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BiPOm: a rule-based ontology to represent and infer molecule knowledge from a biological process-centered viewpoint

机译:BIPOM:基于规则的本体,以从生物过程为中心的观点来表示和推断分子知识

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BACKGROUND:Managing and organizing biological knowledge remains a major challenge, due to the complexity of living systems. Recently, systemic representations have been promising in tackling such a challenge at the whole-cell scale. In such representations, the cell is considered as a system composed of interlocked subsystems. The need is now to define a relevant formalization of the systemic description of cellular processes.RESULTS:We introduce BiPOm (Biological interlocked Process Ontology for metabolism) an ontology to represent metabolic processes as interlocked subsystems using a limited number of classes and properties. We explicitly formalized the relations between the enzyme, its activity, the substrates and the products of the reaction, as well as the active state of all involved molecules. We further showed that the information of molecules such as molecular types or molecular properties can be deduced by automatic reasoning using logical rules. The information necessary to populate BiPOm can be extracted from existing databases or existing bio-ontologies.CONCLUSION:BiPOm provides a formal rule-based knowledge representation to relate all cellular components together by considering the cellular system as a whole. It relies on a paradigm shift where the anchorage of knowledge is rerouted from the molecule to the biological process.AVAILABILITY:BiPOm can be downloaded at https://github.com/SysBioInra/SysOnto.
机译:背景:由于生活系统的复杂性,管理和组织生物学知识仍然是一个重大挑战。最近,全身陈述一直在承诺解决全部细胞范围的这种挑战。在这种表示中,该小区被认为是由互锁子系统组成的系统。现在需要定义蜂窝过程的系统描述的相关形式化。结果:我们将Bipom(生物互锁的过程本体论用于新陈代谢)的本体,以表示使用有限数量的类和属性作为互锁子系统的代谢过程。我们明确地形式化了酶,活性,底物和反应产物之间的关系,以及所有涉及的分子的活性状态。我们进一步表明,可以通过使用逻辑规则自动推理来推导出分子类型或分子特性等分子的信息。填充Bipom所需的信息可以从现有数据库或现有的生物本体中提取。结论:BIPOM提供基于规则的知识表示,以通过考虑整个蜂窝系统来将所有蜂窝组件联系在一起。它依赖于范式的转变,其中知识的锚定从分子转向生物过程。可利用性:Bipom可以在https://github.com/sysbioinra/sysonto下载。

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