Yean S L, Lin R J
Department of Molecular Biology, Beckman Research Institute of the City of Hope, Duarte, CA 91010, USA.
Gene Expr. 1996;5(6):301-13.
U1 small nuclear RNA plays an important role in early stages of intron recognition and spliceosome assembly. The 5' splice site of the premessenger RNA base-pairs with the 5' end of U1; however, that interaction appears to be replaced by U5 and U6 at later stages of the splicing process. It has not been established when this transition occurs nor what factors are required for the transition. The PRP2 gene of Saccharomyces cerevisiae encodes an RNA-dependent ATPase that belongs to the DEAH putative RNA helicase family. A spliceosome can be assembled in the absence of PRP2 but the ATPase activity of PRP2 is required for the onset of the catalytic reactions in the spliceosome. By probing the precatalytic spliceosome formed in temperature-sensitive prp2 mutant extracts with oligonucleotides complementary to snRNAs, we found that the 5' end of U1 was sensitive to RNase H digestion whereas the 5' splice site-interacting region of U6 became resistant. Furthermore, by treating with heparin, a spliceosome depleted of U1 snRNA was isolated that subsequently underwent splicing with additional protein factors and ATP. Thus, these results indicate that PRP2 is not responsible for the transition from U1 to U6 in the spliceosome and that the entire U1 snRNA is not involved in the catalytic phase of pre-mRNA splicing.
U1小核RNA在内含子识别和剪接体组装的早期阶段发挥重要作用。前体信使RNA的5'剪接位点与U1的5'末端碱基配对;然而,在剪接过程的后期,这种相互作用似乎被U5和U6取代。目前尚未确定这种转变何时发生,也不清楚转变所需的因素。酿酒酵母的PRP2基因编码一种依赖RNA的ATP酶,属于DEAH假定RNA解旋酶家族。在没有PRP2的情况下也可以组装剪接体,但PRP2的ATP酶活性是剪接体中催化反应开始所必需的。通过用与snRNA互补的寡核苷酸探测在温度敏感的prp2突变体提取物中形成的催化前剪接体,我们发现U1的5'末端对RNase H消化敏感,而U6的5'剪接位点相互作用区域则具有抗性。此外,通过用肝素处理,分离出了一个不含U1 snRNA的剪接体,该剪接体随后与其他蛋白质因子和ATP一起进行剪接。因此,这些结果表明PRP2不负责剪接体中从U1到U6的转变,并且整个U1 snRNA不参与前体mRNA剪接的催化阶段。