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质粒细菌骨架DNA介导的肝脏中附加型转基因表达沉默与CpG甲基化无关。

Silencing of episomal transgene expression in liver by plasmid bacterial backbone DNA is independent of CpG methylation.

作者信息

Chen Zhi-Ying, Riu Efren, He Chen-Yi, Xu Hui, Kay Mark A

机构信息

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

出版信息

Mol Ther. 2008 Mar;16(3):548-56. doi: 10.1038/sj.mt.6300399. Epub 2008 Feb 5.

Abstract

Minicircle DNA vectors devoid of plasmid bacterial backbone, (BB) DNAs, are transcriptionally persistent, whereas their parent plasmid counterparts are silenced in the liver. In this study we establish that circular plasmid BB provided in trans did not silence a transgene expression cassette in vivo, further confirming our previous conclusions that the covalent attachment of the plasmid BB to the expression cassette is required for DNA silencing. Given the high concentration of CpG dinucleotides in the plasmid BB, we investigated the role of DNA methylation on transgene silencing in vivo. The presence or absence of methylation in CpG motifs in routine plasmid BBs had no significant effect on transcriptional silencing. Furthermore, the removal of the CpG motifs from the BB did not ameliorate transcriptional silencing. Transgene silencing was partially inhibited when two tandem copies of the chicken cHS4 insulator at each end of a routine plasmid vector were used. These results are consistent with the idea that the transcriptional repression observed with plasmid DNA vectors in the liver is caused by formation of repressive heterochromatin on the plasmid DNA backbone, which then spreads and inactivates the transgene in cis, and that CpG content or methylation has little or no influence in the process.

摘要

不含质粒细菌骨架(BB)DNA的微小环DNA载体具有转录持续性,而其亲本质粒在肝脏中则会沉默。在本研究中,我们证实,反式提供的环状质粒BB在体内不会使转基因表达盒沉默,这进一步证实了我们之前的结论,即质粒BB与表达盒的共价连接是DNA沉默所必需的。鉴于质粒BB中CpG二核苷酸的浓度较高,我们研究了DNA甲基化在体内转基因沉默中的作用。常规质粒BB中CpG基序甲基化的存在与否对转录沉默没有显著影响。此外,从BB中去除CpG基序并不能改善转录沉默。当在常规质粒载体两端使用两个串联拷贝的鸡cHS4绝缘子时,转基因沉默受到部分抑制。这些结果与以下观点一致:在肝脏中观察到的质粒DNA载体转录抑制是由质粒DNA骨架上形成抑制性异染色质引起的,然后这种异染色质会扩散并顺式使转基因失活,并且CpG含量或甲基化在该过程中几乎没有影响。

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