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通过改进的体外连接方法高效构建重组腺病毒载体

Efficient construction of a recombinant adenovirus vector by an improved in vitro ligation method.

作者信息

Mizuguchi H, Kay M A

机构信息

Department of Pediatrics, Stanford University School of Medicine, CA 94305, USA.

出版信息

Hum Gene Ther. 1998 Nov 20;9(17):2577-83. doi: 10.1089/hum.1998.9.17-2577.

Abstract

An efficient method for constructing a recombinant adenovirus (Ad) vector, based on an in vitro ligation, has been developed. To insert the foreign gene into an adenoviral DNA, we introduced three unique restriction sites, I-CeuI, SwaI, and PI-SceI, into the E1 deletion site of the vector plasmid, which contains a complete E1, E3-deleted adenovirus type 5 genome. I-CeuI and PI-SceI are intron-encoded endonucleases with a sequence specificity of at least 9-10 and 11 bp, respectively. A shuttle plasmid, pHM3, containing multiple cloning sites between the I-CeuI and PI-SceI sites, was constructed. After the gene of interest was inserted into this shuttle plasmid, the plasmid for E1-deleted adenovirus vector could be easily prepared by in vitro ligation using the I-CeuI and PI-SceI sites. SwaI digestion of the ligation products prevented the production of a plasmid containing a parental adenovirus genome (null vector). After transformation into E. coli, more than 90% of the transformants had the correct insert. To make the vector, a PacI-digested, linearized plasmid was transfected into 293 cells, resulting in a homogeneous population of recombinant virus. The large number and strategic location of the unique restriction sites will not only increase the rapidity of production of new first-generation vectors for gene transfer but will allow for rapid further improvements in the vector DNA backbone.

摘要

一种基于体外连接构建重组腺病毒(Ad)载体的有效方法已被开发出来。为了将外源基因插入腺病毒DNA中,我们在载体质粒的E1缺失位点引入了三个独特的限制性酶切位点,即I-CeuI、SwaI和PI-SceI,该载体质粒包含一个完整的E1、E3缺失的5型腺病毒基因组。I-CeuI和PI-SceI是内含子编码的内切酶,其序列特异性分别至少为9 - 10 bp和11 bp。构建了一个穿梭质粒pHM3,其在I-CeuI和PI-SceI位点之间含有多个克隆位点。将目的基因插入该穿梭质粒后,通过使用I-CeuI和PI-SceI位点进行体外连接,可轻松制备E1缺失腺病毒载体的质粒。对连接产物进行SwaI酶切可防止产生含有亲本腺病毒基因组的质粒(空载体)。转化到大肠杆菌后,超过90%的转化子具有正确的插入片段。为了制备载体,将经PacI酶切线性化的质粒转染到293细胞中,从而产生同质的重组病毒群体。这些独特限制性酶切位点的数量众多且位置合理,不仅会提高用于基因转移的新型第一代载体的生产速度,还将使载体DNA骨架能够快速得到进一步改进。

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