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用于活细胞延时显微镜实验的光诱导转录激活

Light-Induced Transcription Activation for Time-Lapse Microscopy Experiments in Living Cells.

作者信息

Trojanowski Jorge, Rademacher Anne, Erdel Fabian, Rippe Karsten

机构信息

Division of Chromatin Networks, German Cancer Research Center (DKFZ) and Bioquant, Heidelberg, Germany.

Centre de Biologie Intégrative (CBI), CNRS, UPS, Toulouse, France.

出版信息

Methods Mol Biol. 2019;2038:251-270. doi: 10.1007/978-1-4939-9674-2_17.

Abstract

Gene expression can be monitored in living cells via the binding of fluorescently tagged proteins to RNA repeats engineered into a reporter transcript. This approach makes it possible to trace temporal changes of RNA production in real time in living cells to dissect transcription regulation. For a mechanistic analysis of the underlying activation process, it is essential to induce gene expression with high accuracy. Here, we describe how this can be accomplished with an optogenetic approach termed blue light-induced chromatin recruitment (BLInCR). It employs the recruitment of an activator protein to a target promoter via the interaction between the PHR and CIBN plant protein domains. This process occurs within seconds after setting the light trigger and is reversible. Protocols for continuous activation as well as pulsed activation and reactivation with imaging either by laser scanning confocal microscopy or automated widefield microscopy are provided. For the semiautomated quantification of the resulting image series, an approach has been implemented in a set of scripts in the R programming language. Thus, the complete workflow of the BLInCR method is described for mechanistic studies of the transcription activation process as well as the persistence and memory of the activated state.

摘要

通过将荧光标记的蛋白质与工程改造到报告转录本中的RNA重复序列结合,可以在活细胞中监测基因表达。这种方法使得实时追踪活细胞中RNA产生的时间变化以剖析转录调控成为可能。对于潜在激活过程的机制分析,高精度诱导基因表达至关重要。在此,我们描述如何通过一种称为蓝光诱导染色质募集(BLInCR)的光遗传学方法来实现这一点。它通过PHR和CIBN植物蛋白结构域之间的相互作用,将激活蛋白募集到目标启动子上。这个过程在设置光触发后几秒钟内发生,并且是可逆的。提供了通过激光扫描共聚焦显微镜或自动宽场显微镜进行成像的连续激活、脉冲激活和再激活的方案。为了对所得图像系列进行半自动定量,已在R编程语言的一组脚本中实现了一种方法。因此,描述了BLInCR方法的完整工作流程,用于转录激活过程以及激活状态的持续性和记忆的机制研究。

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