Mustacchi Roberta, Hohmann Stefan, Nielsen Jens
Centre for Microbial Biotechnology (CMB), Building 223, BioCentrum-DTU, Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark.
Yeast. 2006 Feb;23(3):227-38. doi: 10.1002/yea.1357.
Systems biology focuses on obtaining a quantitative description of complete biological systems, even complete cellular function. In this way, it will be possible to perform computer-guided design of novel drugs, advanced therapies for treatment of complex diseases, and to perform in silico design of advanced cell factories for production of fuels, chemicals, food ingredients and pharmaceuticals. The yeast Saccharomyces cerevisiae represents an excellent model system; the density of biological information available on this organism allows it to serve as a eukaryotic model for studying human diseases. Furthermore, it serves as an industrial workhorse for production of a wide range of chemicals and pharmaceuticals. Systems biology involves the combination of novel experimental techniques from different disciplines as well as functional genomics, bioinformatics and mathematical modelling, and hence no single laboratory has access to all the necessary competences. For this reason the Yeast Systems Biology Network (YSBN) has been established. YSBN will coordinate research efforts in yeast systems biology and, through the recently obtained EU funding for a Coordination Action, it will be possible to set appropriate guidelines, establish an appropriate infrastructure for the network and organize courses, meetings and conferences that will consolidate the network and promote systems biology. This paper discusses the impacts of systems biology and how YSBN may play a role in the future development of the field.
系统生物学专注于获取完整生物系统的定量描述,甚至是完整的细胞功能。通过这种方式,将有可能进行新型药物的计算机辅助设计、治疗复杂疾病的先进疗法,以及进行用于生产燃料、化学品、食品成分和药品的先进细胞工厂的计算机模拟设计。酿酒酵母是一个出色的模型系统;关于这种生物体的生物信息密度使其能够作为研究人类疾病的真核模型。此外,它还是生产多种化学品和药品的工业主力军。系统生物学涉及来自不同学科的新型实验技术以及功能基因组学、生物信息学和数学建模的结合,因此没有一个实验室具备所有必要的能力。出于这个原因,酵母系统生物学网络(YSBN)已经成立。YSBN将协调酵母系统生物学的研究工作,并且通过最近获得的欧盟协调行动资金,将有可能制定适当的指导方针,为该网络建立适当的基础设施,并组织课程、会议和研讨会,以巩固该网络并促进系统生物学的发展。本文讨论了系统生物学的影响以及YSBN在该领域未来发展中可能发挥的作用。