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[通过分泌型荧光素酶报告系统在体内和体外比较甲状腺素转运蛋白(TTR)启动子和巨细胞病毒(CMV)启动子]

[Comparison of TTR and CMV promoters in vivo and in vitro via a secreted luciferase reporter system].

作者信息

Luo Shun-Tao, Tian Wen-Hong, Wang Gang, Dong Xiao-Yan, Yang Li, Wu Xiao-Bing

机构信息

State Key Laboratory of Biotherapy, West China Hospital, Sichuan University, Chengdu 610041, China.

出版信息

Bing Du Xue Bao. 2009 Nov;25(6):424-9.

Abstract

GLuc (Gaussia luciferase) is a secreted luciferase with high sensitivity. In this study, we primarily compared expression character of PTTR with that of PCMV, relied on easy secretion, high sensitivity and simple and fast detection of GLuc. We firstly constructed two plasmids pAAV2-neo-TTR-GLuc and pAAV2-neo-CMV-GLuc. Then, 4 cell lines were transfected with the two plasmids in aid of Lipofectamine 2000, including Huh7 and HepG2, which are derived from liver cells, as well as HEK293 and HeLaS3 cells, which are non-liver cell lines. We monitored the expression of GLuc in the supernatant of these cell cultures at different time points post-transfection. Furthermore, we injected the two plasmids with different doses into BALB/c mice by the means of hydrodynamic delivery and monitored the GLuc expression in vivo with 2.5 microl tail tip blood since 2 h post-injection. The cell assay results suggested that the expression of GLuc driven by CMV promoter was significantly higher than that of GLuc driven by TTR promoter. And, the luciferase activity of GLuc driven by CMV promoter was 50-300 times higher than that of GLuc driven by TTR promoter in HEK293 and HeLaS3 cell lines, but less than 10 times higher than that of GLuc driven by TTR promoter in the HepG2 and Huh7 cell lines, indicating the relative liver-specificity of TTR promoter. In the animal assay, the higher luciferase activity was determined in CMV promoter group than in TTR promoter group at different doses of the two plasmids. But the expression patterns for the two promoters differed obviously. The expression of GLuc driven by CMV promoter reached the maximum 10 hours post-injection and declined rapidly; while the expression of GLuc driven by TTR promoter reached the maximum 48 hours after delivery, and declined very slowly. These results implied that PTTR could keep expression of driven gene in a long time although its expression intensity is lower than PCMV's. Thus, it is more suitable for maintaining longer expression of target genes in liver.

摘要

高斯荧光素酶(GLuc)是一种具有高灵敏度的分泌型荧光素酶。在本研究中,我们主要基于GLuc易于分泌、高灵敏度以及检测简单快速的特点,比较了甲状腺素运载蛋白启动子(PTTR)和巨细胞病毒启动子(PCMV)的表达特性。我们首先构建了两个质粒,即pAAV2-neo-TTR-GLuc和pAAV2-neo-CMV-GLuc。然后,借助Lipofectamine 2000将这两个质粒转染到4种细胞系中,包括源自肝细胞的Huh7和HepG2细胞系,以及非肝细胞系的HEK293和HeLaS3细胞。我们在转染后的不同时间点监测这些细胞培养上清液中GLuc的表达。此外,我们通过流体动力学注射法将不同剂量的这两个质粒注入BALB/c小鼠体内,并在注射后2小时起用2.5微升尾尖血监测体内GLuc的表达。细胞实验结果表明,由CMV启动子驱动的GLuc表达明显高于由TTR启动子驱动的GLuc表达。并且,在HEK293和HeLaS3细胞系中,由CMV启动子驱动的GLuc的荧光素酶活性比由TTR启动子驱动的GLuc高50 - 300倍,但在HepG2和Huh7细胞系中,仅比由TTR启动子驱动的GLuc高不到10倍,这表明TTR启动子具有相对肝脏特异性。在动物实验中,在两种质粒不同剂量下,CMV启动子组的荧光素酶活性均高于TTR启动子组。但两种启动子的表达模式明显不同。由CMV启动子驱动的GLuc表达在注射后10小时达到最大值,随后迅速下降;而由TTR启动子驱动的GLuc表达在注射后48小时达到最大值,且下降非常缓慢。这些结果表明,尽管PTTR的表达强度低于PCMV,但它能使驱动基因长时间表达。因此,它更适合在肝脏中维持靶基因的长时间表达。

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