Center for Systems Biology, Soochow University, No. 199 Renai Road, Suzhou, Jiangsu 215123, China.
Institutes for Systems Genetics, West China Hospital, Sichuan University, No. 17 Gaopeng Avenue, Ji Tai'an Center, Chengdu, Sichuan 610041, China.
Database (Oxford). 2020 Jan 1;2020. doi: 10.1093/database/baz147.
The phenotype-genotype relationship is a key for personalized and precision medicine for complex diseases. To unravel the complexity of the clinical phenotype-genotype network, we used cardiovascular diseases (CVDs) and associated non-coding RNAs (ncRNAs) (i.e. miRNAs, long ncRNAs, etc.) as the case for the study of CVDs at a systems or network level. We first integrated a database of CVDs and ncRNAs (CVDncR, http://sysbio.org.cn/cvdncr/) to construct CVD-ncRNA networks and annotate their clinical associations. To characterize the networks, we then separated the miRNAs into two groups, i.e. universal miRNAs associated with at least two types of CVDs and specific miRNAs related only to one type of CVD. Our analyses indicated two interesting patterns in these CVD-ncRNA networks. First, scale-free features were present within both CVD-miRNA and CVD-lncRNA networks; second, universal miRNAs were more likely to be CVDs biomarkers. These results were confirmed by computational functional analyses. The findings offer theoretical guidance for decoding CVD-ncRNA associations and will facilitate the screening of CVD ncRNA biomarkers. Database URL: http://sysbio.org.cn/cvdncr/.
表型-基因型关系是复杂疾病个性化和精准医学的关键。为了解开临床表型-基因型网络的复杂性,我们以心血管疾病(CVDs)及其相关非编码 RNA(ncRNAs)(即 miRNAs、长 ncRNAs 等)为例,从系统或网络水平研究 CVDs。我们首先整合了 CVDs 和 ncRNAs 的数据库(CVDncR,http://sysbio.org.cn/cvdncr/),构建了 CVD-ncRNA 网络,并注释了它们的临床关联。为了描述网络,我们将 miRNAs 分为两组,即与至少两种 CVD 相关的通用 miRNAs 和仅与一种 CVD 相关的特定 miRNAs。我们的分析表明,这些 CVD-ncRNA 网络中存在两种有趣的模式。首先,CVD-miRNA 和 CVD-lncRNA 网络都具有无标度特征;其次,通用 miRNAs 更有可能成为 CVD 的生物标志物。这些结果通过计算功能分析得到了验证。这些发现为解码 CVD-ncRNA 关联提供了理论指导,并将有助于筛选 CVD ncRNA 生物标志物。数据库 URL:http://sysbio.org.cn/cvdncr/。