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DNA-聚阳离子复合物的原子尺度分子动力学模拟:两种不同的结合模式。

Atomic-Scale Molecular Dynamics Simulations of DNA-Polycation Complexes: Two Distinct Binding Patterns.

作者信息

Kondinskaia Diana A, Kostritskii Andrei Yu, Nesterenko Alexey M, Antipina Alexandra Yu, Gurtovenko Andrey A

机构信息

Faculty of Physics, St. Petersburg State University , Ulyanovskaya str. 3, Petrodvorets, St. Petersburg 198504, Russia.

Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University , Leninskie Gory, 1/40, Moscow 119991, Russia.

出版信息

J Phys Chem B. 2016 Jul 14;120(27):6546-54. doi: 10.1021/acs.jpcb.6b03779. Epub 2016 Jun 23.

Abstract

Synthetic cationic polymers represent a promising class of delivery vectors for gene therapy. Here, we employ atomistic molecular dynamics simulations to gain insight into the structure and properties of complexes of DNA with four linear polycations: polyethylenimine (PEI), poly-l-lysine (PLL), polyvinylamine (PVA), and polyallylamine (PAA). These polycations differ in their polymer geometries, protonation states, and hydrophobicities of their backbone chains. Overall, our results demonstrate for the first time the existence of two distinct patterns of binding of DNA with polycations. For PEI, PLL, and PAA, the complex is stabilized by the electrostatic attraction between protonated amine groups of the polycation and phosphate groups of DNA. In contrast, PVA demonstrates an alternative binding pattern as it gets embedded into the DNA major groove. It is likely that both the polymer topology and affinity of the backbone chain of PVA to the DNA groove are responsible for such behavior. The differences in binding patterns can have important biomedical implications: embedding PVA into a DNA groove makes it less sensitive to changes in the aqueous environment (pH level, ionic strength, etc.) and could therefore hinder the intracellular release of genetic material from a delivery vector, leading to lower transfection activity.

摘要

合成阳离子聚合物是一类很有前景的基因治疗递送载体。在此,我们采用原子分子动力学模拟来深入了解DNA与四种线性聚阳离子(聚乙烯亚胺(PEI)、聚-L-赖氨酸(PLL)、聚乙烯胺(PVA)和聚烯丙胺(PAA))形成的复合物的结构和性质。这些聚阳离子在聚合物几何结构、质子化状态以及主链的疏水性方面存在差异。总体而言,我们的结果首次证明了DNA与聚阳离子存在两种不同的结合模式。对于PEI、PLL和PAA,复合物通过聚阳离子的质子化胺基团与DNA的磷酸基团之间的静电吸引而稳定。相比之下,PVA表现出另一种结合模式,因为它嵌入到DNA的大沟中。很可能是PVA的聚合物拓扑结构及其主链与DNA沟的亲和力共同导致了这种行为。结合模式的差异可能具有重要的生物医学意义:将PVA嵌入DNA沟使其对水环境变化(pH值、离子强度等)不太敏感,因此可能会阻碍遗传物质从递送载体中释放到细胞内,导致转染活性降低。

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