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利用 PhiC31 整合酶在斑马鱼中进行高效的位点特异性转基因和增强子活性测试。

Efficient site-specific transgenesis and enhancer activity tests in medaka using PhiC31 integrase.

机构信息

Centre for Organismal Studies, Heidelberg University, 69120 Heidelberg, Germany.

出版信息

Development. 2013 Oct;140(20):4287-95. doi: 10.1242/dev.096081. Epub 2013 Sep 18.

Abstract

Established transgenesis methods for fish model systems allow efficient genomic integration of transgenes. However, thus far a way of controlling copy number and integration sites has not been available, leading to variable transgene expression caused by position effects. The integration of transgenes at predefined genomic positions enables the direct comparison of different transgenes, thereby improving time and cost efficiency. Here, we report an efficient PhiC31-based site-specific transgenesis system for medaka. This system includes features that allow the pre-selection of successfully targeted integrations early on in the injected generation. Pre-selected embryos transmit the correctly integrated transgene through the germline with high efficiency. The landing site design enables a variety of applications, such as reporter and enhancer switch, in addition to the integration of any insert. Importantly, this allows assaying of enhancer activity in a site-specific manner without requiring germline transmission, thus speeding up large-scale analyses of regulatory elements.

摘要

已建立的鱼类模型系统的转基因方法允许转基因的高效基因组整合。然而,到目前为止,还没有一种控制拷贝数和整合位点的方法,这导致了由于位置效应而导致的转基因表达的可变性。将转基因整合到预设的基因组位置可以实现不同转基因的直接比较,从而提高时间和成本效率。在这里,我们报告了一种用于斑马鱼的高效 PhiC31 基于位点的转基因系统。该系统具有允许在注射代早期对成功靶向整合进行预先选择的特征。预先选择的胚胎通过生殖系以高效率传递正确整合的转基因。着陆位点设计除了整合任何插入物外,还允许进行报告基因和增强子开关等各种应用。重要的是,这允许以特定方式检测增强子活性,而无需生殖系传递,从而加快了对调控元件的大规模分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c73f/3809364/d13d8044dc5a/DEV096081F1.jpg

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