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低温原子力显微镜:一种用于高分辨率生物成像的新方法。

Cryo atomic force microscopy: a new approach for biological imaging at high resolution.

作者信息

Han W, Mou J, Sheng J, Yang J, Shao Z

机构信息

Department of Molecular Physiology, University of Virginia School of Medicine, Charlottesville 22908, USA.

出版信息

Biochemistry. 1995 Jul 4;34(26):8215-20. doi: 10.1021/bi00026a001.

Abstract

A low-temperature atomic force microscope (cryo-AFM), operated in liquid nitrogen vapor, has been constructed for biological applications. The system provides an adjustable imaging temperature from 77 to 220 K with atomic resolution achieved on crystalline specimens. Imaging with NaCl microcrystals demonstrates that the system is free from surface contamination. Below 100 K, several biological specimens, including immunoglobulins and DNA as well as red blood cell ghosts, were imaged at high spatial resolution. Measurements on individual macromolecules showed that the mechanical strength is significantly greater at cryogenic temperatures with an estimated Young's modulus 1000-10,000 times that of a hydrated protein at room temperature, providing a solid basis for future improvements and applications of cryo-AFM in structural biology.

摘要

已构建了一台在液氮蒸汽中运行的低温原子力显微镜(cryo-AFM)用于生物应用。该系统提供了77至220 K的可调成像温度,并在晶体样本上实现了原子分辨率。用氯化钠微晶成像表明该系统无表面污染。在100 K以下,对包括免疫球蛋白、DNA以及红细胞影等几种生物样本进行了高空间分辨率成像。对单个大分子的测量表明,在低温下机械强度显著更高,估计杨氏模量是室温下水合蛋白质的1000 - 10000倍,这为cryo-AFM未来在结构生物学中的改进和应用提供了坚实基础。

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