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DNA寡聚物的动力学

Dynamics of DNA oligomers.

作者信息

Tidor B, Irikura K K, Brooks B R, Karplus M

机构信息

Department of Chemistry, Harvard University, Cambridge, Massachusetts 02138.

出版信息

J Biomol Struct Dyn. 1983 Oct;1(1):231-52. doi: 10.1080/07391102.1983.10507437.

Abstract

The techniques of molecular and harmonic dynamics are used to study the internal mobility of three double-stranded DNA hexamers. A 60 ps molecular dynamics simulation and a normal mode description of d(CpGpCpGpCpG)2 in the B conformation characterize the atomic fluctuations of this structure. A comparison between the two approaches validates the harmonic results at room temperature. Detailed examination of the normal modes indicates that only the low-frequency modes are needed to determine atomic fluctuations. A harmonic analysis is made of d(CpGpCpGpCpG)2 in the Z conformation and of d(TpApTpApTpA)2 in the B conformation using only the low-frequency modes. The atomic fluctuations of the three alternating pyrimidine-purine helices are compared and the dependence on conformation and sequence are discussed. The insights which theoretical calculations can provide for the interpretation of experimental results are explored.

摘要

分子动力学和谐波动力学技术被用于研究三种双链DNA六聚体的内部流动性。对处于B构象的d(CpGpCpGpCpG)2进行60皮秒的分子动力学模拟和简正模式描述,以表征该结构的原子涨落。两种方法之间的比较验证了室温下的谐波结果。对简正模式的详细检查表明,仅需低频模式即可确定原子涨落。仅使用低频模式对处于Z构象的d(CpGpCpGpCpG)2和处于B构象的d(TpApTpApTpA)2进行谐波分析。比较了三种交替嘧啶-嘌呤螺旋的原子涨落,并讨论了其对构象和序列的依赖性。探索了理论计算可为实验结果解释提供的见解。

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