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使用纳米追踪光镊平台的单分子力谱:从设计到应用

Single-molecule force spectroscopy using the NanoTracker optical tweezers platform: from design to application.

作者信息

Wozniak A, van Mameren J, Ragona S

机构信息

JPK Instruments AG, Berlin, Germany.

出版信息

Curr Pharm Biotechnol. 2009 Aug;10(5):467-73. doi: 10.2174/138920109788922164.

Abstract

Since the development of detection and analysis techniques for optical tweezers setups, there has been an ever-increasing interest in optical tweezers as a quantitative method, shifting its applications from a pure manipulation tool towards the investigation of motions and forces. With the capability of manipulation and detection of forces of a few hundred picoNewtons down to a fraction of a picoNewton, optical tweezers are perfectly suitable for the investigation of single molecules. Accordingly, the technique has been extensively used for the biophysical characterization of biomolecules, ranging from the mechanical and elastic properties of biological polymers to the dynamics associated with enzymatic activity and protein motility. Here, the use of state-of-the-art optical tweezers on the elasticity of single DNA molecules is presented, highlighting the possibilities this technique offers for the investigation of protein-DNA interaction, but also for other single molecule applications. Technical in nature, design aspects of the NanoTracker optical tweezers setup are addressed, presenting the recent advances in the development of optical tweezers, ranging from noise reduction to detection and calibration methodology.

摘要

自从光学镊子装置的检测和分析技术发展以来,人们对光学镊子作为一种定量方法的兴趣与日俱增,其应用也从单纯的操纵工具转向对运动和力的研究。由于能够操纵和检测从几百皮牛顿到皮牛顿几分之一的力,光学镊子非常适合用于单分子研究。因此,该技术已被广泛用于生物分子的生物物理表征,从生物聚合物的机械和弹性特性到与酶活性和蛋白质运动相关的动力学。本文介绍了使用最先进的光学镊子研究单个DNA分子的弹性,突出了该技术在研究蛋白质-DNA相互作用以及其他单分子应用方面的可能性。本质上属于技术内容,文中讨论了NanoTracker光学镊子装置的设计方面,介绍了光学镊子发展的最新进展,从降噪到检测和校准方法。

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