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Specific uptake and interactions of peptide nucleic acid derivatives with biomimetic membranes

机译:肽核酸衍生物与仿生膜的特异性摄取和相互作用

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摘要

There is a growing interest in understanding the uptake mechanism of metal-containing peptide nucleic acid (PNA) bioconjugates into living cells. In this study, quartz crystal microbalance with dissipation monitoring (QCM-D) has been used to explore the membrane specific uptake and interactions of PNA/peptide/Ru(II) conjugates. For all lipid compositions, the unmodified PNA oligomer and its Ru(II) conjugate were found to traverse freely across the membrane in a trans-membrane manner, causing no significant changes in the membrane structure. The nuclear localised signal peptide (NLS) conjugated sequences showed membrane specific activities. In model mammalian and bacterial-mimetic membranes, rapid trans-membrane insertion was observed followed by a concentration dependent disruption and irreversible structural changes to the membrane system. The variations in the magnitude of the structural changes and in their tendency to facilitate disruption are ascribed to hydrophobicity, the cationic charge introduced on modification of the original PNA backbone as well as the physical state of the model membrane used.
机译:人们越来越了解理解含金属的肽核酸(PNA)生物共轭物进入活细胞的摄取机制。在这项研究中,具有耗散监测(QCM-D)的石英晶体微量天平已用于研究膜特异性摄取和PNA /肽/ Ru(II)共轭物的相互作用。对于所有脂质组合物,未修饰的PNA低聚物及其Ru(II)共轭物均以跨膜方式自由穿越膜,在膜结构中没有明显变化。核定位信号肽(NLS)偶联序列显示膜特异活性。在模型哺乳动物和细菌模拟膜中,观察到快速跨膜插入,随后是浓度依赖性破坏和膜系统不可逆的结构变化。结构变化幅度的变化及其促进破坏的趋势归因于疏水性,对原始PNA主链进行修饰时引入的阳离子电荷以及所用模型膜的物理状态。

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