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单分子荧光与力显微镜技术

Single molecule fluorescence and force microscopy.

作者信息

Schütz G J, Hinterdorfer P

机构信息

Institute for Biophysics, University of Linz, Altenbergerstr. 69, A-4040 Linz, Austria.

出版信息

Exp Gerontol. 2002 Dec;37(12):1495-511. doi: 10.1016/s0531-5565(02)00124-9.

Abstract

The investigation of biomolecules has entered a new age since the development of methodologies capable of studies at the level of single molecules. In biology, most molecules show a complex dynamical behavior, with individual motions and transitions between different states occurring highly correlated in space and time within an arrangement of various elements. Recent advances in the development of new microscopy techniques with sensitivity at the single molecule have gained access to essentially new types of information obtainable from imaging biomolecular samples. These methodologies are described here in terms of their applicability to the in vivo detection and visualization of molecular processes on surfaces, membranes, and cells. First examples of single molecule microscopy on cell membranes revealed new basic insight into the lateral organization of the plasma membrane, providing the captivating perspective of an ultra-sensitive methodology as a general tool to study local processes and heterogeneities in living cells.

摘要

自从能够在单分子水平进行研究的方法出现以来,生物分子的研究进入了一个新时代。在生物学中,大多数分子表现出复杂的动力学行为,在各种元素的排列中,不同状态之间的个体运动和转变在空间和时间上高度相关。具有单分子灵敏度的新型显微镜技术的最新进展,使得从成像生物分子样本中获取本质上全新类型的信息成为可能。这里将根据这些方法在体内检测和可视化表面、膜和细胞上的分子过程的适用性来进行描述。细胞膜上单分子显微镜的首批实例揭示了对质膜横向组织的新的基本见解,为作为研究活细胞中局部过程和异质性的通用工具的超灵敏方法提供了引人入胜的视角。

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