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连接 DNA 对核小体核心颗粒结构和相互作用的影响。

The effect of linker DNA on the structure and interaction of nucleosome core particles.

机构信息

Department of Chemical Engineering and Frontier Research Center on Fundamental and Applied Sciences of Matters, National Tsing Hua University, Hsin-Chu 30013, Taiwan.

出版信息

Soft Matter. 2018 Nov 21;14(45):9096-9106. doi: 10.1039/c8sm00998h.

Abstract

In eukaryotes, the compaction of chromatin fibers composed of nucleosome core particles (NCPs) connected by a linker DNA into chromosomes is highly efficient; however, the underlying folding mechanisms remain elusive. We used small angle X-ray scattering (SAXS) to investigate the influence of linker DNA length on the local structure and the interparticle interactions of the NCPs. In the presence of the linker DNA of 30 bp or less in length, the results suggest partial unwrapping of nucleosomal DNA on the NCP irrespective of the linker DNA length. Moreover, the presence of 15 bp linker DNA alleviated the electrostatic repulsion between the NCPs and prevented the formation of an ordered columnar hexagonal phase, demonstrating that the linker DNA plays an active role in chromatin folding.

摘要

在真核生物中,核小体核心颗粒(NCPs)通过连接 DNA 连接而成的染色质纤维压缩成染色体的效率非常高;然而,其潜在的折叠机制仍难以捉摸。我们使用小角 X 射线散射(SAXS)研究了连接 DNA 长度对 NCP 局部结构和颗粒间相互作用的影响。在长度为 30 个碱基对或更短的连接 DNA 存在的情况下,结果表明无论连接 DNA 的长度如何,核小体 DNA 都会部分解旋。此外,存在 15 个碱基对的连接 DNA 减轻了 NCP 之间的静电排斥作用,并防止了有序的柱状六方相的形成,表明连接 DNA 在染色质折叠中发挥了积极作用。

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