Teigelkamp S, Newman A J, Beggs J D
Institute of Cell and Molecular Biology, University of Edinburgh, Cambridge, UK.
EMBO J. 1995 Jun 1;14(11):2602-12. doi: 10.1002/j.1460-2075.1995.tb07258.x.
Precursor RNAs containing 4-thiouridine at specific sites were used with UV-crosslinking to map the binding sites of the yeast protein splicing factor PRP8. PRP8 protein interacts with a region of at least eight exon nucleotides at the 5' splice site and a minimum of 13 exon nucleotides and part of the polypyrimidine tract in the 3' splice site region. Crosslinking of PRP8 to mutant and duplicated 3' splice sites indicated that the interaction is not sequence specific, nor does it depend on the splice site being functional. Binding of PRP8 to the 5' exon was established before step 1 and to the 3' splice site region after step 1 of splicing. These interactions place PRP8 close to the proposed catalytic core of the spliceosome during both transesterification reactions. To date, this represents the most extensive mapping of the binding site(s) of a splicing factor on the substrate RNA. We propose that the large binding sites of PRP8 stabilize the intrinsically weaker interactions of U5 snRNA with both exons at the splice sites for exon alignment by the U5 snRNP.
含有特定位点4-硫尿苷的前体RNA与紫外线交联,用于绘制酵母蛋白质剪接因子PRP8的结合位点。PRP8蛋白与5'剪接位点至少八个外显子核苷酸区域以及3'剪接位点区域至少13个外显子核苷酸和部分多嘧啶序列相互作用。PRP8与突变和重复的3'剪接位点的交联表明,这种相互作用不是序列特异性的,也不依赖于剪接位点是否具有功能。PRP8在剪接步骤1之前与5'外显子结合,在剪接步骤1之后与3'剪接位点区域结合。在两个酯交换反应过程中,这些相互作用使PRP8靠近剪接体的拟催化核心。迄今为止,这代表了剪接因子在底物RNA上结合位点的最广泛定位。我们提出,PRP8的大结合位点稳定了U5 snRNA与剪接位点处两个外显子的内在较弱相互作用,以便由U5 snRNP进行外显子比对。