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DNA螺旋柔韧性对碱基组成的依赖性。

Dependence of DNA helix flexibility on base composition.

作者信息

Hogan M, LeGrange J, Austin B

出版信息

Nature. 1983;304(5928):752-4. doi: 10.1038/304752a0.

Abstract

We have used triplet anisotropy decay techniques to study the flexibility of synthetic DNA fragments with different base pair compositions. We have found major differences in the torsional and bending stiffness of poly(dG) . poly(dC), poly(dA) . poly(dT) and poly(dA-dC) . poly(dT-dG). Poly(dG) . poly(dC) has a torsional modulus more than 40 times larger than poly(dA-dC) . poly(dT-dG), and approximately 20 times larger than poly(dA) . poly(dT). These differences imply that the torsional stiffness of DNA can vary greatly with base composition. The Young's modulus (bending stiffness) we have measured for poly(dG) . poly(dC) is at least twice that of poly(dA-dC) . poly(dT-dG) or random sequence DNA, and is at least threefold greater than that of poly(dA) . poly(dT). This implies that the bending stiffness of DNA is also strongly dependent on base composition. In light of this dramatic base composition dependence, we suggest here that such stiffness variation may lead to local variations in the stability of chromatin or other protein complexes that require bending or twisting of the DNA helix.

摘要

我们运用三重态各向异性衰减技术来研究具有不同碱基对组成的合成DNA片段的柔韧性。我们发现聚(dG)·聚(dC)、聚(dA)·聚(dT)以及聚(dA-dC)·聚(dT-dG)在扭转刚度和弯曲刚度方面存在显著差异。聚(dG)·聚(dC)的扭转模量比聚(dA-dC)·聚(dT-dG)大40多倍,比聚(dA)·聚(dT)大约大20倍。这些差异表明DNA的扭转刚度会随碱基组成而大幅变化。我们测量的聚(dG)·聚(dC)的杨氏模量(弯曲刚度)至少是聚(dA-dC)·聚(dT-dG)或随机序列DNA的两倍,比聚(dA)·聚(dT)至少大三倍。这意味着DNA的弯曲刚度也强烈依赖于碱基组成。鉴于这种对碱基组成的显著依赖性,我们在此提出,这种刚度变化可能会导致染色质或其他需要DNA螺旋弯曲或扭转的蛋白质复合物稳定性的局部变化。

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