| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| MCP_1532 | MCP_1556 | MCP_1532 | MCP_1556 | Conserved hypothetical protein; Contains one KH domain (IPR004087); Contains one KH, type 1 domain (IPR004088). | snoRNA binding protein Nop56 homolog. | 0.994 |
| MCP_1532 | csl4 | MCP_1532 | MCP_1505 | Conserved hypothetical protein; Contains one KH domain (IPR004087); Contains one KH, type 1 domain (IPR004088). | Putative 3'-5' exoribonuclease; Non-catalytic component of the exosome, which is a complex involved in RNA degradation. Increases the RNA binding and the efficiency of RNA degradation. Helpful for the interaction of the exosome with A-poor RNAs. | 0.994 |
| MCP_1532 | rps11p | MCP_1532 | MCP_2257 | Conserved hypothetical protein; Contains one KH domain (IPR004087); Contains one KH, type 1 domain (IPR004088). | 30S ribosomal protein S11P; Located on the platform of the 30S subunit. Belongs to the universal ribosomal protein uS11 family. | 0.999 |
| MCP_1532 | rps4p | MCP_1532 | MCP_2256 | Conserved hypothetical protein; Contains one KH domain (IPR004087); Contains one KH, type 1 domain (IPR004088). | 30S ribosomal protein S4P; One of the primary rRNA binding proteins, it binds directly to 16S rRNA where it nucleates assembly of the body of the 30S subunit. | 0.999 |
| MCP_1532 | rps5p | MCP_1532 | MCP_2241 | Conserved hypothetical protein; Contains one KH domain (IPR004087); Contains one KH, type 1 domain (IPR004088). | 30S ribosomal protein S5P; With S4 and S12 plays an important role in translational accuracy. | 0.999 |
| MCP_1532 | rps6e | MCP_1532 | MCP_1682 | Conserved hypothetical protein; Contains one KH domain (IPR004087); Contains one KH, type 1 domain (IPR004088). | 30S ribosomal protein S6e; Belongs to the eukaryotic ribosomal protein eS6 family. | 0.999 |
| MCP_1532 | rrp4 | MCP_1532 | MCP_2628 | Conserved hypothetical protein; Contains one KH domain (IPR004087); Contains one KH, type 1 domain (IPR004088). | Putative exosome complex RNA-binding protein; Non-catalytic component of the exosome, which is a complex involved in RNA degradation. Increases the RNA binding and the efficiency of RNA degradation. Confers strong poly(A) specificity to the exosome. | 0.992 |
| MCP_1532 | rrp41 | MCP_1532 | MCP_2627 | Conserved hypothetical protein; Contains one KH domain (IPR004087); Contains one KH, type 1 domain (IPR004088). | Putative exosome complex exonuclease 1; Catalytic component of the exosome, which is a complex involved in RNA degradation. Has 3'->5' exoribonuclease activity. Can also synthesize heteropolymeric RNA-tails. | 0.989 |
| MCP_1532 | rrp42 | MCP_1532 | MCP_2626 | Conserved hypothetical protein; Contains one KH domain (IPR004087); Contains one KH, type 1 domain (IPR004088). | Probable exosome complex exonuclease 2; Non-catalytic component of the exosome, which is a complex involved in RNA degradation. Contributes to the structuring of the Rrp41 active site. | 0.994 |
| MCP_1532 | rtcA | MCP_1532 | MCP_2445 | Conserved hypothetical protein; Contains one KH domain (IPR004087); Contains one KH, type 1 domain (IPR004088). | RNA 3'-terminal phosphate cyclase; Catalyzes the conversion of 3'-phosphate to a 2',3'-cyclic phosphodiester at the end of RNA. The mechanism of action of the enzyme occurs in 3 steps: (A) adenylation of the enzyme by ATP; (B) transfer of adenylate to an RNA-N3'P to produce RNA-N3'PP5'A; (C) and attack of the adjacent 2'-hydroxyl on the 3'-phosphorus in the diester linkage to produce the cyclic end product. The biological role of this enzyme is unknown but it is likely to function in some aspects of cellular RNA processing. | 0.977 |
| MCP_1556 | MCP_1532 | MCP_1556 | MCP_1532 | snoRNA binding protein Nop56 homolog. | Conserved hypothetical protein; Contains one KH domain (IPR004087); Contains one KH, type 1 domain (IPR004088). | 0.994 |
| MCP_1556 | csl4 | MCP_1556 | MCP_1505 | snoRNA binding protein Nop56 homolog. | Putative 3'-5' exoribonuclease; Non-catalytic component of the exosome, which is a complex involved in RNA degradation. Increases the RNA binding and the efficiency of RNA degradation. Helpful for the interaction of the exosome with A-poor RNAs. | 0.992 |
| MCP_1556 | rps11p | MCP_1556 | MCP_2257 | snoRNA binding protein Nop56 homolog. | 30S ribosomal protein S11P; Located on the platform of the 30S subunit. Belongs to the universal ribosomal protein uS11 family. | 0.999 |
| MCP_1556 | rps4p | MCP_1556 | MCP_2256 | snoRNA binding protein Nop56 homolog. | 30S ribosomal protein S4P; One of the primary rRNA binding proteins, it binds directly to 16S rRNA where it nucleates assembly of the body of the 30S subunit. | 0.998 |
| MCP_1556 | rps5p | MCP_1556 | MCP_2241 | snoRNA binding protein Nop56 homolog. | 30S ribosomal protein S5P; With S4 and S12 plays an important role in translational accuracy. | 0.991 |
| MCP_1556 | rps6e | MCP_1556 | MCP_1682 | snoRNA binding protein Nop56 homolog. | 30S ribosomal protein S6e; Belongs to the eukaryotic ribosomal protein eS6 family. | 0.999 |
| MCP_1556 | rrp4 | MCP_1556 | MCP_2628 | snoRNA binding protein Nop56 homolog. | Putative exosome complex RNA-binding protein; Non-catalytic component of the exosome, which is a complex involved in RNA degradation. Increases the RNA binding and the efficiency of RNA degradation. Confers strong poly(A) specificity to the exosome. | 0.987 |
| MCP_1556 | rrp41 | MCP_1556 | MCP_2627 | snoRNA binding protein Nop56 homolog. | Putative exosome complex exonuclease 1; Catalytic component of the exosome, which is a complex involved in RNA degradation. Has 3'->5' exoribonuclease activity. Can also synthesize heteropolymeric RNA-tails. | 0.986 |
| MCP_1556 | rrp42 | MCP_1556 | MCP_2626 | snoRNA binding protein Nop56 homolog. | Probable exosome complex exonuclease 2; Non-catalytic component of the exosome, which is a complex involved in RNA degradation. Contributes to the structuring of the Rrp41 active site. | 0.992 |
| MCP_1556 | rtcA | MCP_1556 | MCP_2445 | snoRNA binding protein Nop56 homolog. | RNA 3'-terminal phosphate cyclase; Catalyzes the conversion of 3'-phosphate to a 2',3'-cyclic phosphodiester at the end of RNA. The mechanism of action of the enzyme occurs in 3 steps: (A) adenylation of the enzyme by ATP; (B) transfer of adenylate to an RNA-N3'P to produce RNA-N3'PP5'A; (C) and attack of the adjacent 2'-hydroxyl on the 3'-phosphorus in the diester linkage to produce the cyclic end product. The biological role of this enzyme is unknown but it is likely to function in some aspects of cellular RNA processing. | 0.971 |