首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >Hybrid lentivirus-transposon vectors with a random integration profile in human cells.
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Hybrid lentivirus-transposon vectors with a random integration profile in human cells.

机译:在人类细胞中具有随机整合模式的杂交慢病毒-转座子载体。

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Gene delivery by human immunodeficiency virus type 1 (HIV-1)-based lentiviral vectors (LVs) is efficient, but genomic integration of the viral DNA is strongly biased toward transcriptionally active loci resulting in an increased risk of insertional mutagenesis in gene therapy protocols. Nonviral Sleeping Beauty (SB) transposon vectors have a significantly safer insertion profile, but efficient delivery into relevant cell/tissue types is a limitation. In an attempt to combine the favorable features of the two vector systems we established a novel hybrid vector technology based on SB transposase-mediated insertion of lentiviral DNA circles generated during transduction of target cells with integrase (IN)-defective LVs (IDLVs). By construction of a lentivirus-transposon hybrid vector allowing transposition exclusively from circular viral DNA substrates, we demonstrate that SB transposase added in trans directs efficient transposon mobilization from DNA circles in vector-transduced cells. Both transfected plasmid DNA and transduced IDLVs can serve as the source of active transposase. Most important, we demonstrate that the SB transposase overrides the natural lentiviral integration pathway and directs vector integration less frequently toward transcriptional units, resulting in a random genomic integration profile. The novel hybrid vector system combines the attractive features of efficient gene delivery by viral transduction and a safer genomic integration profile by DNA transposition.
机译:通过基于人类免疫缺陷病毒1型(HIV-1)的慢病毒载体(LVs)进行基因传递是有效的,但是病毒DNA的基因组整合强烈偏向于转录活性基因座,从而导致基因治疗方案中插入诱变的风险增加。非病毒睡美人(SB)转座子载体具有明显更安全的插入模式,但是有效传递到相关细胞/组织类型中是一个限制。为了结合两个载体系统的有利功能,我们建立了一种新的杂种载体技术,该技术基于SB转座酶介导的靶病毒与整合酶(IN)缺陷型LV(IDLV)的转导过程中产生的慢病毒DNA环的插入。通过构建仅允许从环状病毒DNA底物进行转座的慢病毒-转座子杂交载体的构建,我们证明了以反型添加的SB转座酶可指导载体转导的细胞中DNA环的有效转座子动员。转染的质粒DNA和转导的IDLV均可作为活性转座酶的来源。最重要的是,我们证明了SB转座酶覆盖了天然慢病毒整合途径,并较少地将载体整合导向转录单位,从而产生了随机的基因组整合图谱。新型的杂交载体系统结合了病毒转导有效基因递送和DNA转座更安全的基因组整合特性的诱人特征。

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