Koyama Yoshiyuki, Yamashita Misa, Iida-Tanaka Naoko, Ito Tomoko
Department of Textile Science and Department of Food Science, Otsuma Women's University, Tokyo, 102-8357 Japan.
Biomacromolecules. 2006 Apr;7(4):1274-9. doi: 10.1021/bm0504633.
A water-soluble PEG derivative having both amino and carboxylic acid side chains (PEG-AC) was synthesized and explored for its transcription- and transfection-enhancing activity. PEG-AC could be deposited onto the surface of DNA/polycation complexes to form a ternary complex with slightly negative surface potential. PEG-AC-coating on the plasmid/PEI complexes obviously enhanced their transcriptional activity, and 31-fold higher consumption of UTP was observed. Amphoteric PEG-AC would loosen the tightly compacted DNA/PEI complex and facilitate the approach of transcriptional factors. PEG-AC also evidently improved the transgene expression level on the cultured CHO cells.
合成了一种具有氨基和羧酸侧链的水溶性聚乙二醇衍生物(PEG-AC),并对其转录和转染增强活性进行了研究。PEG-AC可以沉积在DNA/聚阳离子复合物表面,形成表面电位略为负性的三元复合物。质粒/聚乙烯亚胺(PEI)复合物上的PEG-AC涂层明显增强了它们的转录活性,观察到三磷酸尿苷(UTP)的消耗增加了31倍。两性的PEG-AC会使紧密压缩的DNA/PEI复合物松弛,并促进转录因子的接近。PEG-AC还显著提高了在培养的中国仓鼠卵巢(CHO)细胞上的转基因表达水平。