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自由能成分分析:在A-T碱基对“Z型疏水性”中的应用。

Free energy component analysis: application to the "Z-phobicity" of A-T base pairs.

作者信息

Singh S B, Pearlman D A, Kollman P A

机构信息

Department of Pharmaceutical Chemistry, University of California, San Francisco 94143.

出版信息

J Biomol Struct Dyn. 1993 Oct;11(2):303-11. doi: 10.1080/07391102.1993.10508728.

Abstract

We have carried out molecular dynamics/free energy perturbation calculations on the double helical hexamer d(CGCGCG)2 in both B and Z forms. The third C.G base pair was "mutated" to T-A in both B and Z-DNA. It is known experimentally that replacement of a C.G with a T-A base pair in an alternating CG sequence raises the energy of the Z form relative to the B form by approximately 1 kcal mole-1. We have carried out free energy component calculations to assess the reason for the "Z-phobicity" of T-A base pairs. There are two major contributions. The primary contribution is from the intra-base pair interactions of the mutated base pair itself which disfavor T-A relative to C.G in the Z form by congruent to 1.4 kcal mole-1. A secondary contribution of 0.4 kcal mole-1 arises because the two cytosines on the strand where G is mutated to A disfavor T-A relative to C.G in the Z form by 1.9 kcal mole-1, while the guanines flanking the C on the complementary strand stabilize the T-A base pair relative to the C.G in the Z form by 1.5 kcal mole-1. The effect of the phosphates, non-neighboring nucleotides and intramolecular energies of the base pair being mutated are all small and come close to canceling each other, leading to a net calculated free energy for T-A Z-phobicity of 1.7 kcal mole-1.

摘要

我们对双链六聚体d(CGCGCG)₂的B型和Z型进行了分子动力学/自由能微扰计算。在B型和Z型DNA中,第三个C.G碱基对都被“突变”为T - A。实验表明,在交替的CG序列中用T - A碱基对替换C.G碱基对会使Z型相对于B型的能量升高约1千卡/摩尔。我们进行了自由能分量计算,以评估T - A碱基对“Z型排斥性”的原因。有两个主要贡献。主要贡献来自突变碱基对自身的碱基对内相互作用,在Z型中,相对于C.G,T - A的不利程度约为1.4千卡/摩尔。次要贡献为0.4千卡/摩尔,这是因为在G突变为A的链上的两个胞嘧啶,在Z型中相对于C.G,T - A的不利程度为1.9千卡/摩尔,而互补链上C两侧的鸟嘌呤相对于Z型中的C.G,使T - A碱基对稳定了1.5千卡/摩尔。被突变碱基对的磷酸盐、非相邻核苷酸和分子内能量的影响都很小,且几乎相互抵消,导致计算出的T - A的Z型排斥性净自由能为1.7千卡/摩尔。

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