| Literature DB >> 21586150 |
Bo Li1, Weiguo Cao, Jizhong Zhou, Feng Luo.
Abstract
BACKGROUND: Synthetic lethal genetic interactions among proteins have been widely used to define functional relationships between proteins and pathways. However, the molecular mechanism of synthetic lethal genetic interactions is still unclear.Entities:
Mesh:
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Year: 2011 PMID: 21586150 PMCID: PMC3113237 DOI: 10.1186/1752-0509-5-73
Source DB: PubMed Journal: BMC Syst Biol ISSN: 1752-0509
Domain genetic interactions with top ten highest E scores.
| E score | Prob. | Domaina | Domaina Pfam ID | # of Yeast proteins with domaina | Domainb | Domainb Pfam ID | # of Yeast proteins with domainb | # of GI |
|---|---|---|---|---|---|---|---|---|
| 67.48 | 0.46 | PF00225 | Kinesin | 6 | PF01920 | Prefoldin_2 | 4 | 11 |
| 65.59 | 0.72 | PF01302 | CAP_GLY | 4 | PF01920 | Prefoldin_2 | 4 | 12 |
| 63.31 | 0.32 | PF00022 | Actin | 9 | PF01920 | Prefoldin_2 | 4 | 11 |
| 41.73 | 0.025 | PF00071 | Ras | 24 | PF00071 | Ras | 24 | 13 |
| 39.53 | 0.036 | PF00400 | WD40 | 87 | PF01920 | Prefoldin_2 | 4 | 14 |
| 38.41 | 0.12 | PF00071 | Ras | 24 | PF04893 | Yip1 | 3 | 8 |
| 36.53 | 0.027 | PF00069 | Pkinase | 114 | PF01920 | Prefoldin_2 | 4 | 17 |
| 35.15 | 0.35 | PF00225 | Kinesin | 6 | PF02996 | Prefoldin | 3 | 6 |
| 33.16 | 0.80 | PF01920 | Prefoldin_2 | 4 | PF03114 | BAR | 2 | 7 |
| 31.20 | 0.013 | PF00022 | Actin | 9 | PF00069 | Pkinase | 114 | 17 |
Figure 1The log-log plot of degree distribution P(K) of domain genetic interaction network. The linear characteristics indicated by red line (y = x-1.45) imply that P(K) follows a power low.
Figure 2The domain genetic interactions in SLGIs between multidomain proteins. The thick lines indicate significant domain genetic interactions. The thin lines indicate the domain genetic interactions with low probability. The probabilities of domain genetic interactions are labeled besides the line.
Predicted new synthetic lethal genetic interactions with probability greater than 0.9
| Protein 1 Name | Protein 1 Annotation | Protein 2 Name | Protein 2 Annotation | Probability |
|---|---|---|---|---|
| MYO4 | type V myosin motors | DYN1 | Cytoplasmic heavy chain dynein | 0.9895 |
| RPO21 | RNA polymerase II largest subunit | BRF1 | TFIIIB B-related factor | 0.9816 |
| DST1 | General transcription elongation factor TFIIS | RET1 | Second-largest subunit of RNA polymerase III | 0.9797 |
| STO1 | Large subunit of the nuclear mRNA cap-binding protein complex | RPA190 | RNA polymerase I subunit | 0.9586 |
| STO1 | Large subunit of the nuclear mRNA cap-binding protein complex | RPO21 | RNA polymerase II largest subunit | 0.9586 |
| DST1 | General transcription elongation factor TFIIS | RPA135 | RNA polymerase I subunit A135 | 0.9570 |
| BNR1 | Formin, nucleates the formation of linear actin filaments | DYN1 | Cytoplasmic heavy chain dynein | 0.9441 |
| CEG1 | Alpha (guanylyltransferase) subunit of the mRNA capping enzyme | RPA190 | RNA polymerase I subunit | 0.9437 |
| CEG1 | Alpha (guanylyltransferase) subunit of the mRNA capping enzyme | RPO31 | RNA polymerase III subunit | 0.9437 |
| RPB5 | RNA polymerase subunit | RPA190 | RNA polymerase I subunit | 0.9437 |
| RPB5 | RNA polymerase subunit | RPO31 | RNA polymerase III subunit | 0.9437 |
| DST1 | General transcription elongation factor TFIIS | RPA190 | RNA polymerase I subunit | 0.9265 |
| DST1 | General transcription elongation factor TFIIS | RPO31 | RNA polymerase III subunit | 0.9265 |
| ARO1 | Pentafunctional arom protein | SPT16 | Subunit of the heterodimeric FACT complex | 0.9198 |
| RET1 | Second-largest subunit of RNA polymerase III | SUA7 | Transcription factor TFIIB | 0.9035 |
| BRF1 | TFIIIB B-related factor | RET1 | Second-largest subunit of RNA polymerase III | 0.9035 |
| BRF1 | TFIIIB B-related factor | RPB2 | RNA polymerase II second largest subunit | 0.9035 |
Figure 3The SLGIs (probabilities > 0.7) related to DNA repair proteins. The cycles indicate DNA repair proteins and the triangle indicate non DNA repair proteins. Each genetic interaction involves at least one DNA repair protein. The wide links represent new genetic interactions. The figure was produced using Cytoscape [67].
Figure 4Compensatory pathways identified from predicted SLGIs. (A, B) two compensatory pathways related to DNA double strand breaks repairs. Pathways on the left of A and B belong to non-homologous end joining. Pathways on the right of A and B belong to homologous recombination. (C) A compensatory pathways related to DNA repairs. (D) A compensatory pathways related to hydroperoxides response in the cell. Dashed lines indicate known SLGIs and solid lines indicated novel predicted SLGIs. The figure was produced using Cytoscape [67].
Summary of SLGIs used in this study
| Number of known SLGIs with no replicates | 10977 |
| Number of unique proteins in known SLGIs | 2640 |
| Number of SLGIs between proteins with domains | 7475 |
| Number of unique proteins in selected SLGIs | 2008 |
| Number of unique domains in selected SLGIs | 1357 |