Banting and Best Department of Medical Research and Terrence Donnelly Centre for Cellular and Biomolecular Research, University of Toronto, Toronto, ON M5S 3E1, Canada.
Genetics. 2013 Sep;195(1):9-36. doi: 10.1534/genetics.113.153262.
The term "transcriptional network" refers to the mechanism(s) that underlies coordinated expression of genes, typically involving transcription factors (TFs) binding to the promoters of multiple genes, and individual genes controlled by multiple TFs. A multitude of studies in the last two decades have aimed to map and characterize transcriptional networks in the yeast Saccharomyces cerevisiae. We review the methodologies and accomplishments of these studies, as well as challenges we now face. For most yeast TFs, data have been collected on their sequence preferences, in vivo promoter occupancy, and gene expression profiles in deletion mutants. These systematic studies have led to the identification of new regulators of numerous cellular functions and shed light on the overall organization of yeast gene regulation. However, many yeast TFs appear to be inactive under standard laboratory growth conditions, and many of the available data were collected using techniques that have since been improved. Perhaps as a consequence, comprehensive and accurate mapping among TF sequence preferences, promoter binding, and gene expression remains an open challenge. We propose that the time is ripe for renewed systematic efforts toward a complete mapping of yeast transcriptional regulatory mechanisms.
“转录网络”一词是指基因协调表达的机制,通常涉及转录因子(TFs)结合到多个基因的启动子上,以及多个 TF 控制的单个基因。在过去的二十年中,许多研究旨在绘制和描述酵母酿酒酵母中的转录网络。我们回顾了这些研究的方法和成就,以及我们现在面临的挑战。对于大多数酵母 TF,已经收集了关于它们的序列偏好、体内启动子占据和缺失突变体中基因表达谱的数据。这些系统研究导致了许多细胞功能的新调节剂的鉴定,并揭示了酵母基因调控的整体组织。然而,许多酵母 TF 在标准实验室生长条件下似乎不活跃,并且许多可用数据是使用后来改进的技术收集的。也许因此,TF 序列偏好、启动子结合和基因表达之间的全面和准确映射仍然是一个开放的挑战。我们建议,现在是重新进行全面系统的努力,以完成酵母转录调控机制的映射的时候了。