欧盟- openscreen -用于研究植物生物学和抗性机制的化学工具。

Journal of Chemical Biology Pub Date : 2014-07-31 eCollection Date: 2014-10-01 DOI:10.1007/s12154-014-0118-9
Torsten Meiners, Bahne Stechmann, Ronald Frank
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引用次数: 5

摘要

EU-OPENSCREEN是欧洲的一项学术研究基础设施倡议,旨在使所有生命科学领域的研究人员能够利用化学生物学方法进行他们的项目。在16个欧洲国家的国家网络的合作努力下,EU-OPENSCREEN将与外部用户一起开发新型化合物,以解决系统和网络生物学(信号通路的定向和选择性扰动)、结构生物学(原子分辨率下的化合物-靶标相互作用)、药理学(早期药物发现和毒理学)和植物生物学(野生或作物植物对环境和农业物质的反应)。EU-OPENSCREEN支持工具开发项目的所有阶段,包括分析适应、高通量筛选和“命中”化合物的化学优化。所有工具化合物和数据将提供给科学界。EU-OPENSCREEN整合了整个欧洲的高容量筛选平台,这些平台共享一个合理选择的化合物集合,包括多达30万种(从欧洲化学家那里收集的商业和专有化合物)。通过系统地测试来自不同生物主题的数百种化学分析,筛选过程产生了大量关于物质生物活性的信息,从而稳步丰富了我们对它们如何起作用以及在哪里起作用的理解。
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EU-OPENSCREEN-chemical tools for the study of plant biology and resistance mechanisms.

EU-OPENSCREEN is an academic research infrastructure initiative in Europe for enabling researchers in all life sciences to take advantage of chemical biology approaches to their projects. In a collaborative effort of national networks in 16 European countries, EU-OPENSCREEN will develop novel chemical compounds with external users to address questions in, among other fields, systems and network biology (directed and selective perturbation of signalling pathways), structural biology (compound-target interactions at atomic resolution), pharmacology (early drug discovery and toxicology) and plant biology (response of wild or crop plants to environmental and agricultural substances). EU-OPENSCREEN supports all stages of a tool development project, including assay adaptation, high-throughput screening and chemical optimisation of the 'hit' compounds. All tool compounds and data will be made available to the scientific community. EU-OPENSCREEN integrates high-capacity screening platforms throughout Europe, which share a rationally selected compound collection comprising up to 300,000 (commercial and proprietary compounds collected from European chemists). By testing systematically this chemical collection in hundreds of assays originating from very different biological themes, the screening process generates enormous amounts of information about the biological activities of the substances and thereby steadily enriches our understanding of how and where they act.

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