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质粒DNA在小鼠肌肉中的长期存留及外源基因表达

Long-term persistence of plasmid DNA and foreign gene expression in mouse muscle.

作者信息

Wolff J A, Ludtke J J, Acsadi G, Williams P, Jani A

机构信息

Department of Pediatrics and Medical Genetics, Waisman Center, University of Wisconsin, Madison 53705.

出版信息

Hum Mol Genet. 1992 Sep;1(6):363-9. doi: 10.1093/hmg/1.6.363.

Abstract

Plasmid pRSVL persisted and expressed luciferase for at least 19 months in mouse skeletal muscle after intramuscular injection. Other injected plasmids also stably expressed long-term suggesting that any plasmid DNA could stably persist and express in muscle. Plasmid DNA was demonstrated by quantitative PCR in some of the muscle DNA samples for at least 19 months after injection. The methylation pattern of the plasmid DNA remained in its bacterial form indicating that the foreign DNA did not replicate in the muscle cells. The electroporation of total cellular DNA from injected muscles into bacteria indicated that the plasmid DNA was extrachromosomal. Chromosomal integration of plasmid DNA was searched for by electroporating the injected muscle DNA into bacteria after restriction enzyme digestion and ligation. No plasmids containing plasmid/chromosome junctions were observed in over 1800 colonies examined. Lack of integration increases the theoretical safety of this gene transfer technique. Long-term stability of plasmid DNA in muscle indicates that muscle is an attractive target tissue for the introduction of extrachromosomal plasmid or viral DNA for the purpose of gene therapy.

摘要

肌肉注射后,质粒pRSVL在小鼠骨骼肌中持续存在并表达荧光素酶至少19个月。其他注射的质粒也长期稳定表达,这表明任何质粒DNA都可以在肌肉中稳定存在并表达。注射后至少19个月,通过定量PCR在一些肌肉DNA样本中证实了质粒DNA的存在。质粒DNA的甲基化模式保持其细菌形式,表明外源DNA在肌肉细胞中不复制。将注射肌肉的总细胞DNA电穿孔导入细菌表明质粒DNA是染色体外的。通过在限制性酶切和连接后将注射的肌肉DNA电穿孔导入细菌来寻找质粒DNA的染色体整合。在检查的1800多个菌落中未观察到含有质粒/染色体连接的质粒。缺乏整合增加了这种基因转移技术的理论安全性。质粒DNA在肌肉中的长期稳定性表明,肌肉是用于基因治疗目的引入染色体外质粒或病毒DNA的有吸引力的靶组织。

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