Research Division Biotechnology and Microbiology, Institute of Chemical Engineering, Vienna University of Technology, Gumpendorfer Str. 1 a, A-1060 Vienna, Austria and Department of Biology, University of Ottawa, Gendron Hall, 30 Marie Curie, Ottawa, ON, K1N6N5, Canada.
Nucleic Acids Res. 2014 Jan;42(1):e1. doi: 10.1093/nar/gkt883. Epub 2013 Oct 3.
Knowing which regions of a gene are targeted by transcription factors during induction or repression is essential for understanding the mechanisms responsible for regulation. Therefore, we re-designed the traditional in vivo footprinting method to obtain a highly sensitive technique, which allows identification of the cis elements involved in condition-dependent gene regulation. Data obtained through DMS methylation, HCl DNA cleavage and optimized ligation-mediated PCR using fluorescent labelling followed by capillary gel electrophoresis are analysed by ivFAST. In this work we have developed this command line-based program, which is designed to ensure automated and fast data processing and visualization. The new method facilitates a quantitative, high-throughput approach because it enables the comparison of any number of in vivo footprinting results from different conditions (e.g. inducing, repressing, de-repressing) to one another by employing an internal standard. For validation of the method the well-studied upstream regulatory region of the Trichoderma reesei xyn1 (endoxylanase 1) gene was used. Applying the new method we could identify the motives involved in condition-dependent regulation of the cbh2 (cellobiohydrolase 2) and xyn2 (endoxylanase 2) genes.
了解转录因子在诱导或抑制过程中靶向基因的哪些区域对于理解负责调控的机制至关重要。因此,我们重新设计了传统的体内足迹法,以获得一种高度敏感的技术,该技术可识别与条件依赖性基因调控相关的顺式元件。通过 DMS 甲基化、HCl DNA 切割和优化的连接介导的 PCR 获得的数据,使用荧光标记,随后进行毛细管凝胶电泳,通过 ivFAST 进行分析。在这项工作中,我们开发了这个基于命令行的程序,旨在确保自动和快速的数据处理和可视化。由于该方法可以通过内部标准将任何数量的来自不同条件(例如诱导、抑制、去抑制)的体内足迹结果彼此进行比较,因此它促进了定量、高通量的方法。为了验证该方法,我们使用了经过充分研究的里氏木霉 xyn1(内切木聚糖酶 1)基因的上游调控区。应用新方法,我们可以鉴定 cbh2(纤维二糖水解酶 2)和 xyn2(内切木聚糖酶 2)基因条件依赖性调控中涉及的动机。