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Finding Novel Molecular Connections between Developmental Processes and Disease

机译:寻找发展过程和疾病之间的新型分子联系

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摘要

Identifying molecular connections between developmental processes and disease can lead to new hypotheses about health risks at all stages of life. Here we introduce a new approach to identifying significant connections between gene sets and disease genes, and apply it to several gene sets related to human development. To overcome the limits of incomplete and imperfect information linking genes to disease, we pool genes within disease subtrees in the MeSH taxonomy, and we demonstrate that such pooling improves the power and accuracy of our approach. Significance is assessed through permutation. We created a web-based visualization tool to facilitate multi-scale exploration of this large collection of significant connections (). High-level analysis of the results reveals expected connections between tissue-specific developmental processes and diseases linked to those tissues, and widespread connections to developmental disorders and cancers. Yet interesting new hypotheses may be derived from examining the unexpected connections. We highlight and discuss the implications of three such connections, linking dementia with bone development, polycystic ovary syndrome with cardiovascular development, and retinopathy of prematurity with lung development. Our results provide additional evidence that plays a key role in the early pathogenesis of polycystic ovary syndrome. Our evidence also suggests that the VEGF pathway and downstream NFKB signaling may explain the complex relationship between bronchopulmonary dysplasia and retinopathy of prematurity, and may form a bridge between two currently-competing hypotheses about the molecular origins of bronchopulmonary dysplasia. Further data exploration and similar queries about other gene sets may generate a variety of new information about the molecular relationships between additional diseases.
机译:识别发育过程和疾病之间的分子联系可以导致关于生命各个阶段健康风险的新假设。在这里,我们介绍了一种新的方法来识别基因集和疾病基因之间的重要联系,并将其应用于与人类发展有关的几种基因集。为了克服将基因与疾病联系起来的信息不完整和不完善的局限性,我们在MeSH分类法的疾病亚树中合并了基因,并且我们证明了这种合并提高了我们方法的功效和准确性。通过排列评估重要性。我们创建了一个基于Web的可视化工具,以促进对大量重要连接()的多尺度探索。对结果的高级分析揭示了组织特异性发育过程和与那些组织相关的疾病之间的预期联系,以及与发育障碍和癌症的广泛联系。然而,有趣的新假设可以通过检查意外的联系而得出。我们强调并讨论了三种联系的含义,即痴呆与骨骼发育,多囊卵巢综合征与心血管发育,早熟视网膜病变与肺发育之间的联系。我们的结果提供了在多囊卵巢综合征的早期发病机制中起关键作用的其他证据。我们的证据还表明,VEGF途径和下游NFKB信号传导可能解释了支气管肺发育不良和早产儿视网膜病变之间的复杂关系,并且可能在关于支气管肺发育不良的分子起源的两个当前竞争假设之间架起了桥梁。有关其他基因集的进一步数据探索和类似查询可能会产生有关其他疾病之间的分子关系的各种新信息。

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