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原子力显微镜结合生物化学和细胞生物学揭示的核结构与染色质动力学

Nuclear architecture and chromatin dynamics revealed by atomic force microscopy in combination with biochemistry and cell biology.

作者信息

Hirano Yasuhiro, Takahashi Hirohide, Kumeta Masahiro, Hizume Kohji, Hirai Yuya, Otsuka Shotaro, Yoshimura Shige H, Takeyasu Kunio

机构信息

Kyoto University Graduate School of Biostudies, Yoshida-Honmachi, Sakyo-ku, Kyoto 606-8501, Japan.

出版信息

Pflugers Arch. 2008 Apr;456(1):139-53. doi: 10.1007/s00424-007-0431-z. Epub 2008 Jan 3.

Abstract

The recent technical development of atomic force microscopy (AFM) has made nano-biology of the nucleus an attractive and promising field. In this paper, we will review our current understanding of nuclear architecture and dynamics from the structural point of view. Especially, special emphases will be given to: (1) How to approach the nuclear architectures by means of new techniques using AFM, (2) the importance of the physical property of DNA in the construction of the higher-order structures, (3) the significance and implication of the linker and core histones and the nuclear matrix/scaffold proteins for the chromatin dynamics, (4) the nuclear proteins that contribute to the formation of the inner nuclear architecture. Spatio-temporal analyses using AFM, in combination with biochemical and cell biological approaches, will play important roles in the nano-biology of the nucleus, as most of nuclear structures and events occur in nanometer, piconewton and millisecond order. The new applications of AFM, such as recognition imaging, fast-scanning imaging, and a variety of modified cantilevers, are expected to be powerful techniques to reveal the nanostructure of the nucleus.

摘要

原子力显微镜(AFM)的最新技术发展使细胞核的纳米生物学成为一个具有吸引力和前景的领域。在本文中,我们将从结构角度回顾我们目前对核结构和动力学的理解。特别是,将特别强调以下几点:(1)如何通过使用AFM的新技术来研究核结构,(2)DNA物理性质在高阶结构构建中的重要性,(3)连接组蛋白和核心组蛋白以及核基质/支架蛋白对染色质动力学的意义和影响,(4)有助于形成内核结构的核蛋白。由于大多数核结构和事件发生在纳米、皮牛顿和毫秒量级,使用AFM结合生化和细胞生物学方法进行的时空分析将在细胞核的纳米生物学中发挥重要作用。AFM的新应用,如识别成像、快速扫描成像和各种修饰的悬臂,有望成为揭示细胞核纳米结构的强大技术。

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