA中的突变,该突变导致它在剪接体中被用作剪接底物。这种不寻常的反应使得将修饰干扰分析应用于U6的功能成为可能。在这里,我们使用硫代磷酸酯取代来鉴定U6主链上对于剪接的第一步和/或第二步催化所必需的前-R氧原子。四个前-R氧原子对于第一步很重要;其中似乎只需要两个。第二步唯一需要的是另一个前-R氧原子。对于剪接第一步至关重要的两个前-R氧原子分别位于螺旋1b的U2/U6相互作用区域和U6的分子内茎环中。将这两个前-R氧原子的位置与那些对II类内含子的自催化切除至关重要的位置进行比较,表明U6小核RNA与II类内含子的结构域V之间可能存在功能相似性。