Tarahovsky Yury S, Koynova Rumiana, MacDonald Robert C
Department of Biochemistry, Molecular Biology and Cell Biology, Northwestern University, Evanston, Illinois 60208 USA.
Biophys J. 2004 Aug;87(2):1054-64. doi: 10.1529/biophysj.104.042895.
DNA release from lipoplexes is an essential step during lipofection and is probably a result of charge neutralization by cellular anionic lipids. As a model system to test this possibility, fluorescence resonance energy transfer between DNA and lipid covalently labeled with Cy3 and BODIPY, respectively, was used to monitor the release of DNA from lipid surfaces induced by anionic liposomes. The separation of DNA from lipid measured this way was considerably slower and less complete than that estimated with noncovalently labeled DNA, and depends on the lipid composition of both lipoplexes and anionic liposomes. This result was confirmed by centrifugal separation of released DNA and lipid. X-ray diffraction revealed a clear correlation of the DNA release capacity of the anionic lipids with the interfacial curvature of the mesomorphic structures developed when the anionic and cationic liposomes were mixed. DNA release also correlated with the rate of fusion of anionic liposomes with lipoplexes. It is concluded that the tendency to fuse and the phase preference of the mixed lipid membranes are key factors for the rate and extent of DNA release. The approach presented emphasizes the importance of the lipid composition of both lipoplexes and target membranes and suggests optimal transfection may be obtained by tailoring lipoplex composition to the lipid composition of target cells.
从脂质体复合物中释放DNA是脂质体转染过程中的一个关键步骤,这可能是细胞阴离子脂质电荷中和的结果。作为测试这种可能性的模型系统,分别用Cy3和BODIPY共价标记的DNA和脂质之间的荧光共振能量转移被用于监测阴离子脂质体诱导的DNA从脂质表面的释放。以这种方式测量的DNA与脂质的分离比用非共价标记的DNA估计的要慢得多且不完全,并且取决于脂质体复合物和阴离子脂质体的脂质组成。释放的DNA和脂质的离心分离证实了这一结果。X射线衍射显示,当阴离子和阳离子脂质体混合时,阴离子脂质的DNA释放能力与形成的介晶结构的界面曲率有明显的相关性。DNA释放也与阴离子脂质体与脂质体复合物的融合速率相关。结论是,混合脂质膜的融合倾向和相偏好是DNA释放速率和程度的关键因素。所提出的方法强调了脂质体复合物和靶膜脂质组成的重要性,并表明通过根据靶细胞的脂质组成定制脂质体复合物组成可能获得最佳转染效果。