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睡美人介导的体内转座及长期表达:利用LoxP/Cre重组酶系统区分转座特异性表达。

Sleeping Beauty-mediated transposition and long-term expression in vivo: use of the LoxP/Cre recombinase system to distinguish transposition-specific expression.

作者信息

Score Paul R, Belur Lalitha R, Frandsen Joel L, Geurts Jennifer L, Yamaguchi Tomoyuki, Somia Nikunj V, Hackett Perry B, Largaespada David A, McIvor R Scott

机构信息

Arnold and Mabel Beckman Center for Transposon Research, Gene Therapy Program, Institute of Human Genetics, Department of Genetics, Cell Biology and Development, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

Mol Ther. 2006 Mar;13(3):617-24. doi: 10.1016/j.ymthe.2005.10.015. Epub 2005 Dec 13.

Abstract

The Sleeping Beauty transposon system (SB) has been shown to mediate nonviral integration of expression constructs resulting in long-term gene expression in several mammalian targets. Often, however, it is difficult to discern long-term expression resulting from transposition vs nonhomologous chromosomal recombination or maintenance of plasmid DNA in an extrachromosomal form. We have designed a system to silence expression from nontransposed sequences, making it possible to determine more specifically the amount of expression resulting from transposition. A transposon plasmid, pT2F/Cage (carrying a murine erythropoietin (Epo) gene transcriptionally regulated by the ubiquitously expressed CAGS promoter), was engineered to contain LoxP sites positioned so as to interrupt expression upon Cre-mediated recombination. Upon transposition these sites become segregated, thus protecting the expression construct from Cre-mediated recombination and subsequent silencing. Interferon-inducible Mx1Cre mice were administered pT2F/Cage with or without transposase-encoding plasmid. At 2 to 4 weeks postinjection, in the absence of SB transposase, Cre induction reduced Epo expression to about 1% of that seen in the group that was administered transposase-encoding plasmid, which maintained Epo levels near those of the uninduced groups. Southern hybridization analysis and plasmid rescue of transfected tissue supported the efficient Cre-mediated silencing of nontransposed sequences. These results indicate a substantial level of DNA-mediated expression not associated with transposition, but which can be quantitatively distinguished from transposition by its sensitivity to Cre recombinase. The results also provide additional evidence for the effectiveness of the Sleeping Beauty transposon system as an in vivo DNA-mediated gene transfer strategy for achieving long-term expression.

摘要

睡眠美后转座子系统(SB)已被证明可介导表达构建体的非病毒整合,从而在多个哺乳动物靶标中实现长期基因表达。然而,通常很难区分转座导致的长期表达与非同源染色体重组或质粒DNA以染色体外形式维持所导致的长期表达。我们设计了一个系统来沉默非转座序列的表达,从而能够更具体地确定转座所导致的表达量。构建了一个转座子质粒pT2F/Cage(携带一个受广泛表达的CAGS启动子转录调控的小鼠促红细胞生成素(Epo)基因),使其含有LoxP位点,其位置设计为在Cre介导的重组时中断表达。转座后,这些位点会分离,从而保护表达构建体免受Cre介导的重组及随后的沉默作用。给干扰素诱导型Mx1Cre小鼠注射pT2F/Cage,同时注射或不注射编码转座酶的质粒。在注射后2至4周,在没有SB转座酶的情况下,Cre诱导使Epo表达降至注射编码转座酶质粒组所观察到的表达量的约1%,而注射编码转座酶质粒组的Epo水平维持在未诱导组附近。对转染组织的Southern杂交分析和质粒拯救支持了Cre介导的非转座序列的有效沉默。这些结果表明存在大量与转座无关的DNA介导的表达,但可通过其对Cre重组酶的敏感性与转座进行定量区分。这些结果还为睡眠美后转座子系统作为一种用于实现长期表达的体内DNA介导的基因转移策略的有效性提供了额外证据。

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