| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| ADU47517.1 | greA | Intca_0993 | Intca_0992 | KEGG: kse:Ksed_07270 hypothetical protein; SPTR: Putative uncharacterized protein. | Transcription elongation factor GreA; Necessary for efficient RNA polymerase transcription elongation past template-encoded arresting sites. The arresting sites in DNA have the property of trapping a certain fraction of elongating RNA polymerases that pass through, resulting in locked ternary complexes. Cleavage of the nascent transcript by cleavage factors such as GreA or GreB allows the resumption of elongation from the new 3'terminus. GreA releases sequences of 2 to 3 nucleotides. | 0.611 |
| ADU48130.1 | greA | Intca_1617 | Intca_0992 | Fmu (Sun) domain protein; COGs: COG0144 tRNA and rRNA cytosine-C5-methylase; InterPro IPR006027: IPR001678; KEGG: cfl:Cfla_1856 Fmu (Sun) domain protein; PFAM: Fmu (Sun) domain protein; NusB/RsmB/TIM44; SPTR: Putative RNA-binding Sun protein; PFAM: NOL1/NOP2/sun family; NusB family; TIGRFAM: ribosomal RNA small subunit methyltransferase RsmB; Belongs to the class I-like SAM-binding methyltransferase superfamily. RsmB/NOP family. | Transcription elongation factor GreA; Necessary for efficient RNA polymerase transcription elongation past template-encoded arresting sites. The arresting sites in DNA have the property of trapping a certain fraction of elongating RNA polymerases that pass through, resulting in locked ternary complexes. Cleavage of the nascent transcript by cleavage factors such as GreA or GreB allows the resumption of elongation from the new 3'terminus. GreA releases sequences of 2 to 3 nucleotides. | 0.612 |
| ADU48130.1 | nusG | Intca_1617 | Intca_2788 | Fmu (Sun) domain protein; COGs: COG0144 tRNA and rRNA cytosine-C5-methylase; InterPro IPR006027: IPR001678; KEGG: cfl:Cfla_1856 Fmu (Sun) domain protein; PFAM: Fmu (Sun) domain protein; NusB/RsmB/TIM44; SPTR: Putative RNA-binding Sun protein; PFAM: NOL1/NOP2/sun family; NusB family; TIGRFAM: ribosomal RNA small subunit methyltransferase RsmB; Belongs to the class I-like SAM-binding methyltransferase superfamily. RsmB/NOP family. | Transcription antitermination protein nusG; Participates in transcription elongation, termination and antitermination. | 0.566 |
| ADU48130.1 | pnp | Intca_1617 | Intca_2196 | Fmu (Sun) domain protein; COGs: COG0144 tRNA and rRNA cytosine-C5-methylase; InterPro IPR006027: IPR001678; KEGG: cfl:Cfla_1856 Fmu (Sun) domain protein; PFAM: Fmu (Sun) domain protein; NusB/RsmB/TIM44; SPTR: Putative RNA-binding Sun protein; PFAM: NOL1/NOP2/sun family; NusB family; TIGRFAM: ribosomal RNA small subunit methyltransferase RsmB; Belongs to the class I-like SAM-binding methyltransferase superfamily. RsmB/NOP family. | Guanosine pentaphosphate synthetase I/polyribonucleotide nucleotidyltransferase; Involved in mRNA degradation. Catalyzes the phosphorolysis of single-stranded polyribonucleotides processively in the 3'- to 5'- direction. | 0.551 |
| ADU48130.1 | rpoA | Intca_1617 | Intca_2724 | Fmu (Sun) domain protein; COGs: COG0144 tRNA and rRNA cytosine-C5-methylase; InterPro IPR006027: IPR001678; KEGG: cfl:Cfla_1856 Fmu (Sun) domain protein; PFAM: Fmu (Sun) domain protein; NusB/RsmB/TIM44; SPTR: Putative RNA-binding Sun protein; PFAM: NOL1/NOP2/sun family; NusB family; TIGRFAM: ribosomal RNA small subunit methyltransferase RsmB; Belongs to the class I-like SAM-binding methyltransferase superfamily. RsmB/NOP family. | DNA-directed RNA polymerase subunit alpha; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. | 0.593 |
