Kühne T, Wieringa B, Reiser J, Weissmann C
EMBO J. 1983;2(5):727-33. doi: 10.1002/j.1460-2075.1983.tb01492.x.
A cloned rabbit beta-globin gene was modified by introducing a DNA fragment containing the 5' splice region of the large intron upstream or downstream of its natural counterpart. Analogous constructions were carried out with the 3' splice region. The genes were linked to SV40 DNA, transiently expressed in HeLa cells and the transcripts analyzed by S1 mapping. In all cases, the splice site further removed from the intron was utilized to the complete exclusion of its counterpart. This finding argues persuasively against a simple scanning model of RNA splicing, in which the splicing enzyme(s) attaches at the 'donor' spliced region and moves along the intron until it encounters the closest 'acceptor' splice region. A model compatible with the currently known facts is presented.
通过在天然对应序列的上游或下游引入包含大内含子5'剪接区域的DNA片段,对克隆的兔β-珠蛋白基因进行了修饰。对3'剪接区域进行了类似的构建。将这些基因与SV40 DNA连接,在HeLa细胞中瞬时表达,并通过S1作图分析转录本。在所有情况下,离内含子更远的剪接位点被完全利用,而其对应位点则被完全排除。这一发现有力地反驳了RNA剪接的简单扫描模型,在该模型中,剪接酶附着在“供体”剪接区域并沿着内含子移动,直到遇到最近的“受体”剪接区域。本文提出了一个与目前已知事实相符的模型。