扫描力显微镜的染色质。

Scanning microscopy Pub Date : 1995-09-01
W Fritzsche, J Vesenka, E Henderson
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引用次数: 0

摘要

扫描力显微镜(SFM)是一种获得纳米分辨率表面形貌的新方法。在液体下成像的能力使该技术在生物学应用中具有吸引力,特别是在自然条件下测定生物分子的超微结构。一个日益增长的兴趣领域是染色质和染色质相关结构的研究。不同程度的染色质凝聚是先前SFM研究的主题,从核小体链到30nm纤维,以中期染色体结束。SFM在核小体链的核心间距、30nm纤维的内部结构以及中期染色体的带带机制等基础问题上获得了新的信息。其他研究涉及多染色体的SFM特征。本文综述了SFM染色质研究的最新进展,并对该领域的未来发展进行了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scanning force microscopy of chromatin.

Scanning force microscopy (SFM) is a new method to obtain the topography of surfaces with nanometer-resolution. The ability to image under liquids makes the technique attractive for biological applications, especially for the determination of the ultrastructure of biomolecules under native conditions. One growing field of interest is the investigation of chromatin and chromatin-related structures. Different levels of chromatin condensation were the subject of several previous SFM investigations, from the nucleosomal chain, to the 30-nm fiber, ending with the metaphase chromosome. The SFM yielded new information on such fundamental problems as the core spacing of the nucleosomal chain, the internal structure of the 30-nm fiber and the banding mechanism of metaphase chromosomes. Other investigations dealt with the SFM characterization of polytene chromosomes. This paper reviews the state-of-the-art in SFM chromatin research and discusses future developments in this field.

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