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通过原子力显微镜评估双核小体的结构与动力学

Structure and dynamics of dinucleosomes assessed by atomic force microscopy.

作者信息

Filenko Nina A, Palets Dmytro B, Lyubchenko Yuri L

机构信息

Department of Pharmaceutical Sciences, University of Nebraska Medical Center, Omaha, NE 68198-6025, USA.

出版信息

J Amino Acids. 2012;2012:650840. doi: 10.1155/2012/650840. Epub 2011 Oct 23.

Abstract

Dynamics of nucleosomes and their interactions are important for understanding the mechanism of chromatin assembly. Internucleosomal interaction is required for the formation of higher-order chromatin structures. Although H1 histone is critically involved in the process of chromatin assembly, direct internucleosomal interactions contribute to this process as well. To characterize the interactions of nucleosomes within the nucleosome array, we designed a dinucleosome and performed direct AFM imaging. The analysis of the AFM data showed dinucleosomes are very dynamic systems, enabling the nucleosomes to move in a broad range along the DNA template. Di-nucleosomes in close proximity were observed, but their population was low. The use of the zwitterionic detergent, CHAPS, increased the dynamic range of the di-nucleosome, facilitating the formation of tight di-nucleosomes. The role of CHAPS and similar natural products in chromatin structure and dynamics is also discussed.

摘要

核小体的动力学及其相互作用对于理解染色质组装机制至关重要。高阶染色质结构的形成需要核小体间的相互作用。尽管H1组蛋白在染色质组装过程中起关键作用,但核小体间的直接相互作用也有助于这一过程。为了表征核小体阵列内核小体的相互作用,我们设计了一个双核小体并进行了直接原子力显微镜成像。原子力显微镜数据分析表明,双核小体是非常动态的系统,使核小体能够沿着DNA模板在很宽的范围内移动。观察到了紧密相邻的双核小体,但其数量较少。两性离子去污剂CHAPS的使用增加了双核小体的动态范围,促进了紧密双核小体的形成。还讨论了CHAPS和类似天然产物在染色质结构和动力学中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9ad/3268019/1662720dd619/JAA2012-650840.001.jpg

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