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DNA长度对精胺诱导凝聚的影响。DNA弯曲和变硬的重要性。

Influence of DNA length on spermine-induced condensation. Importance of the bending and stiffening of DNA.

作者信息

Marquet R, Wyart A, Houssier C

出版信息

Biochim Biophys Acta. 1987 Aug 25;909(3):165-72. doi: 10.1016/0167-4781(87)90074-1.

Abstract

Using DNA restriction fragments of 258 to 4362 base-pairs, we have investigated the influence of the DNA length on the condensation process induced by spermine, with the aid of electric dichroism measurements. The 258- and 436 bp fragments condensed into rod-like particles, while the fragments of 748 bp or more condensed into torus-shaped particles. Our results suggest that a DNA molecule longer than the circumference of the toroids observed previously (680 bp) is required to serve as a nucleus for the growth of the condensed particles. The toroids were more stable in the electric field than the rod-shaped particles, suggesting that rapid fluctuations of the bound spermine counterions can provide one of the main attractive forces yielding to the condensation process. Relaxation time data for the 436 bp fragment revealed that the structure of DNA was altered at a spermine concentration as low as one-tenth of that required for condensation: the DNA became bent in the presence of spermine. Moreover, the field strength dependence of the relaxation times, as well as the fitting of the decay curves at 12.5 kV/cm, showed an increase of the stiffness of the DNA double helix upon spermine addition. We estimated that, in the case of DNA condensation by spermine, a decrease in the measured persistence length may occur, irrespective of the DNA flexibility, owing to the bending of the DNA molecule.

摘要

我们使用258至4362个碱基对的DNA限制性片段,借助电二色性测量研究了DNA长度对精胺诱导的凝聚过程的影响。258和436碱基对的片段凝聚成棒状颗粒,而748碱基对及以上的片段凝聚成环形颗粒。我们的结果表明,需要一个比先前观察到的环形颗粒周长(680碱基对)更长的DNA分子作为凝聚颗粒生长的核心。环形颗粒在电场中比棒状颗粒更稳定,这表明结合的精胺抗衡离子的快速波动可以提供导致凝聚过程的主要吸引力之一。436碱基对片段的弛豫时间数据表明,在精胺浓度低至凝聚所需浓度的十分之一时,DNA的结构就发生了改变:在精胺存在下DNA发生弯曲。此外,弛豫时间对场强的依赖性以及在12.5 kV/cm下衰减曲线的拟合表明,添加精胺后DNA双螺旋的刚性增加。我们估计,在精胺使DNA凝聚的情况下,由于DNA分子的弯曲,无论DNA的柔韧性如何,测量到的持久长度可能会减小。

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