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基于朗道模型和拓扑结构的核小体 DNA 自由能。

The Free Energy of Nucleosomal DNA Based on the Landau Model and Topology.

机构信息

College of Science, Beijing Forestry University, Beijing 100083, China.

出版信息

Biomolecules. 2023 Nov 23;13(12):1686. doi: 10.3390/biom13121686.

Abstract

The free energy of nucleosomal DNA plays a key role in the formation of nucleosomes in eukaryotes. Some work on the free energy of nucleosomal DNA have been carried out in experiments. However, the relationships between the free energy of nucleosomal DNA and its conformation, especially its topology, remain unclear in theory. By combining the Landau theory, the Hopfion model and experimental data, we find that the free energy of nucleosomal DNA is at the lower level. With the help of the energy minimum principle, we conclude that nucleosomal DNA stays in a stable state. Moreover, we discover that small perturbations on nucleosomal DNA have little effect on its free energy. This implies that nucleosomal DNA has a certain redundancy in order to stay stable. This explains why nucleosomal DNA will not change significantly due to small perturbations.

摘要

核小体 DNA 的自由能在真核生物核小体的形成中起着关键作用。已经有一些关于核小体 DNA 自由能的实验工作。然而,在理论上,核小体 DNA 的自由能与其构象,特别是拓扑结构之间的关系仍不清楚。通过结合朗道理论、Hopfion 模型和实验数据,我们发现核小体 DNA 的自由能处于较低水平。借助能量最小原理,我们得出结论,核小体 DNA 处于稳定状态。此外,我们发现核小体 DNA 上的小扰动对其自由能几乎没有影响。这意味着核小体 DNA 具有一定的冗余性以保持稳定。这解释了为什么核小体 DNA 不会因小的扰动而发生显著变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/431c/10741420/a74073c11c31/biomolecules-13-01686-g001.jpg

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