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首页> 外文期刊>Nucleic Acids Research >OKCAM: an ontology-based, human-centered knowledgebase for cell adhesion molecules.
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OKCAM: an ontology-based, human-centered knowledgebase for cell adhesion molecules.

机译:OKCAM:基于本体的,以人为中心的细胞粘附分子知识库。

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'Cell adhesion molecules' (CAMs) are essential elements of cell/cell communication that are important for proper development and plasticity of a variety of organs and tissues. In the brain, appropriate assembly and tuning of neuronal connections is likely to require appropriate function of many cell adhesion processes. Genetic studies have linked and/or associated CAM variants with psychiatric, neurologic, neoplastic, immunologic and developmental phenotypes. However, despite increasing recognition of their functional and pathological significance, no systematic study has enumerated CAMs or documented their global features. We now report compilation of 496 human CAM genes in six gene families based on manual curation of protein domain structures, Gene Ontology annotations, and 1487 NCBI Entrez annotations. We map these genes onto a cell adhesion molecule ontology that contains 850 terms, up to seven levels of depth and provides a hierarchical description of these molecules and their functions. We develop OKCAM, a CAM knowledgebase that provides ready access to these data and ontologic system at http://okcam.cbi.pku.edu.cn. We identify global CAM properties that include: (i) functional enrichment, (ii) over-represented regulation modes and expression patterns and (iii) relationships to human Mendelian and complex diseases, and discuss the strengths and limitations of these data.
机译:“细胞粘附分子”(CAMs)是细胞/细胞通讯的重要元素,对于各种器官和组织的正常发育和可塑性至关重要。在大脑中,神经元连接的适当组装和调整可能需要许多细胞粘附过程的适当功能。遗传研究已将CAM变体与精神病,神经病学,肿瘤,免疫学和发育表型联系起来和/或相关联。然而,尽管人们日益认识到它们的功能和病理学意义,但仍没有系统的研究来列举CAM或记录其整体特征。现在,我们报告基于蛋白质域结构,基因本体注释和1487 NCBI Entrez注释的手动管理,在六个基因家族中的496个人CAM基因的汇编。我们将这些基因映射到细胞粘附分子本体论上,该本体论包含850个术语,最深七个层次,并提供这些分子及其功能的层次描述。我们在http://okcam.cbi.pku.edu.cn上开发了可访问这些数据和本体系统的CAM知识库OKCAM。我们确定了全球CAM属性,包括:(i)功能富集,(ii)过度代表的调节模式和表达模式,以及(iii)与人类孟德尔和复杂疾病的关系,并讨论了这些数据的优势和局限性。

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