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Superhelical DNA liquid crystals from dendrimer-induced DNA compaction
期刊文章

Superhelical DNA liquid crystals from dendrimer-induced DNA compaction

Bradley W. Mansel, Chun-Jen Su, Chun-Yu Chen, Chih-Mei Young, Yen-Chih Huang, Cheng-Che YangHsin-Lung Chen
Soft Matter, 卷.17(31), 頁碼.7287-7293
08/2021
PMID: 34319332

摘要

Chemistry (all) Condensed Matter Physics
Electrostatic compaction of double stranded DNA induced by a positively charged poly(amidoamine) (PAMAM) dendrimer of generation four (G4) was found to produce two unique types of DNA mesophases, in which the DNA bent into superhelices packed in a tetragonal or hexagonal lattice. The structure formed at a lower dendrimer charge density was three-dimensionally (3D) ordered, as characterized by theP4 1 2 1 2 space group with a 4 1 screw axis in a tetragonal arrangement, showing that the weakly bent DNA superhelices with a pitch length ofca.5.0 nm possessed both identical handedness and phase conservation. The 3D ordered structure transformed into a 2D mesophase at a higher dendrimer charge density, wherein the strongly bent superhelices with a pitch length ofca.4.0 nm organized in a hexagonal lattice without lateral coherence of helical trajectory. The counterion valency of the protonic acid that is used to charge the dendrimer was found to influence the phase diagram. Under a given dendrimer charge density, the complex with a multivalent acid-protonated dendrimer tended to form structures with less curved DNA, attesting that the driving force of charge matching was reduced by increasing the counterion valency of the dendrimer.

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