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通过合成两性聚电解质使 DNA/聚阳离子复合物解交联以提高转录效率:聚电解质中电荷平衡的影响。

Loosening of DNA/polycation complexes by synthetic polyampholyte to improve the transcription efficiency: effect of charge balance in the polyampholyte.

机构信息

Otsuma Women's University Graduate School, Sanbancho, Chiyoda-ku, Tokyo, Japan.

出版信息

Biophys J. 2010 Apr 7;98(7):1257-66. doi: 10.1016/j.bpj.2009.11.047.

Abstract

High mobililty group proteins are amphoteric nuclear proteins that are known to unfold chromatin to stimulate transcription. To mimic their structures, we synthesized the novel polyethylene glycol (PEG) derivatives, PEG-ACs, consisting of both amino- and carboxyl-pendants in various ratios, and their loosening and transcription-improving activity on the DNA complex was examined. Fluorescence anisotropy measurement revealed that anionic PEG-ACs with more carboxyls than amines could efficiently loosen the DNA/polyethyleneimine complex. Those anionic PEG-ACs showing a loosening effect on the DNA complex evidently increased the transcription rate to >20 times higher than that of the original complex, probably owing to the facilitated approach of transcriptional factors to the DNA segments in the loosened complexes. The complexes with anionic PEG-ACs also showed improved transgene expression level on the cultured cells, indicating the effectiveness of improving transcriptional activity to attain a high extragene expression by the plasmid complex. The loosening mechanism of DNA/polycation complexes was investigated with a simplified model via Monte Carlo simulation to discern the difference in the presence of cationic polyampholytes, anionic polyampholytes, and polyanions.

摘要

高迁移率族蛋白是两性核蛋白,已知其能解旋染色质以刺激转录。为了模拟它们的结构,我们合成了新型聚乙二醇(PEG)衍生物 PEG-ACs,它们具有不同比例的氨基和羧基侧链,研究了它们对 DNA 复合物的松动和转录改善活性。荧光各向异性测量显示,带负电荷的 PEG-ACs 中带负电荷的羧基比带正电荷的氨基多,能够有效地松动 DNA/聚乙烯亚胺复合物。那些对 DNA 复合物具有松动作用的带负电荷的 PEG-ACs 明显将转录率提高到比原始复合物高 20 倍以上,这可能是由于转录因子更容易接近松散复合物中的 DNA 片段。带负电荷的 PEG-ACs 的复合物在培养细胞中也表现出提高的转基因表达水平,表明通过质粒复合物提高转录活性以实现高效外源基因表达的有效性。通过蒙特卡罗模拟用简化模型研究了 DNA/聚阳离子复合物的松动机制,以辨别阳离子聚电解质、阴离子聚电解质和聚阴离子存在时的差异。

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