| Literature DB >> 34991441 |
Yang Yu1, Dezhou Kong2.
Abstract
BACKGROUND: Identifying protein complexes from protein-protein interaction (PPI) networks is a crucial task, and many related algorithms have been developed. Most algorithms usually employ direct neighbors of nodes and ignore resource allocation and second-order neighbors. The effective use of such information is crucial to protein complex detection. RESULT: Based on this observation, we propose a new way by combining node resource allocation and gene expression information to weight protein network (NRAGE-WPN), in which protein complexes are detected based on core-attachment and second-order neighbors.Entities:
Keywords: Protein complex; Protein–protein interaction (PPI); Resource allocation; Weighted graph construction
Mesh:
Substances:
Year: 2022 PMID: 34991441 PMCID: PMC8734347 DOI: 10.1186/s12859-021-04543-4
Source DB: PubMed Journal: BMC Bioinformatics ISSN: 1471-2105 Impact factor: 3.169
Fig. 1The workflow of our method
Fig. 2Sample network
PPI networks and gold standards in our experiments
| Yeast | Human | |
|---|---|---|
| PPI networks | Collins [ | STRING [ |
| Gold standards | CYC2008 [ | Corum [ |
Fig. 3Comparisons of four yeast PPI networks on CYC2008
Fig. 4f-measure+ in yeast and human for different parameter α
Fig. 5Accuracy yeast and human for different parameter α
Fig. 6f-measure+ in yeast for different threshold t
Performance of functional enrichment comparison and their P values in Collins on CYC2008
| Methods | Clusters | Effective (%) | < E-15 (%) | E-15-E-5 (%) | E-5-0.001 (%) |
|---|---|---|---|---|---|
| MCL | 212 | 86.46 | 13.25 | 34.00 | 39.21 |
| MCODE | 84 | 89.65 | 15.50 | 59 | 14.75 |
| CFinder | 73 | 83.50 | 24.25 | 42.45 | 16.80 |
| ClusterOne | 106 | 91.85 | 29.75 | 52.47 | 9.63 |
| ProRank+ | 385 | 87.52 | 18.17 | 48.12 | 21.23 |
| CLE | 215 | 84.14 | 35.36 | 26.43 | 22.35 |
| CW | 164 | 92.79 | 19.24 | 54.31 | 19.24 |
| CLP | 207 | 94.44 | 8.79 | 60.28 | 25.37 |
| CI | 132 | 92.06 | 25.35 | 57.47 | 9.24 |
| PC2P | 283 | 93.20 | 43.80 | 32.65 | 16.75 |
| DPCT | 274 | 94.05 | 40.72 | 37.95 | 15.38 |
| NRAGE-WPN | 325 | 96.42 | 41.25 | 48.75 | 6.42 |
Fig. 7The effectiveness of NRAGE-WPN when RA is off/on with CYC2008 and MIPS benchmarks
Fig. 8The effectiveness of using SNS in NRAGE-WPN compare with NRAGE-WPN without using SNS in four PPI datasets with CYC2008 and MIPS benchmarks
Fig. 9The density of using different a by comparing with KVRB method for construction of four weighted graph in Yeast