| Literature DB >> 35736459 |
Le Chang1, Guangyan Zhou2, Huiting Ou1, Jianguo Xia1,2.
Abstract
Tens of thousands of single-nucleotide polymorphisms (SNPs) have been identified to be significantly associated with metabolite abundance in over 65 genome-wide association studies with metabolomics (mGWAS) to date. Obtaining mechanistic or functional insights from these associations for translational applications has become a key research area in the mGWAS community. Here, we introduce mGWAS-Explorer, a user-friendly web-based platform to help connect SNPs, metabolites, genes, and their known disease associations via powerful network visual analytics. The application of the mGWAS-Explorer was demonstrated using a COVID-19 and a type 2 diabetes case studies.Entities:
Keywords: SNP; cross-phenotype association analysis; mGWAS; mQTL; metabolomics; network; pleiotropy
Year: 2022 PMID: 35736459 PMCID: PMC9230867 DOI: 10.3390/metabo12060526
Source DB: PubMed Journal: Metabolites ISSN: 2218-1989
A summary of the mGWAS datasets in mGWAS-Explorer.
| Sample Type | Study # | * Metabolite # | ** Metabolite Ratio # | SNP # | SNP–Metabolite Associations # |
|---|---|---|---|---|---|
| Blood | 57 | 3992 | 1265 | 67,570 | 30,3090 |
| Urine | 5 | 271 | 1123 | 6877 | 9647 |
| Saliva | 1 | 14 | 0 | 1364 | 1454 |
| Cerebrospinal fluid (CSF) | 1 | 15 | 0 | 1178 | 1182 |
| Mitochondria | 1 | 0 | 390 | 194 | 404 |
| Sum (unique) | 65 | 4147 | 2388 | 73,737 | 313,720 |
* Metabolite number includes both targeted (compound names) and untargeted measures (feature IDs, such as ‘391.2859_3.774′ based on mass to charge ratio and retention time. The total number of such feature IDs is 2464). ** Metabolite ratios (metabolite A/metabolite B) can be useful as they may reflect the biochemical conversion of metabolites and thus enhance the association signals. The # sign indicates size or total number [43].
Figure 1Overview of mGWAS-Explorer workflow. Users can upload different data types. The input will be mapped to the underlying knowledgebases to create mapping tables and networks. The visualization page allows users to intuitively explore the networks to identify important associations as well as to perform topology or functional analysis.
Figure 2Screenshots of upload pages for SNP (a), metabolite (b), and gene (c) modules. (d) A screenshot of a 3D Manhattan plot from the ‘Browse’ module based on the data from Lotta et al. [7]. The x-axis is the position of the SNPs, and the y-axis represents different metabolites, while the z-axis corresponds to the significance of the association; (e) a screenshot showing the table view in the ‘Browse’ module.
Figure 3Screenshots of network results for the (a) COVID-19 case study and (b) type 2 diabetes case study. Each node represents either a SNP (orange square), a metabolite (green circle), a gene (blue diamond), a disease (dark blue circle), or a seed node (yellow square outline). Each edge is either an association between one SNP and one metabolite, an association between one SNP and one disease, a positional mapping of SNP to gene, or a protein–protein interaction. The size of a node is proportional to the number of other nodes connected to it.
Comparison of the main features of mGWAS-Explorer with other web-based tools. Symbols used for feature evaluations with ‘√’ for present, ‘−’ for absent, and ‘+’ for a more quantitative assessment (more ‘+’ symbols indicate better support).
| Tool Name | mGWAS-Explorer | Metabolomics GWAS Server | PheWeb | NETMAGE | GePhEx |
|---|---|---|---|---|---|
|
| |||||
| SNP | √ | √ | √ | √ | √ |
| LD proxy search | √ | √ | − | − | √ |
| Gene | √ | √ | √ | − | √ |
| Metabolite | √ | √ | √ | − | √ |
|
| |||||
| SNP-set | √ | − | − | − | − |
| Gene-set | √ | − | − | − | √ |
| Metabolite-set | √ | − | − | − | − |
|
| √ | √ | √ | √ | √ |
|
| |||||
| Network visualization | +++ | − | − | + | − |
| Network customization | +++ | − | − | + | − |
| Integration with PPI network | √ | − | − | − | − |
| Subnetwork extraction | √ | − | − | √ | − |
| Topology-based filtering | √ | − | − | − | − |
| 3D Manhattan plot | √ | − | − | − | − |