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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Structure and Dynamics of Multiple Cationic Vectors—siRNA Complexation by All-Atomic Molecular Dynamics Simulations
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Structure and Dynamics of Multiple Cationic Vectors—siRNA Complexation by All-Atomic Molecular Dynamics Simulations

机译:多个阳离子载体的结构和动力学-全原子分子动力学模拟的siRNA络合

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Understanding the molecular mechanism of gene condensation is a key component to rationalizing gene delivery phenomena, including functional properties such as the stability of the gene—vector complex and the intracellular release of the gene. In this work, we adopt an atomistic molecular dynamics simulation approach to study the complexation of short strand duplex RNA with four cationic carrier systems of varying charge and surface topology at different charge ratios. At lower charge ratios, polymers bind quite effectively to siRNA, while at high charge ratios, the complexes are saturated and there are free polymers that are unable to associate with RNA. We also observed reduced fluctuations in RNA structures when complexed with multiple polymers in solution as compared to both free siRNA in water and the single polymer complexes. These novel simulations provide a much better understanding of key mechanistic aspects of gene-polycation complexation and thereby advance progress toward rational design of nonviral gene delivery systems.
机译:了解基因缩合的分子机制是合理化基因传递现象的关键组成部分,包括功能特性,如基因-载体复合物的稳定性和基因在细胞内的释放。在这项工作中,我们采用原子分子动力学模拟方法来研究短链双链RNA与四个阳离子载体系统(电荷和表面拓扑结构在不同的电荷比率下)的复合。在较低的电荷比下,聚合物非常有效地与siRNA结合,而在较高的电荷比下,复合物饱和,并且存在无法与RNA缔合的游离聚合物。与水溶液中的游离siRNA和单一聚合物复合物相比,与溶液中的多种聚合物复合时,我们还观察到RNA结构的波动减少。这些新颖的模拟提供了对基因聚阳离子复合的关键机制方面的更好的理解,从而推动了非病毒基因递送系统的合理设计的进展。

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