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基于腺相关病毒反向末端重复序列的单链DNA微型载体的构建及基因表达分析

Construction and gene expression analysis of a single-stranded DNA minivector based on an inverted terminal repeat of adeno-associated virus.

作者信息

Ping Han, Liu Xiaomei, Zhu Dongqin, Li Taiming, Zhang Chun

机构信息

Key Lab of Bio-Medical Diagnostics, CAS, Institute of Biomedical Engineering and Technology, CAS, No. 88 Keling Road, Suzhou New District, Suzhou, 215163, People's Republic of China.

出版信息

Mol Biotechnol. 2015 Apr;57(4):382-90. doi: 10.1007/s12033-014-9832-3.

Abstract

The plasmid vectors currently used for nonviral gene transfer have the disadvantage of carrying a bacterial backbone and an antibiotic resistance gene, which may cause side effects. The adeno-associated virus (AAV) genome is a linear single-stranded DNA (ssDNA) molecule with palindromic inverted terminal repeat (ITR) sequences forming double-stranded DNA (dsDNA) hairpin (HP) structures at each end. Based on the AAV genome, we constructed an AAV-ITR ssDNA minivector that consists of a GFP expression cassette flanked by both ITR sequences of 125 nucleotides. The minivectors were produced by digestion of the parental plasmids followed by denaturation. The self-complementary inverted T-shaped HP structure of the minivector was automatically formed. The HEK 293T cells were transfected with the AAV-ITR ssDNA minivector, plasmid, and dsDNA expression cassette. The results showed that AAV-ITR ssDNA minivector had relatively low gene expression efficiency in vitro. However, we found that the GFP expression efficiency of the D sequence-deleted AAV-ITR ssDNA minivector was significantly increased and was similar to those obtained with the plasmid and dsDNA expression cassette. Our data suggest that the AAV-ITR ssDNA minivector may be a new type of gene expression vector for gene therapy besides the virus and plasmid.

摘要

目前用于非病毒基因转移的质粒载体存在携带细菌骨架和抗生素抗性基因的缺点,这可能会导致副作用。腺相关病毒(AAV)基因组是一种线性单链DNA(ssDNA)分子,其两端具有回文倒置末端重复(ITR)序列,可形成双链DNA(dsDNA)发夹(HP)结构。基于AAV基因组,我们构建了一种AAV-ITR ssDNA微型载体,它由一个绿色荧光蛋白(GFP)表达盒组成,两侧为125个核苷酸的ITR序列。微型载体通过消化亲本质粒然后变性来制备。微型载体的自互补倒T形HP结构自动形成。用AAV-ITR ssDNA微型载体、质粒和dsDNA表达盒转染人胚肾293T细胞。结果表明,AAV-ITR ssDNA微型载体在体外具有相对较低的基因表达效率。然而,我们发现缺失D序列的AAV-ITR ssDNA微型载体的GFP表达效率显著提高,与质粒和dsDNA表达盒获得的效率相似。我们的数据表明,AAV-ITR ssDNA微型载体可能是除病毒和质粒之外的一种新型基因治疗基因表达载体。

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