Martínez-Antonio Agustino, Salgado Heladia, Gama-Castro Socorro, Gutiérrez-Ríos Rosa María, Jiménez-Jacinto Verónica, Collado-Vides Julio
Program of Computational Genomics, CIFN, UNAM AP 565-A Cuernavaca, Morelos 62100, Mexico.
Biotechnol Bioeng. 2003 Dec 30;84(7):743-9. doi: 10.1002/bit.10846.
Bacteria develop a number of devices for sensing, responding, and adapting to different environmental conditions. Understanding within a genomic perspective how the transcriptional machinery of bacteria is modulated, as a response for changing conditions, is a major challenge for biologists. Knowledge of which genes are turned on or turned off under specific conditions is essential for our understanding of cell behavior. In this study we describe how the information pertaining to gene expression and associated growth conditions (even with very little knowledge of the associated regulatory mechanisms) is gathered from the literature and incorporated into RegulonDB, a database on transcriptional regulation and operon organization in E. coli. The link between growth conditions, signal transduction, and transcriptional regulation is modeled in the database in a simple format that highlights biological relevant information. As far as we know, there is no other database that explicitly clarifies the effect of environmental conditions on gene transcription. We discuss how this knowledge constitutes a benchmark that will impact future research aimed at integration of regulatory responses in the cell; for instance, analysis of microarrays, predicting culture behavior in biotechnological processes, and comprehension of dynamics of regulatory networks. This integrated knowledge will contribute to the future goal of modeling the behavior of E. coli as an entire cell. The RegulonDB database can be accessed on the web at the URL: http://www.cifn.unam.mx/Computational_Biology/regulondb/.
细菌发展出多种机制来感知、响应和适应不同的环境条件。从基因组角度理解细菌的转录机制如何作为对变化条件的响应而被调控,是生物学家面临的一项重大挑战。了解哪些基因在特定条件下开启或关闭对于我们理解细胞行为至关重要。在本研究中,我们描述了如何从文献中收集与基因表达及相关生长条件有关的信息(即使对相关调控机制了解甚少),并将其纳入RegulonDB,一个关于大肠杆菌转录调控和操纵子组织的数据库。生长条件、信号转导和转录调控之间的联系在数据库中以一种简单的格式建模,突出了生物学相关信息。据我们所知,没有其他数据库能明确阐明环境条件对基因转录的影响。我们讨论了这些知识如何构成一个基准,将影响未来旨在整合细胞中调控反应的研究;例如,微阵列分析、预测生物技术过程中的培养行为以及理解调控网络的动态。这种整合的知识将有助于实现将大肠杆菌作为一个完整细胞进行行为建模的未来目标。可通过以下网址在网上访问RegulonDB数据库:http://www.cifn.unam.mx/Computational_Biology/regulondb/ 。