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首页> 外文期刊>The journal of gene medicine >Targeting of the glucocorticoid hormone receptor with plasmid DNA comprising glucocorticoid response elements improves nonviral gene transfer efficiency in the lungs of mice
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Targeting of the glucocorticoid hormone receptor with plasmid DNA comprising glucocorticoid response elements improves nonviral gene transfer efficiency in the lungs of mice

机译:用包含糖皮质激素应答元件的质粒DNA靶向糖皮质激素受体可改善小鼠肺中非病毒基因的转移效率

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Background It has been previously demonstrated that plasmid DNA transport into the nucleus could be increased by transcription factor binding. We chose the glucocorticoid responsive element (GRE) which binds to the glucocorticoid receptor (GR), a transcription factor which is shuttled into the nucleus upon ligand binding such as dexamethasone. Methods We cloned two, four, and eight repetitive sequences of the GRE into the reporter plasmid pEGFPLuc. Binding of the pEGFPLuc-GRE to the GR was examined by electrophoretic mobility shift assay (EMSA) experiments. GR expression in bronchiolar and alveolar epithelial cells was confirmed by Western blotting. Intracellular trafficking of GR was examined using a fusion protein of cyano-fluorescent protein (CFP) and GR. Transfection efficiencies of pEGFPLuc compared to pEGFPLucGRE(2-8) were examined in vitro and in vivo upon tail vein injection of cationic liposome gene vectors containing dexamethasone (safeplexes) and aerosol application of polyethylenimine (PEI)-pDNA particles. Results Binding of GRE containing plasmids to the GR was shown in EMSA experiments and intranuclear shuttling of CFP-GR after ligand stimulation was confirmed. Enhanced gene transfer efficiency of pEGFPLucGRE(2) in vitro was only observed on confluent cells. A 2.5-fold increase in gene expression in the lungs of mice after tail vein injection of pEGFPLucGRE2 complexed with safeplexes compared with pEGFPLuc was observed. PEI-mediated aerosol gene delivery of pEGFPLucGRE2 was 4.7-fold higher than pEGFPLuc only after intraperitoneal dexamethasone. Conclusion The results suggest that inclusion of GRE sequences into plasmid DNA vectors combined with dexamethasone application could improve transgene expression in the lungs in vivo. Copyright (c) 2007 John Wiley & Sons, Ltd.
机译:背景技术先前已经证明,通过转录因子结合可以增加质粒DNA进入细胞核的转运。我们选择了与糖皮质激素受体(GR)结合的糖皮质激素反应元件(GRE),该转录因子在配体结合后(例如地塞米松)被转运到细胞核中。方法我们将GRE的两个,四个和八个重复序列克隆到报告质粒pEGFPLuc中。通过电泳迁移率变动分析(EMSA)实验检查了pEGFPLuc-GRE与GR的结合。通过Western印迹证实在细支气管和肺泡上皮细胞中GR表达。使用氰基荧光蛋白(CFP)和GR的融合蛋白检查了GR的细胞内运输。与尾巴静脉注射含有地塞米松的阳离子脂质体基因载体(安全复合物)和气溶胶应用聚乙烯亚胺(PEI)-pDNA颗粒后,在体外和体内检查了pEGFPLuc与pEGFPLucGRE(2-8)相比的转染效率。结果在EMSA实验中显示了含GRE的质粒与GR的结合,并证实了配体刺激后CFP-GR的核内穿梭。仅在融合细胞上观察到了增强的pEGFPLucGRE(2)的基因转移效率。与pEGFPLuc相比,在尾静脉注射与safeplexs复合的pEGFPLucGRE2后,小鼠肺中的基因表达增加了2.5倍。仅在腹膜内地塞米松治疗后,PEI介导的pEGFPLucGRE2气溶胶基因传递比pEGFPLuc高4.7倍。结论结果表明,将GRE序列包含在质粒DNA载体中并与地塞米松联合应用可改善体内肺中的转基因表达。版权所有(c)2007 John Wiley&Sons,Ltd.

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