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Single-molecule fluorescence-based analysis of protein conformation interaction and oligomerization in cellular systems

机译:基于单分子荧光的细胞系统蛋白质构象相互作用和寡聚分析

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摘要

Single-molecule imaging (SMI) of proteins in operation has a history of intensive investigations over 20 years and is now widely used in various fields of biology and biotechnology. We review the recent advances in SMI of fluorescently-tagged proteins in structural biology, focusing on technical applicability of SMI to the measurements in living cells. Basic technologies and recent applications of SMI in structural biology are introduced. Distinct from other methods in structural biology, SMI directly observes single molecules and single-molecule events one-by-one, thus, explicitly analyzing the distribution of protein structures and the history of protein dynamics. It also allows one to detect single events of protein interaction. One unique feature of SMI is that it is applicable in complicated and heterogeneous environments, including living cells. The numbers, location, movements, interaction, oligomerization, and conformation of single-protein molecules have been determined using SMI in cellular systems.
机译:运作中的蛋白质的单分子成像(SMI)已有20多年的深入研究历史,现在已广泛用于生物学和生物技术的各个领域。我们回顾了结构生物学中荧光标记蛋白SMI的最新进展,重点是SMI在活细胞测量中的技术适用性。介绍了SMI在结构生物学中的基本技术和最新应用。与结构生物学中的其他方法不同,SMI可以一对一地直接观察单分子和单分子事件,从而明确分析蛋白质结构的分布和蛋白质动力学的历史。它还可以检测蛋白质相互作用的单个事件。 SMI的一项独特功能是它可应用于复杂且异构的环境,包括活细胞。单蛋白分子的数量,位置,移动,相互作用,寡聚和构象已在细胞系统中使用SMI确定。

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