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Insertion of Multiple Artificial Introns of Universal Design into CDNA during Minigene Construction Assures Correct Transgene Splicing

机译:在微型施工期间将多个人造内含子通用设计中的通用设计中的cDNA确保正确的转基因剪接

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摘要

The presence of introns is often required for efficient transgene expression. The use of full-length genes for transgenesis is associated with technical difficulties due to the large size of the genetic construct. To solve this problem, we recently suggested a universal design of small artificial introns that ensures efficient splicing. However, the insertion of more than one intron into cDNA might result in the aberrant splicing of the minigene with exon skipping. Here, we showed that the insertion of two artificial introns of universal design into cDNA resulted in a splicing pattern that corresponds to the excision of each intron with an exon between them remaining in the transcript. No transcript formation with exon skipping was detected. Therefore, the developed design of small artificial introns assures splicing solely between the donor and the acceptor splice sites of each single intron and results in the generation of a correct transcript from minigene premRNA. These findings enable the construction of minigenes for transgenesis with more than one artificial intron, with no additional cis-elements required to prevent aberrant splicing.
机译:有效转基因表达通常需要内含子的存在。由于遗传构建体尺寸的大尺寸,使用全长基因用于转基因的技术难题。为了解决这个问题,我们最近提出了一种通用的小型人工内含子设计,可确保有效的拼接。然而,将多个内含子插入cDNA中的插入可能导致小烯与外显子跳跃的异常剪接。在这里,我们认为将两个人造内含子的通用设计插入到cDNA中导致拼接图案,其对应于每个内含子的切除与它们之间的外显子留在转录物之间。没有检测到具有外显子跳跃的转录形成。因此,小人造内含子的开发设计确保了每个单一内含子的供体和受体接头位点之间拼接,并导致来自小烯premRNA的正确转录物。这些发现能够构建具有多于一个人造内含子的转基因的微量肢体,没有额外的顺式元素来防止异常剪接。

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