Krol A, Branlant C, Lazar E, Gallinaro H, Jacob M
Nucleic Acids Res. 1981 Jun 25;9(12):2699-716. doi: 10.1093/nar/9.12.2699.
U4 RNA from chicken, rat and man was examined for nucleotide sequence and secondary structure. Three molecular species, U4A, U4B and U4C were detected in the three animal species. U4A is 146 nucleotide long and U4B RNA only lacks the 3' terminal G. four nucleotides are missing at the 3'-end of U4C RNA which, in addition, differs from U4A and U4B RNAs at two internal positions. Thus, U4C RNA is encoded by another gene as U4A and U4B RNAs. Only one nucleotide substitution occurred between chicken and man showing that U4A, U4B and U4C RNAs have been extremely conserved throughout evolution. The three molecular species are capped, they contain three psi, a 2'-P methyl A and a m6A. An additional post-transcriptional modification close to the cap structure is observed in man. On the basis on an experimental study, two models of secondary structure may be proposed for U4 RNA. The 3'domain is the same in both models and is homologous to that of U1 and U5 RNAs. It consists of a single-stranded region, containing the sequence Py-(A)2-(U)n-Gp flanked by two stable hairpins probably involved in tertiary interactions. The 5' domain is less stable than the 3' domain and its structure is different in the two models. However, a long single-stranded pyrimidine region containing modified nucleotides is found in both models as in U1 and U5 RNAs. Several other nucleotide sequence homologies related to specific features of secondary structure suggest that U1, U4 and U5 RNAs derive from a common ancestor and may have common function.
对来自鸡、大鼠和人类的U4 RNA进行了核苷酸序列和二级结构检测。在这三种动物物种中检测到了三种分子类型,即U4A、U4B和U4C。U4A长度为146个核苷酸,U4B RNA仅缺少3'末端的鸟苷。U4C RNA的3'末端缺失四个核苷酸,此外,它在两个内部位置与U4A和U4B RNA不同。因此,U4C RNA与U4A和U4B RNA由不同的基因编码。鸡和人类之间仅发生了一个核苷酸替换,这表明U4A、U4B和U4C RNA在整个进化过程中极其保守。这三种分子类型都有帽结构,它们含有三个假尿苷、一个2'-O-甲基腺苷和一个N6-甲基腺苷。在人类中观察到帽结构附近还有一种额外的转录后修饰。基于一项实验研究,可能为U4 RNA提出两种二级结构模型。两种模型中的3'结构域相同,且与U1和U5 RNA的3'结构域同源。它由一个单链区域组成,该区域包含序列Py-(A)2-(U)n-Gp,两侧是两个可能参与三级相互作用的稳定发夹结构。5'结构域比3'结构域稳定性低,且在两种模型中其结构不同。然而,与U1和U5 RNA一样,在两种模型中都发现了一个含有修饰核苷酸的长单链嘧啶区域。其他一些与二级结构特定特征相关的核苷酸序列同源性表明,U1、U4和U5 RNA源自共同祖先,可能具有共同功能。