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果蝇 mini-white 模型系统:正向位置效应及转录终止子和 gypsy 绝缘子在转基因屏蔽中作用的新见解。

Drosophila mini-white model system: new insights into positive position effects and the role of transcriptional terminators and gypsy insulator in transgene shielding.

机构信息

Department of the Control of Genetic Processes, Institute of Gene Biology, Russian Academy of Sciences, Moscow, Russia.

出版信息

Nucleic Acids Res. 2010 Jan;38(1):39-47. doi: 10.1093/nar/gkp877. Epub 2009 Oct 23.

Abstract

The white gene, which is responsible for eye pigmentation, is widely used to study position effects in Drosophila. As a result of insertion of P-element vectors containing mini-white without enhancers into random chromosomal sites, flies with different eye color phenotypes appear, which is usually explained by the influence of positive/negative regulatory elements located around the insertion site. We found that, in more than 70% of cases when mini-white expression was subject to positive position effects, deletion of the white promoter had no effect on eye pigmentation; in these cases, the transposon was inserted into the transcribed regions of genes. Therefore, transcription through the mini-white gene could be responsible for high levels of its expression in most of chromosomal sites. Consistently with this conclusion, transcriptional terminators proved to be efficient in protecting mini-white expression from positive position effects. On the other hand, the best characterized Drosophila gypsy insulator was poorly effective in terminating transcription and, as a consequence, only partially protected mini-white expression from these effects. Thus, to ensure maximum protection of a transgene from position effects, a perfect boundary/insulator element should combine three activities: to block enhancers, to provide a barrier between active and repressed chromatin, and to terminate transcription.

摘要

白色基因负责眼睛色素的形成,广泛用于研究果蝇中的位置效应。由于含有微型白色基因但没有增强子的 P 元素载体被插入到随机的染色体位置,出现了不同眼色表型的果蝇,这通常可以用位于插入位点周围的正/负调控元件的影响来解释。我们发现,在微型白色基因表达受到正位置效应影响的 70%以上的情况下,删除白色基因启动子对眼睛色素沉着没有影响;在这些情况下,转座子插入到基因的转录区域。因此,通过微型白色基因进行转录可能是导致其在大多数染色体位置高表达的原因。这一结论与以下事实一致:转录终止子被证明能够有效地防止微型白色基因表达受到正位置效应的影响。另一方面,最好地被表征的果蝇 gypsy 绝缘子在终止转录方面效果不佳,因此只能部分保护微型白色基因表达免受这些影响。因此,为了确保转基因最大限度地免受位置效应的影响,一个完美的边界/绝缘子元件应该具有三种活性:阻断增强子,在活跃和抑制染色质之间形成屏障,并终止转录。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d247/2800232/4cc9f3596ee8/gkp877f1.jpg

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