State Key Laboratory of Cellular Stress Biology, School of Life Sciences, Xiamen University, Xiamen 361005, China.
J Cell Biochem. 2012 Sep;113(9):2909-19. doi: 10.1002/jcb.24168.
The site-specific recombination mediated by Cre recombinase has been utilized extensively in genetic engineering and gene function studies. Efficient delivery of a Cre enzyme with enzymatic activity and the ability to monitor the enzyme expression are required in applications, and lentiviral constructs with a fluorescent protein (FP) to report the Cre expression are suitable for most studies. However, the current lentiviral vector systems have some deficiencies in precise reporting the Cre expression through fluorescence. To solve the problem, we generated a lentiviral system with Cre and RFP or EGFP bridged by an FMDV 2A sequence in an open reading frame expressed by a CMV promoter. We then examined the capabilities of the constructs to package with VSVG into infectious virus and to mediate expression of the Cre enzyme and fluorescent reporter. Furthermore, we monitored the bioactivities of the expressed products. We demonstrated the coordinate expression of the enzyme and the reporter. The expressed Cre was efficient at removing LoxP-flanked fragments in cells and did not show obvious cellular toxicity, and the expressed FPs allowed direct observation under fluorescent microscope. Therefore, the conjugation of CMV-Cre-2A-FP represents a significant improvement to the current lentiviral Cre delivery systems for obtaining a required Cre activity while accurately monitoring its presence. Our study also provides information concerning application of the established vector system.
由 Cre 重组酶介导的位点特异性重组已被广泛应用于基因工程和基因功能研究。在应用中需要有效的 Cre 酶的传递,该酶具有酶活性,并且能够监测酶的表达,带有荧光蛋白 (FP) 的慢病毒构建体能够报告 Cre 表达,适用于大多数研究。然而,目前的慢病毒载体系统在通过荧光精确报告 Cre 表达方面存在一些缺陷。为了解决这个问题,我们生成了一个带有 Cre 和 RFP 或 EGFP 的慢病毒系统,它们通过 FMDV 2A 序列桥接,该序列在由 CMV 启动子表达的开放阅读框中表达。然后,我们检查了构建体与 VSVG 包装成感染性病毒的能力,并介导 Cre 酶和荧光报告基因的表达。此外,我们监测了表达产物的生物活性。我们证明了酶和报告基因的协调表达。表达的 Cre 有效地去除了细胞中带有 LoxP 侧翼的片段,并且没有表现出明显的细胞毒性,表达的 FP 允许在荧光显微镜下直接观察。因此,CMV-Cre-2A-FP 的连接是对当前的慢病毒 Cre 传递系统的重大改进,它可以在准确监测其存在的同时获得所需的 Cre 活性。我们的研究还提供了关于建立的载体系统应用的信息。