Measuring two at the same time: combining magnetic tweezers with single-molecule FRET.

Q2 Medicine
Marko Swoboda, Maj Svea Grieb, Steffen Hahn, Michael Schlierf
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引用次数: 9

Abstract

Molecular machines are the workhorses of the cell that efficiently convert chemical energy into mechanical motion through conformational changes. They can be considered powerful machines, exerting forces and torque on the molecular level of several piconewtons and piconewton-nanometer, respectively. For studying translocation and conformational changes of these machines, fluorescence methods, like FRET, as well as "mechanical" methods, like optical and magnetic tweezers, have proven well suited over the past decades. One of the current challenges in the field of molecular machines is gaining maximal information from single-molecule experiments by simultaneously measuring translocation, conformational changes, and forces exerted by these machines. In this chapter, we describe the combination of magnetic tweezers with single-molecule FRET for orthogonal simultaneous readout to maximize the information gained in single-molecule experiments.

同时测量两个:结合磁镊子和单分子FRET。
分子机器是细胞的主力,它通过构象变化有效地将化学能转化为机械运动。它们可以被认为是强大的机器,分别在几个皮牛顿和皮牛顿-纳米的分子水平上施加力和扭矩。为了研究这些机器的易位和构象变化,荧光方法,如FRET,以及“机械”方法,如光学和磁镊子,在过去的几十年里被证明是非常合适的。当前分子机器领域的挑战之一是通过同时测量易位、构象变化和这些机器施加的力,从单分子实验中获得最大的信息。在本章中,我们描述了磁性镊子与单分子FRET的组合,用于正交同时读出,以最大限度地提高单分子实验中获得的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Experientia supplementum (2012)
Experientia supplementum (2012) Medicine-Medicine (all)
CiteScore
3.30
自引率
0.00%
发文量
24
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