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睡美人转座子的转录活性以及用绝缘子保护其遗传物质。

Transcriptional activities of the Sleeping Beauty transposon and shielding its genetic cargo with insulators.

作者信息

Walisko Oliver, Schorn Andrea, Rolfs Frank, Devaraj Anantharam, Miskey Csaba, Izsvák Zsuzsanna, Ivics Zoltán

机构信息

Max Delbrück Center for Molecular Medicine, Berlin, Germany.

出版信息

Mol Ther. 2008 Feb;16(2):359-69. doi: 10.1038/sj.mt.6300366. Epub 2007 Dec 11.

Abstract

The Sleeping Beauty (SB) transposable element shows efficient transposition in human cells, and provides long-term transgene expression in preclinical animal models. Random chromosomal insertion of SB vectors represents a safety issue in human gene therapeutic applications, due to potential genotoxic effects associated with transposon integration. We investigated the transcriptional activities of SB in order to assess its potential to alter host gene expression upon integration. The untranslated regions (UTRs) of the transposon direct convergent, inward-directed transcription. Transcription from the 5'-UTR of SB is upregulated by the host-encoded factor high-mobility group 2-like 1 (HMG2L1), and requires a 65-base pair (bp) region not present in commonly used SB vectors. The SB transposase antagonizes the effect of HMG2L1, suggesting that natural transposase expression is under a negative feedback regulation. SB transposon vectors lacking the 65-bp region associated with HMG2L1-dependent upregulation exhibit benign transcriptional activities, at a level up to 100-times lower than that of the murine leukemia virus (MLV) long terminal repeat (LTR). Incorporation of chicken beta-globin HS4 insulator sequences in SB-based vectors reduces the transactivation of model promoters by transposon-borne enhancers, and thus may lower the risk of transcriptional activation of host genes situated close to a transposon insertion site.

摘要

睡美人(SB)转座元件在人类细胞中显示出高效的转座能力,并在临床前动物模型中提供长期转基因表达。由于与转座子整合相关的潜在基因毒性作用,SB载体在染色体上的随机插入在人类基因治疗应用中是一个安全问题。我们研究了SB的转录活性,以评估其整合后改变宿主基因表达的潜力。转座子的非翻译区(UTR)指导着向内的双向转录。SB 5'-UTR的转录受到宿主编码因子高迁移率族2样蛋白1(HMG2L1)的上调,并且需要常用SB载体中不存在的一个65个碱基对(bp)的区域。SB转座酶拮抗HMG2L1的作用,这表明天然转座酶的表达受到负反馈调节。缺少与HMG2L1依赖性上调相关的65-bp区域的SB转座子载体表现出良性的转录活性,其水平比鼠白血病病毒(MLV)长末端重复序列(LTR)低100倍。在基于SB的载体中掺入鸡β-珠蛋白HS4绝缘子序列可减少转座子携带的增强子对模型启动子的反式激活作用,因此可能降低位于转座子插入位点附近的宿主基因转录激活的风险。

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