Deplancke Bart, Dupuy Denis, Vidal Marc, Walhout Albertha J M
Program in Gene Function and Expression, University of Massachusetts Medical School, Worcester, Massachusetts 01605, USA.
Genome Res. 2004 Oct;14(10B):2093-101. doi: 10.1101/gr.2445504.
Since the advent of microarrays, vast amounts of gene expression data have been generated. However, these microarray data fail to reveal the transcription regulatory mechanisms that underlie differential gene expression, because the identity of the responsible transcription factors (TFs) often cannot be directly inferred from such data sets. Regulatory TFs activate or repress transcription of their target genes by binding to cis-regulatory elements that are frequently located in a gene's promoter. To understand the mechanisms underlying differential gene expression, it is necessary to identify physical interactions between regulatory TFs and their target genes. We developed a Gateway-compatible yeast one-hybrid (Y1H) system that enables the rapid, large-scale identification of protein-DNA interactions using both small (i.e., DNA elements of interest) and large (i.e., gene promoters) DNA fragments. We used four well-characterized Caenorhabditis elegans promoters as DNA baits to test the functionality of this Y1H system. We could detect approximately 40% of previously reported TF-promoter interactions. By performing screens using two complementary libraries, we found novel potentially interacting TFs for each promoter. We recapitulated several of the Y1H-based protein-DNA interactions using luciferase reporter assays in mammalian cells. Taken together, the Gateway-compatible Y1H system will allow the high-throughput identification of protein-DNA interactions and may be a valuable tool to decipher transcription regulatory networks.
自从微阵列出现以来,已经产生了大量的基因表达数据。然而,这些微阵列数据未能揭示差异基因表达背后的转录调控机制,因为通常无法从此类数据集中直接推断出负责的转录因子(TF)的身份。调控TF通过与通常位于基因启动子中的顺式调控元件结合来激活或抑制其靶基因的转录。为了理解差异基因表达背后的机制,有必要确定调控TF与其靶基因之间的物理相互作用。我们开发了一种与Gateway兼容的酵母单杂交(Y1H)系统,该系统能够使用小(即感兴趣的DNA元件)和大(即基因启动子)DNA片段快速、大规模地鉴定蛋白质-DNA相互作用。我们使用四个特征明确的秀丽隐杆线虫启动子作为DNA诱饵来测试该Y1H系统的功能。我们能够检测到大约40%先前报道的TF-启动子相互作用。通过使用两个互补文库进行筛选,我们为每个启动子发现了新的潜在相互作用的TF。我们在哺乳动物细胞中使用荧光素酶报告基因测定法重现了几种基于Y1H的蛋白质-DNA相互作用。综上所述,与Gateway兼容的Y1H系统将允许高通量鉴定蛋白质-DNA相互作用,并且可能是破译转录调控网络的有价值工具。