Laboratory for Membrane Protein Dynamics, Department of Neuroscience, The Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, Denmark.
Methods Mol Biol. 2020;2168:299-311. doi: 10.1007/978-1-0716-0724-4_14.
Measurement of atomic-scale conformational dynamics in proteins has proved a challenging endeavor, although these movements are pivotal for understanding the mechanisms behind protein function. Herein we describe a fluorescence-based method that enables the measurement of distances between specific domains within a protein and how it might change during protein function. The method is transition metal ion Förster resonance energy transfer (tmFRET) and builds on the principle that the fluorescence emission from a fluorophore can be quenched in a distance-dependent manner by a colored transition metal such as nickel (Ni), copper (Cu), or cobalt (Co). It can be applied to literally any protein where it is possible to perform site-specific incorporation of a fluorescent molecule. This chapter will explain the use and applications of tmFRET in detail using incorporation of the dye with cysteine chemistry on a purified protein sample.
测量蛋白质中的原子级构象动力学一直是一项具有挑战性的工作,尽管这些运动对于理解蛋白质功能背后的机制至关重要。本文描述了一种基于荧光的方法,可用于测量蛋白质内特定结构域之间的距离,以及在蛋白质功能过程中这种距离可能发生的变化。该方法是过渡金属离子荧光共振能量转移(tmFRET),它基于这样一个原理,即荧光团的荧光发射可以被有色过渡金属(如镍(Ni)、铜(Cu)或钴(Co))以距离依赖的方式猝灭。它几乎可以应用于任何可以进行荧光分子定点掺入的蛋白质。本章将详细解释 tmFRET 的用途和应用,具体方法是使用带有半胱氨酸化学的染料对纯化的蛋白质样品进行掺入。