Single-molecule and single-particle imaging of molecular motors in vitro and in vivo.

Natalia Fili
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引用次数: 3

Abstract

Motor proteins are multi-potent molecular machines, whose localisation, function and regulation are achieved through tightly controlled processes involving conformational changes and interactions with their tracks, cargos and binding partners. Understanding how these complex machines work requires dissection of these processes both in space and time. Complementing the traditional ensemble measurements, single-molecule assays enable the detection of rare or short-lived intermediates and molecular heterogeneities, and the measurements of subpopulation dynamics. This chapter is focusing on the fluorescence imaging of single motors and their cargo. It discusses what is required in order to achieve single-molecule imaging with high temporal and spatial resolution and how these requirements are met both in vitro and in vivo. It also presents a general overview and applied examples of the major single-molecule imaging techniques and experimental assays which have been used to study motor proteins.

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分子马达在体外和体内的单分子和单粒子成像。
运动蛋白是一种多功能的分子机器,其定位、功能和调控是通过严格控制的过程实现的,包括构象变化以及与其轨道、载体和结合伙伴的相互作用。要理解这些复杂的机器是如何工作的,需要在空间和时间上对这些过程进行剖析。补充传统的集合测量,单分子分析能够检测稀有或短寿命的中间产物和分子异质性,以及亚种群动态的测量。本章主要讨论单个电机及其负载的荧光成像。它讨论了为了实现高时间和空间分辨率的单分子成像所需的条件,以及如何在体外和体内满足这些要求。本文还介绍了用于研究运动蛋白的主要单分子成像技术和实验分析的总体概述和应用实例。
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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