Kim S H, Lin R J
Department of Microbiology, University of Texas, Austin 78712-1095.
Proc Natl Acad Sci U S A. 1993 Feb 1;90(3):888-92. doi: 10.1073/pnas.90.3.888.
Unlike autocatalyzed self-splicing of group I or group II introns, the removal of pre-mRNA introns in vitro occurs in the spliceosome. The spliceosome is a multicomponent complex composed of pre-mRNA, small nuclear ribonucleoprotein particles, and protein factors. ATP is required for the assembly of the spliceosome and both transesterification reactions. An RNA-dependent ATPase, the product of the yeast PRP2 gene, has been shown to be involved in the first transesterification of pre-mRNA splicing but not in spliceosome assembly. By using ATP analogs, we show that hydrolysis of ATP, mediated through a PRP2-dependent step, is required for the first catalytic event of pre-mRNA splicing. Furthermore, by using a two-step purification procedure, we have isolated a PRP2-containing spliceosome within which the first transesterification readily occurs after the addition of ATP. No additional macromolecules were required. Our results suggest that PRP2 binds to the spliceosome, interacting with an unidentified RNA species in the spliceosome, hydrolyzing ATP and allowing splicing to proceed. We postulate that PRP2 may function to induce a conformational change within the spliceosome. Alternatively, PRP2 may be involved in a proofreading step prior to splicing.
与I类或II类内含子的自我催化自剪接不同,前体mRNA内含子在体外的去除发生在剪接体中。剪接体是一种多组分复合物,由前体mRNA、小核核糖核蛋白颗粒和蛋白质因子组成。剪接体的组装以及两个转酯反应都需要ATP。一种RNA依赖性ATP酶,即酵母PRP2基因的产物,已被证明参与前体mRNA剪接的第一次转酯反应,但不参与剪接体的组装。通过使用ATP类似物,我们表明,由PRP2依赖性步骤介导的ATP水解是前体mRNA剪接的第一次催化事件所必需的。此外,通过两步纯化程序,我们分离出了一种含有PRP2的剪接体,在添加ATP后,其中很容易发生第一次转酯反应。不需要额外的大分子。我们的结果表明,PRP2与剪接体结合,与剪接体中一种未鉴定的RNA种类相互作用,水解ATP并使剪接得以进行。我们推测,PRP2可能起到诱导剪接体内构象变化的作用。或者,PRP2可能参与剪接前的校对步骤。