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Nuclear accumulation of plasmid DNA can be enhanced by non-selective gating of the nuclear pore

机译:通过核孔的非选择性门控可以增强质粒DNA的核积累

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One of the major obstacles in non-viral gene transfer is the nuclear membrane. Attempts to improve the transport of DNA to the nucleus through the use of nuclear localization signals or importin-β have achieved limited success. It has been proposed that the nuclear pore complexes (NPCs) through which nucleocytoplasmic transport occurs are filled with a hydrophobic phase through which hydrophobic importins can dissolve. Therefore, considering the hydrophobic nature of the NPC channel, we evaluated whether a non-selective gating of nuclear pores by trans-cyclohexane-1,2-diol (TCHD), an amphipathic alcohol that reversibly collapses the permeability barrier of the NPCs, could be obtained and used as an alternative method to facilitate nuclear entry of plasmid DNA. Our data demonstrate for the first time that TCHD makes the nucleus permeable for both high molecular weight dextrans and plasmid DNA (pDNA) at non-toxic concentrations. Furthermore, in line with these observations, TCHD enhanced the transfection efficacy of both naked DNA and lipoplexes. In conclusion, based on the proposed structure of NPCs we succeeded to temporarily open the NPCs for macromolecules as large as pDNAs and demonstrated that this can significantly enhance non-viral gene delivery.
机译:非病毒基因转移中的主要障碍是核膜。通过使用核定位信号或Importin-β改善DNA对核的转运进行了有限的成功。已经提出,核孔隙络合物(NPC)通过其中发生核细胞质输送的含有疏水性,通过疏水性阶段溶解。因此,考虑到NPC通道的疏水性质,我们评估了通过反式环己烷-1,2-二醇(TCHD)的核孔的非选择性栅,可以是可逆地塌陷NPC的渗透屏障的两亲性醇获得并用作促进质粒DNA核置入的替代方法。我们的数据首次证明TCHD使核可渗透为高分子量葡聚糖和质粒DNA(PDNA)在无毒浓度下。此外,根据这些观察结果,TCHD增强了两种裸体DNA和脂质物的转染效果。总之,基于所提出的NPC结构,我们成功地临时为大分子为大分子的NPC,如PDNAS,并证明这可以显着增强非病毒基因递送。

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