...
首页> 外文期刊>BMC Systems Biology >Systems biological approach on neurological disorders: a novel molecular connectivity to aging and psychiatric diseases
【24h】

Systems biological approach on neurological disorders: a novel molecular connectivity to aging and psychiatric diseases

机译:神经系统疾病的系统生物学方法:与衰老和精神疾病的新型分子联系

获取原文
           

摘要

Background Systems biological approach of molecular connectivity map has reached to a great interest to understand the gene functional similarities between the diseases. In this study, we developed a computational framework to build molecular connectivity maps by integrating mutated and differentially expressed genes of neurological and psychiatric diseases to determine its relationship with aging. Results The systematic large-scale analyses of 124 human diseases create three classes of molecular connectivity maps. First, molecular interaction of disease protein network generates 3632 proteins with 6172 interactions, which determines the common genes/proteins between diseases. Second, Disease-disease network includes 4845 positively scored disease-disease relationships. The comparison of these disease-disease pairs with Medical Subject Headings (MeSH) classification tree suggests 25% of the disease-disease pairs were in same disease area. The remaining can be a novel disease-disease relationship based on gene/protein similarity. Inclusion of aging genes set showed 79 neurological and 20 psychiatric diseases have the strong association with aging. Third and lastly, a curated disease biomarker network was created by relating the proteins/genes in specific disease contexts, such analysis showed 73 markers for 24 diseases. Further, the overall quality of the results was achieved by a series of statistical methods, to avoid insignificant data in biological networks. Conclusions This study improves the understanding of the complex interactions that occur between neurological and psychiatric diseases with aging, which lead to determine the diagnostic markers. Also, the disease-disease association results could be helpful to determine the symptom relationships between neurological and psychiatric diseases. Together, our study presents many research opportunities in post-genomic biomarkers development.
机译:背景技术分子连通性图的生物学方法已经引起了极大的兴趣,以了解疾病之间的基因功能相似性。在这项研究中,我们开发了一个计算框架,通过整合神经和精神疾病的突变和差异表达基因来确定其与衰老的关系,从而建立分子连接图。结果对124种人类疾病进行的系统的大规模分析创建了三类分子连通性图。首先,疾病蛋白网络的分子相互作用产生了3632个蛋白和6172个相互作用,这决定了疾病之间的共同基因/蛋白。其次,疾病-疾病网络包括4845个得分正的疾病-疾病关系。这些疾病-疾病对与医学主题词(MeSH)分类树的比较表明,25%的疾病-疾病对在同一疾病区域。其余的可能是基于基因/蛋白质相似性的新型疾病-疾病关系。包含衰老基因集表明79种神经系统疾病和20种精神疾病与衰老有很强的关联。第三,最后,通过在特定疾病背景下关联蛋白质/基因,创建了一个精选的疾病生物标记网络,这种分析显示了24种疾病的73个标记。此外,结果的总体质量是通过一系列统计方法实现的,从而避免了生物网络中无关紧要的数据。结论本研究增进了对神经和精神疾病与衰老之间发生的复杂相互作用的了解,从而确定了诊断标记。此外,疾病-疾病关联结果可能有助于确定神经系统疾病与精神疾病之间的症状关系。总之,我们的研究提出了后基因组生物标记开发中的许多研究机会。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号