Chang Darby Tien-Hao, Huang Cheng-Yi, Wu Chi-Yeh, Wu Wei-Sheng
Department of Electrical Engineering, National Cheng Kung University, Tainan 70101, Taiwan.
Nucleic Acids Res. 2011 Jan;39(Database issue):D647-52. doi: 10.1093/nar/gkq1086. Epub 2010 Nov 2.
This study presents the Yeast Promoter Atlas (YPA, http://ypa.ee.ncku.edu.tw/ or http://ypa.csbb.ntu.edu.tw/) database, which aims to collect comprehensive promoter features in Saccharomyces cerevisiae. YPA integrates nine kinds of promoter features including promoter sequences, genes' transcription boundaries-transcription start sites (TSSs), five prime untranslated regions (5'-UTRs) and three prime untranslated regions (3'UTRs), TATA boxes, transcription factor binding sites (TFBSs), nucleosome occupancy, DNA bendability, transcription factor (TF) binding, TF knockout expression and TF-TF physical interaction. YPA is designed to present data in a unified manner as many important observations are revealed only when these promoter features are considered altogether. For example, DNA rigidity can prevent nucleosome packaging, thereby making TFBSs in the rigid DNA regions more accessible to TFs. Integrating nucleosome occupancy, DNA bendability, TF binding, TF knockout expression and TFBS data helps to identify which TFBS is actually functional. In YPA, various promoter features can be accessed in a centralized and organized platform. Researchers can easily view if the TFBSs in an interested promoter are occupied by nucleosomes or located in a rigid DNA segment and know if the expression of the downstream gene responds to the knockout of the corresponding TFs. Compared to other established yeast promoter databases, YPA collects not only TFBSs but also many other promoter features to help biologists study transcriptional regulation.
本研究展示了酵母启动子图谱(YPA,http://ypa.ee.ncku.edu.tw/ 或 http://ypa.csbb.ntu.edu.tw/)数据库,其旨在收集酿酒酵母中全面的启动子特征。YPA整合了九种启动子特征,包括启动子序列、基因的转录边界——转录起始位点(TSS)、5'非翻译区(5'-UTR)和3'非翻译区(3'-UTR)、TATA框、转录因子结合位点(TFBS)、核小体占据情况、DNA可弯曲性、转录因子(TF)结合、TF敲除表达以及TF-TF物理相互作用。YPA旨在以统一的方式呈现数据,因为只有当这些启动子特征被综合考虑时,许多重要的观察结果才会显现出来。例如,DNA刚性可以阻止核小体包装,从而使刚性DNA区域中的TFBS更容易被TF接近。整合核小体占据情况、DNA可弯曲性、TF结合、TF敲除表达和TFBS数据有助于确定哪些TFBS实际上是有功能的。在YPA中,可以在一个集中且有组织的平台上访问各种启动子特征。研究人员可以轻松查看感兴趣的启动子中的TFBS是否被核小体占据或位于刚性DNA片段中,并了解下游基因的表达是否对相应TF的敲除有反应。与其他已建立的酵母启动子数据库相比,YPA不仅收集TFBS,还收集许多其他启动子特征,以帮助生物学家研究转录调控。