Fluorescence resonance energy transfer as a method for dissecting in vivo mechanisms of transcriptional activation.

Biochemical Society Symposia Pub Date : 2006-01-01
Sara K Evans, David P Aiello, Michael R Green
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Abstract

The first step in transcriptional activation of protein-coding genes involves the assembly on the promoter of a large PIC (pre-initiation complex) comprising RNA polymerase II and a suite of general transcription factors. Transcription is greatly enhanced by the action of promoter-specific activator proteins (activators) that function, at least in part, by increasing PIC formation. Activator-mediated stimulation of PIC assembly is thought to result from a direct interaction between the activator and one or more components of the transcription machinery, termed the 'target'. The unambiguous identification of direct, physiologically relevant in vivo targets of activators has been a considerable challenge in the transcription field. The major obstacle has been the lack appropriate experimental methods to measure direct interactions with activators in vivo. The development of spectral variants of green fluorescent protein has made it possible to perform FRET (fluorescence resonance energy transfer) analysis in living cells, thereby allowing the detection of direct protein-protein interactions in vivo. Here we discuss how FRET can be used to identify activator targets and to dissect in vivo mechanisms of transcriptional activation.

荧光共振能量转移作为解剖体内转录激活机制的一种方法。
蛋白质编码基因转录激活的第一步涉及到一个包含RNA聚合酶II和一套通用转录因子的大PIC(起始前复合物)启动子上的组装。启动子特异性激活蛋白(activators)的作用极大地增强了转录,其功能至少部分是通过增加PIC的形成。激活剂介导的PIC组装刺激被认为是由激活剂与转录机制的一个或多个组分(称为“靶标”)之间的直接相互作用引起的。在转录领域,明确地识别直接的、生理上相关的激活剂在体内的靶标一直是一个相当大的挑战。主要的障碍是缺乏适当的实验方法来测量与激活剂在体内的直接相互作用。绿色荧光蛋白光谱变体的发展使得在活细胞中进行FRET(荧光共振能量转移)分析成为可能,从而允许在体内检测直接的蛋白质-蛋白质相互作用。在这里,我们讨论如何FRET可以用来识别激活靶点和解剖体内的转录激活机制。
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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