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我们能从单分子轨迹中学到什么?

What can we learn from single molecule trajectories?

机构信息

Institute of Science and Technology Austria, A-3400 Klosterneuburg, Austria.

出版信息

Curr Protein Pept Sci. 2011 Dec;12(8):714-24. doi: 10.2174/138920311798841753.

Abstract

Diffusing membrane constituents are constantly exposed to a variety of forces that influence their stochastic path. Single molecule experiments allow for resolving trajectories at extremely high spatial and temporal accuracy, thereby offering insights into en route interactions of the tracer. In this review we discuss approaches to derive information about the underlying processes, based on single molecule tracking experiments. In particular, we focus on a new versatile way to analyze single molecule diffusion in the absence of a full analytical treatment. The method is based on comprehensive comparison of an experimental data set against the hypothetical outcome of multiple experiments performed on the computer. Since Monte Carlo simulations can be easily and rapidly performed even on state-of-the-art PCs, our method provides a simple way for testing various - even complicated - diffusion models. We describe the new method in detail, and show the applicability on two specific examples: firstly, kinetic rate constants can be derived for the transient interaction of mobile membrane proteins; secondly, residence time and corral size can be extracted for confined diffusion.

摘要

扩散膜成分不断暴露于各种力下,这些力会影响它们的随机路径。单分子实验允许以极高的空间和时间精度解析轨迹,从而深入了解示踪剂在途中的相互作用。在这篇综述中,我们讨论了基于单分子跟踪实验来获取有关潜在过程信息的方法。特别是,我们专注于一种新的通用方法,用于在没有完整分析处理的情况下分析单分子扩散。该方法基于对实验数据集与计算机上进行的多次实验的假设结果的全面比较。由于即使在最先进的 PC 上也可以轻松快速地进行蒙特卡罗模拟,因此我们的方法为测试各种(甚至复杂)扩散模型提供了一种简单的方法。我们详细描述了新方法,并在两个具体示例中展示了其适用性:首先,可以为可移动膜蛋白的瞬时相互作用推导出动力学速率常数;其次,可以提取限制扩散的停留时间和围栏大小。

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