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超螺旋DNA中B-Z转变的热力学

Thermodynamics of the B-Z transition in superhelical DNA.

作者信息

Frank-Kamenetskii M D, Vologodskii A V

出版信息

Nature. 1984;307(5950):481-2. doi: 10.1038/307481a0.

Abstract

One of the most exciting events in recent years in molecular biology was the discovery of the left-handed Z form of the DNA double helix. Originally found in linear self-complementary d(GC)x . d(GC)x polymers and oligomers in non-physiological conditions (a rather high salt concentration), it was recently shown to be easily enough adopted in physiological conditions when purine-pyrimidine sequences are inserted into superhelical DNA. From such a system, superhelical DNA carrying an artificial purine-pyrimidine insert, we can obtain data allowing the determination of the energy of the junction between the B and Z stretches, Fj, and the free energy change delta FBZ per base pair (bp). We present here a simple thermodynamic consideration of the B-Z transition in such a system. By applying the results to experimental data we have shown that the thermodynamic parameters for both sequences studied so far (d(GC)x . d(GC)x and d(GT)x . d(AC)x) are similar and equal to Fj = 4-5 kcal per mol per junction and delta FBZ = 0.5 divided by 0.7 kcal per mol per bp.

摘要

近年来分子生物学领域最令人兴奋的事件之一是发现了DNA双螺旋的左手Z型结构。最初是在非生理条件下(相当高的盐浓度)在线性自互补d(GC)x.d(GC)x聚合物和寡聚物中发现的,最近发现当嘌呤-嘧啶序列插入超螺旋DNA时,在生理条件下也很容易形成这种结构。从这样一个携带人工嘌呤-嘧啶插入片段的超螺旋DNA系统中,我们可以获得数据,用于确定B链和Z链之间连接点的能量Fj以及每对碱基(bp)的自由能变化ΔFBZ。我们在此给出该系统中B-Z转变的简单热力学考量。将结果应用于实验数据后,我们发现到目前为止所研究的两个序列(d(GC)x.d(GC)x和d(GT)x.d(AC)x)的热力学参数相似,且等于Fj = 每摩尔每个连接点4 - 5千卡,ΔFBZ = 每摩尔每碱基对0.5至0.7千卡。

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