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天然存在的支链多胺会在巨大的DNA中诱导形成交联网络结构。

Naturally occurring branched-chain polyamines induce a crosslinked meshwork structure in a giant DNA.

作者信息

Muramatsu Akira, Shimizu Yuta, Yoshikawa Yuko, Fukuda Wakao, Umezawa Naoki, Horai Yuhei, Higuchi Tsunehiko, Fujiwara Shinsuke, Imanaka Tadayuki, Yoshikawa Kenichi

机构信息

Faculty of Life and Medical Sciences, Doshisha University, Kyotanabe 610-0394, Japan.

College of Life Sciences, Ritsumeikan University, Kusatsu 525-8577, Japan.

出版信息

J Chem Phys. 2016 Dec 21;145(23):235103. doi: 10.1063/1.4972066.

Abstract

We studied the effect of branched-chain polyamines on the folding transition of genome-sized DNA molecules in aqueous solution by the use of single-molecule observation with fluorescence microcopy. Detailed morphological features of polyamine/DNA complexes were characterized by atomic force microscopy (AFM). The AFM observations indicated that branched-chain polyamines tend to induce a characteristic change in the higher-order structure of DNA by forming bridges or crosslinks between the segments of a DNA molecule. In contrast, natural linear-chain polyamines cause a parallel alignment between DNA segments. Circular dichroism measurements revealed that branched-chain polyamines induce the A-form in the secondary structure of DNA, while linear-chain polyamines have only a minimum effect. This large difference in the effects of branched- and linear-chain polyamines is discussed in relation to the difference in the manner of binding of these polyamines to negatively charged double-stranded DNA.

摘要

我们通过荧光显微镜单分子观察研究了支链多胺对基因组大小的DNA分子在水溶液中折叠转变的影响。利用原子力显微镜(AFM)对多胺/DNA复合物的详细形态特征进行了表征。AFM观察表明,支链多胺倾向于通过在DNA分子片段之间形成桥或交联来诱导DNA高阶结构发生特征性变化。相比之下,天然直链多胺会使DNA片段之间平行排列。圆二色性测量表明,支链多胺会诱导DNA二级结构形成A型,而直链多胺的影响极小。本文结合这些多胺与带负电荷的双链DNA的结合方式差异,讨论了支链和直链多胺作用的巨大差异。

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