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质粒DNA中未甲基化CpG二核苷酸含量对转基因表达持续性的影响。

Effect of the content of unmethylated CpG dinucleotides in plasmid DNA on the sustainability of transgene expression.

作者信息

Mitsui Masaru, Nishikawa Makiya, Zang Lei, Ando Mitsuru, Hattori Kayoko, Takahashi Yuki, Watanabe Yoshihiko, Takakura Yoshinobu

机构信息

Department of Biopharmaceutics and Drug Metabolism, Graduate School of Pharmaceutical Sciences, Kyoto University, Kyoto, Japan.

出版信息

J Gene Med. 2009 May;11(5):435-43. doi: 10.1002/jgm.1317.

Abstract

BACKGROUND

Nonviral gene transfer generally suffers from short-term expression of transgenes. We have previously demonstrated that plasmids with reduced CpG content exhibited a more prolonged expression of murine interferon (IFN)-beta or IFN-gamma, which was effective in inhibiting metastatic tumor growth. A further extension of the duration of transgene expression could be achieved by controlling the number and location of CpG motifs in plasmid DNA.

METHODS

Luciferase-expressing plasmids with differing CpG content were injected into the tail vein of mice by the hydrodynamic injection method. The effects of CpG content on the duration of transgene expression were examined, focusing on cytosine methylation and pro-inflammatory cytokines. Based on the findings, IFN-gamma-expressing plasmids were constructed and their transgene expression and inhibitory effect on pulmonary metastasis were evaluated.

RESULTS

Plasmids with a few CpG motifs showed a prolonged luciferase activity in the liver. Methylation of CpG motifs in plasmids reduced the expression and the extent of this reduction was greater for plasmids with a high CpG content. Pro-inflammatory cytokines hardly affected the expression. pCpG-Mu gamma, the IFN-gamma-expressing plasmid, which contains 20 CpG motifs only in the cDNA region, exhibited a sustained IFN-gamma concentration at therapeutic levels, and had a great inhibitory effect on the pulmonary metastasis of tumor cells.

CONCLUSIONS

The duration of transgene expression of IFN-gamma was successfully increased by reducing the CpG content of IFN-expressing plasmid vector, which resulted in an increased anticancer activity of IFN gene transfer.

摘要

背景

非病毒基因转移通常存在转基因短期表达的问题。我们之前已经证明,具有降低的CpG含量的质粒表现出更长时间的小鼠干扰素(IFN)-β或IFN-γ表达,这在抑制转移性肿瘤生长方面是有效的。通过控制质粒DNA中CpG基序的数量和位置,可以进一步延长转基因表达的持续时间。

方法

通过流体动力学注射法将具有不同CpG含量的表达荧光素酶的质粒注射到小鼠尾静脉中。研究了CpG含量对转基因表达持续时间的影响,重点关注胞嘧啶甲基化和促炎细胞因子。基于这些发现,构建了表达IFN-γ的质粒,并评估了它们的转基因表达和对肺转移的抑制作用。

结果

具有少量CpG基序的质粒在肝脏中显示出延长的荧光素酶活性。质粒中CpG基序的甲基化降低了表达,并且对于具有高CpG含量的质粒,这种降低的程度更大。促炎细胞因子几乎不影响表达。仅在cDNA区域包含20个CpG基序的表达IFN-γ的质粒pCpG-Muγ在治疗水平上表现出持续的IFN-γ浓度,并且对肿瘤细胞的肺转移具有很大的抑制作用。

结论

通过降低表达IFN的质粒载体的CpG含量,成功延长了IFN-γ的转基因表达持续时间,这导致IFN基因转移的抗癌活性增加。

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