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System-level properties of the E. coli metabolic network

System-level properties of the E. coli metabolic network
大肠杆菌代谢网络的系统级特性
批准号:
7080449
负责人:
ZOLTAN N. OLTVAI
金额:
$9.56万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-08-01 至 2007-04-30

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中文摘要
翻译
描述(由申请人提供):研究者是西北大学医学院的一名从事学术实践的内科科学家,主要研究方向是系统生物学/功能基因组学,并对分子病理学有相应的临床兴趣。该机构通过建立基因组医学中心(一项跨学科研究计划),展示了对后基因组生物学及其对医学的影响的坚定承诺。申请人的研究兴趣源于认识到离散的生物学功能,因此各种疾病实体,大多不能仅归因于单个分子的功能。相反,生物系统的健壮行为在很大程度上源于其各种建筑成分(即细胞网络)之间的复杂相互作用。在这个应用程序中,我们建议进行一个高度集成的程序,在这个程序中,我们将以定量的方式检查维持细胞正常功能所需的复杂代谢网络的结构。请注意,这项研究代表了申请人和理论物理学家(a.l。Barabasi)和细菌/遗传学家(B. L. Wanner)。该提案的具体目标如下:(1)我们将以定量的方式分析模式生物(如大肠杆菌)复杂代谢和遗传网络的结构和功能活性;(2)我们将研究干扰中心代谢网络中蛋白质水平的影响,以帮助建立模型,并测试从这些模型的计算机模拟中进化出来的规则,包括检查它们对靶向突变的耐受性;(3)在大肠杆菌生理组的研究中,我们将尝试了解代谢网络中发生的动态变化,以响应不断变化的环境。了解活细胞中各种代谢网络组分之间的相互作用原理以及代谢网络的普遍大规模特征将为基础生物学提供重要贡献,也将适用于转化研究,如抗菌药物靶点鉴定。
英文摘要
DESCRIPTION (provided by applicant): The investigator is a physician-scientist in academic practice at Northwestern University Medical School with a primary research interest in systems biology/functional genomics and a corresponding clinical interest in Molecular Pathology. This institution has demonstrated a strong commitment to post-genomic biology and its implications to medicine by the establishment of the Center for Genomic Medicine, an inter-disciplinary research initiative. The applicant's research interest stems from the recognition that discrete biological functions, and thus various disease entities, mostly cannot be attributed only to the function of individual molecules. Instead, the robust behavior of biological systems arises to a large extent from complex interactions among its various building constituents (i.e., cellular networks). In this application, we propose to conduct a highly integrated program in which we will examine in quantitative terms the structure of complex metabolic networks that are required to maintain the proper function of a cell. Note that this research represents a unique collaboration between the applicant and a theoretical physicist (A.-L. Barabasi), and a bacteria/geneticist (B. L. Wanner). Specific goals for the proposal are the following: (1) We will analyze in quantitative terms the structure and functional activity of complex metabolic and genetic networks of model organisms, such as Escherichia coli, (2) We will examine the effects of perturbing the levels of proteins in central metabolic networks to aid in model building and to test rules that evolve from computer simulations of these models, including examining their tolerance to targeted mutations; and (3) We will attempt to develop an understanding of the dynamic changes that take place in metabolic networks in response to a changing environment, in studies of the Escherichia coli physiome. Understanding the principles of interactions among various metabolic network components of a living cell and the generic large-scale feature of metabolic networks will provide both an important contribution to basic biology, and will also have applicability to translational research, such as antibacterial drug target identification.
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