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Role of the branch site/3'-splice site region in adenovirus-2 E1A pre-mRNA alternative splicing: evidence for 5'- and 3'-splice site co-operation.

机译:分支病毒/ 3'-剪接位点区域在腺病毒2 E1A-mRNA选择性剪接中的作用:5'-和3'-剪接位点合作的证据。

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摘要

The adenovirus E1A gene encodes five overlapping mRNAs which are processed by alternative RNA splicing from a common pre-mRNA. To characterize cis-acting sequence elements which are of importance for the alternative 5'-splice site selection deletion and substitution mutants within the intron that is common to all E1A mRNAs were constructed. Deletion of the wild-type E1A branch site/polypyrimidine tract resulted in activation of a functionally redundant sequence located within an A/T rich sequence just upstream of the normal E1A lariat branch site. Removal of both regulatory sequences abolished in vivo splicing completely and did not lead to activation of cryptic 3'-splice sites at other locations in the E1A pre-mRNA. Furthermore we show that the sequence around the E1A branch site/3'-splice site region may have a more direct effect on the efficiency by which the alternative E1A 5'-splice sites are selected. Replacing the E1A branch site/3'-splice site region with the corresponding sequence from the second intron of the rabbit beta-globin gene or the first intron of the major late transcription unit resulted in drastic changes in E1A 5'-splice site selection. For example, with the E1A/beta-globin hybrid gene the 9S mRNA became the most abundant E1A mRNA to accumulate. This contrasts with the wild-type E1A gene in which almost undetectable levels of 9S mRNA were produced in transient expression assays. Our results strongly suggest that a cooperative interaction between 5'- and 3'-splice sites on a pre-mRNA determines the outcome of alternative splicing.
机译:腺病毒E1A基因编码五个重叠的mRNA,这些mRNA由共同的pre-mRNA的可变RNA剪接处理。为了表征顺式作用序列元件,其对于所有E1A mRNA共有的内含子内替代5'-剪接位点选择缺失和取代突变体至关重要。野生型E1A分支位点/聚嘧啶束的删除导致位于正常E1A套索分支位点上游的富含A / T的序列内的功能冗余序列的激活。两种调节序列的去除完全消除了体内剪接,并且没有导致E1A pre-mRNA中其他位置的3'剪接位点活化。此外,我们显示,围绕E1A分支位点/ 3'-剪接位点区域的序列可能对选择替代E1A 5'-剪接位点的效率产生更直接的影响。用来自兔子β-珠蛋白基因的第二个内含子或主要的晚期转录单位的第一个内含子的相应序列替换E1A分支位点/ 3'-剪接位点区域,导致E1A 5'-剪接位点选择发生剧烈变化。例如,利用E1A /β-球蛋白杂合基因,9S mRNA成为积累最多的E1A mRNA。这与野生型E1A基因形成对比,在野生型E1A基因中,瞬时表达测定法产生的9S mRNA几乎检测不到。我们的研究结果强烈表明,pre-mRNA上5'-和3'-剪接位点之间的协同相互作用决定了选择性剪接的结果。

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