Optical Tweezers to Force Information out of Biological and Synthetic Systems One Molecule at a Time

R. Bocanegra, María Ortiz-Rodríguez, Ismael Plaza Garcia-Abadillo, Carlos R-Pulido, B. Ibarra
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引用次数: 0

Abstract

Over the last few decades, in vitro single-molecule manipulation techniques have enabled the use of force and displacement as controlled variables in biochemistry. Measuring the effect of mechanical force on the real-time kinetics of a biological process gives us access to the rates, equilibrium constants and free-energy landscapes of the mechanical steps of the reaction; this information is not accessible by ensemble assays. Optical tweezers are the current method of choice in single-molecule manipulation due to their versatility, high force and spatial and temporal resolutions. The aim of this review is to describe the contributions of our lab in the single-molecule manipulation field. We present here several optical tweezers assays refined in our laboratory to probe the dynamics and mechano-chemical properties of biological molecular motors and synthetic molecular devices at the single-molecule level.
光学镊子一次一个分子地将信息从生物和合成系统中挤出
在过去的几十年里,体外单分子操作技术已经使力和位移成为生物化学中的控制变量。通过测量机械力对生物过程实时动力学的影响,我们可以了解反应的机械步骤的速率、平衡常数和自由能景观;该信息不能通过集合分析来访问。光镊子由于其多功能性、高作用力以及空间和时间分辨率,是目前单分子操作的首选方法。这篇综述的目的是描述我们实验室在单分子操作领域的贡献。我们在这里介绍了在我们的实验室中改进的几种光镊子分析,以在单分子水平上探测生物分子马达和合成分子器件的动力学和机械化学性质。
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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CiteScore
1.60
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0.00%
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