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使用青色荧光蛋白(CFP)和黄色荧光蛋白(YFP)构建荧光共振能量转移(FRET)结构。

Engineering FRET constructs using CFP and YFP.

作者信息

Shimozono Satoshi, Miyawaki Atsushi

机构信息

Laboratory for Cell Function Dynamics, Brain Science Institute, The Institute of Physical and Chemical Research (RIKEN), 2-1 Hirosawa, Wako-city, Saitama 351-0198, Japan.

出版信息

Methods Cell Biol. 2008;85:381-93. doi: 10.1016/S0091-679X(08)85016-9.

Abstract

Fluorescence resonance energy transfer (FRET) technology has been used to develop genetically encoded fluorescent indicators for various cellular functions. Here we discuss how to engineer constructs for FRET between the cyan- and yellow-emitting variants of green fluorescent protein (GFP) from Aequorea victoria (CFP and YFP, respectively). Throughout this chapter, we stress the fact that FRET is highly sensitive to the relative orientation and distance between the donor and the acceptor. The chapter consists of two parts. First, we discuss FRET-based indicators encoded by single genes, which were developed in our laboratory. In this approach, a number of different constructs can be made for a comparative assessment of their FRET efficiencies. For example, the length and sequence of the linker between the fluorescent protein and the host protein should be optimized for each specific application. In the second part, we describe the use of long and flexible linkers for engineering FRET constructs, including an introduction to a general and efficient tool for making successful fusion proteins with long and flexible linkers. When CFP and YFP are fused through floppy linkers to two protein domains that interact with each other, the two fluorescent proteins will associate due to the weak dimerization propensity of Aequorea GFP, which results in moderate FRET. This approach has become even more powerful due to the construction of a new pair of fluorescent proteins for FRET: CyPet and YPet.

摘要

荧光共振能量转移(FRET)技术已被用于开发用于各种细胞功能的基因编码荧光指示剂。在此,我们将讨论如何构建来自维多利亚水母的绿色荧光蛋白(GFP)的青色和黄色发射变体(分别为CFP和YFP)之间进行FRET的构建体。在本章中,我们始终强调FRET对供体和受体之间的相对方向和距离高度敏感这一事实。本章分为两部分。首先,我们讨论由单个基因编码的基于FRET的指示剂,这是我们实验室开发的。在这种方法中,可以构建许多不同的构建体以对其FRET效率进行比较评估。例如,荧光蛋白与宿主蛋白之间连接子的长度和序列应针对每种特定应用进行优化。在第二部分中,我们描述了使用长而灵活的连接子来构建FRET构建体,包括介绍一种用于成功构建具有长而灵活连接子的融合蛋白的通用且高效的工具。当CFP和YFP通过柔性连接子融合到两个相互作用的蛋白质结构域时,由于维多利亚水母GFP的弱二聚化倾向,这两种荧光蛋白将缔合,从而产生适度的FRET。由于构建了一对用于FRET的新型荧光蛋白:CyPet和YPet,这种方法变得更加强大。

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