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阳离子嵌段聚电解质引发的单个质粒DNA凝聚物的结构多态性

Structural Polymorphism of Single pDNA Condensates Elicited by Cationic Block Polyelectrolytes.

作者信息

Osada Kensuke

机构信息

Quantum Medical Science Directorate, National Institutes for Quantum and Radiological Science and Technology (QST), Anagawa, Inage-ku, Chiba-shi, Chiba 263-8555, Japan.

出版信息

Polymers (Basel). 2020 Jul 19;12(7):1603. doi: 10.3390/polym12071603.

Abstract

DNA folding is a core phenomenon in genome packaging within a nucleus. Such a phenomenon is induced by polyelectrolyte complexation between anionic DNA and cationic proteins of histones. In this regard, complexes formed between DNA and cationic polyelectrolytes have been investigated as models to gain insight into genome packaging. Upon complexation, DNA undergoes folding to reduce its occupied volume, which often results in multi-complex associated aggregates. However, when cationic copolymers comprising a polycation block and a neutral hydrophilic polymer block are used instead, DNA undergoes folding as a single molecule within a spontaneously formed polyplex micelle (PM), thereby allowing the observation of the higher-order structures that DNA forms. The DNA complex forms polymorphic structures, including globular, rod-shaped, and ring-shaped (toroidal) structures. This review focuses on the polymorphism of DNA, particularly, to elucidate when, how, and why DNA organizes into these structures with cationic copolymers. The interactions between DNA and the copolymers, and the specific nature of DNA in rigidity; i.e., rigid but foldable, play significant roles in the observed polymorphism. Moreover, PMs serve as potential gene vectors for systemic application. The significance of the controlled DNA folding for such an application is addressed briefly in the last part.

摘要

DNA折叠是细胞核内基因组包装的核心现象。这种现象是由阴离子DNA与组蛋白阳离子蛋白之间的聚电解质络合诱导产生的。在这方面,人们已经研究了DNA与阳离子聚电解质之间形成的复合物,作为深入了解基因组包装的模型。络合后,DNA会发生折叠以减少其占据的体积,这通常会导致多复合物相关的聚集体。然而,当使用包含聚阳离子嵌段和中性亲水性聚合物嵌段的阳离子共聚物时,DNA会在自发形成的聚集体胶束(PM)内作为单个分子发生折叠,从而能够观察到DNA形成的高阶结构。DNA复合物形成多态结构,包括球状、棒状和环状(环形)结构。本综述聚焦于DNA的多态性,特别是阐明DNA何时、如何以及为何与阳离子共聚物组装成这些结构。DNA与共聚物之间的相互作用,以及DNA在刚性方面的特殊性质,即刚性但可折叠,在观察到的多态性中起着重要作用。此外,PM作为全身应用的潜在基因载体。最后一部分简要讨论了这种应用中可控DNA折叠的意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1d9/7408586/e38ddf8a7116/polymers-12-01603-g001.jpg

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