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Facilitating plasmid nuclear delivery by interfering with the selective nuclear pore barrier

机译:通过干扰选择性核孔屏障来促进质粒核传递

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摘要

Nuclear pore complexes (NPCs) are sophisticated transporters assembled from diverse proteins termed nucleoporins (Nups). They control all nucleocytoplasmic transport and form a stringent barrier between the cytosol and the nucleus. While selective receptor‐mediated transport enables translocation of macromolecules up to striking sizes approaching megadalton‐scale, the upper cutoff for diffusion is at 40 kDa. Raising the cutoff is of particular importance for nuclear delivery of therapeutic nanoparticles, for example, gene and chemotherapy. In this work, we set out to present compounds capable of raising the cutoff to an extent enabling nuclear delivery of 6 kbp pDNA (150 kDa) in cultured human vascular endothelial cells. Of all tested compounds one is singled out, 1,6‐hexanediol (1,6‐HD). Our observations reveal that 1,6‐HD facilitates nuclear delivery of pDNA in up to 10–20% of the tested cells, compared to no delivery at all in control conditions. It acts by interfering with bonds between Nups that occupy the NPC channel and confer transport selectivity. It also largely maintains cell viability even at high concentrations. We envisage that 1,6‐HD may serve as a lead substance and usher in the design of potent new strategies to increase nuclear delivery of therapeutic nanoparticles.
机译:核孔复合物(NPC)是由称为核孔蛋白(Nups)的多种蛋白质组装而成的复杂转运蛋白。它们控制所有核质运输,并在细胞质和细胞核之间形成严格的屏障。选择性受体介导的转运使大分子的转运达到接近兆达尔顿级的惊人大小,而扩散的上限为40 kDa。提高临界值对于治疗性纳米颗粒(例如基因和化学疗法)的核传递特别重要。在这项工作中,我们着手介绍能够将截止值提高到能够在培养的人血管内皮细胞中核传递6 kbp pDNA(150 kDa)的程度的化合物。在所有测试的化合物中,一个是1,6-己二醇(1,6-HD)。我们的观察结果表明,与对照条件下完全不递送相比,1,6-HD促进了多达10-20%的受试细胞中pDNA的核递送。它通过干扰占据NPC通道的Nups之间的键并赋予运输选择性来发挥作用。即使在高浓度下,它也可以很大程度上维持细胞活力。我们设想1,6-HD可能是主要物质,并会设计出有效的新策略来增加治疗性纳米颗粒的核传递。

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