| Literature DB >> 17882155 |
Hongwu Ma1, Anatoly Sorokin, Alexander Mazein, Alex Selkov, Evgeni Selkov, Oleg Demin, Igor Goryanin.
Abstract
A better understanding of human metabolism and its relationship with diseases is an important task in human systems biology studies. In this paper, we present a high-quality human metabolic network manually reconstructed by integrating genome annotation information from different databases and metabolic reaction information from literature. The network contains nearly 3000 metabolic reactions, which were reorganized into about 70 human-specific metabolic pathways according to their functional relationships. By analysis of the functional connectivity of the metabolites in the network, the bow-tie structure, which was found previously by structure analysis, is reconfirmed. Furthermore, the distribution of the disease related genes in the network suggests that the IN (substrates) subset of the bow-tie structure has more flexibility than other parts.Entities:
Mesh:
Year: 2007 PMID: 17882155 PMCID: PMC2013923 DOI: 10.1038/msb4100177
Source DB: PubMed Journal: Mol Syst Biol ISSN: 1744-4292 Impact factor: 11.429
Figure 1Processes for reconstruction of the high-quality human metabolic network.
Figure 2An example pathway of the reconstructed human metabolic network: the retinol (vitamin A) pathway. Compared with corresponding KEGG pathway (map00830), our pathway contains more reactions.
Figure 3The bow-tie structure of the human metabolic network.
The bow-tie structure of human metabolic network and diseases
| Subsets | No. of reactions | No. of reactions with encoding genes | No. of disease-related reactions | Percentage of disease-related reactions |
|---|---|---|---|---|
| Total | 2823 | 2314 | 2215 | 95.72% |
| GSC | 605 | 550 | 535 | 97.27% |
| IN | 330 | 283 | 258 | 91.17% |
| OUT | 984 | 788 | 777 | 98.60% |
| IN2 | 12 | 12 | 8 | 66.67% |
| OUT2 | 257 | 201 | 194 | 96.52% |
| Isolated | 635 | 480 | 443 | 92.29% |
Abbreviation: GSC, giant strong component.