| ADU48130.1 | rpoB | Intca_1617 | Intca_2766 | Fmu (Sun) domain protein; COGs: COG0144 tRNA and rRNA cytosine-C5-methylase; InterPro IPR006027: IPR001678; KEGG: cfl:Cfla_1856 Fmu (Sun) domain protein; PFAM: Fmu (Sun) domain protein; NusB/RsmB/TIM44; SPTR: Putative RNA-binding Sun protein; PFAM: NOL1/NOP2/sun family; NusB family; TIGRFAM: ribosomal RNA small subunit methyltransferase RsmB; Belongs to the class I-like SAM-binding methyltransferase superfamily. RsmB/NOP family. | DNA-directed RNA polymerase subunit beta; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. | 0.851 |
| ADU48130.1 | rpoC | Intca_1617 | Intca_2764 | Fmu (Sun) domain protein; COGs: COG0144 tRNA and rRNA cytosine-C5-methylase; InterPro IPR006027: IPR001678; KEGG: cfl:Cfla_1856 Fmu (Sun) domain protein; PFAM: Fmu (Sun) domain protein; NusB/RsmB/TIM44; SPTR: Putative RNA-binding Sun protein; PFAM: NOL1/NOP2/sun family; NusB family; TIGRFAM: ribosomal RNA small subunit methyltransferase RsmB; Belongs to the class I-like SAM-binding methyltransferase superfamily. RsmB/NOP family. | DNA-directed RNA polymerase subunit beta; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. | 0.737 |
| ADU48130.1 | rpoZ | Intca_1617 | Intca_1610 | Fmu (Sun) domain protein; COGs: COG0144 tRNA and rRNA cytosine-C5-methylase; InterPro IPR006027: IPR001678; KEGG: cfl:Cfla_1856 Fmu (Sun) domain protein; PFAM: Fmu (Sun) domain protein; NusB/RsmB/TIM44; SPTR: Putative RNA-binding Sun protein; PFAM: NOL1/NOP2/sun family; NusB family; TIGRFAM: ribosomal RNA small subunit methyltransferase RsmB; Belongs to the class I-like SAM-binding methyltransferase superfamily. RsmB/NOP family. | DNA-directed RNA polymerase subunit omega; Promotes RNA polymerase assembly. Latches the N- and C- terminal regions of the beta' subunit thereby facilitating its interaction with the beta and alpha subunits. | 0.868 |
| ADU48130.1 | rpsO | Intca_1617 | Intca_2197 | Fmu (Sun) domain protein; COGs: COG0144 tRNA and rRNA cytosine-C5-methylase; InterPro IPR006027: IPR001678; KEGG: cfl:Cfla_1856 Fmu (Sun) domain protein; PFAM: Fmu (Sun) domain protein; NusB/RsmB/TIM44; SPTR: Putative RNA-binding Sun protein; PFAM: NOL1/NOP2/sun family; NusB family; TIGRFAM: ribosomal RNA small subunit methyltransferase RsmB; Belongs to the class I-like SAM-binding methyltransferase superfamily. RsmB/NOP family. | SSU ribosomal protein S15P; Forms an intersubunit bridge (bridge B4) with the 23S rRNA of the 50S subunit in the ribosome. | 0.537 |
| greA | ADU47517.1 | Intca_0992 | Intca_0993 | Transcription elongation factor GreA; Necessary for efficient RNA polymerase transcription elongation past template-encoded arresting sites. The arresting sites in DNA have the property of trapping a certain fraction of elongating RNA polymerases that pass through, resulting in locked ternary complexes. Cleavage of the nascent transcript by cleavage factors such as GreA or GreB allows the resumption of elongation from the new 3'terminus. GreA releases sequences of 2 to 3 nucleotides. | KEGG: kse:Ksed_07270 hypothetical protein; SPTR: Putative uncharacterized protein. | 0.611 |
| greA | ADU48130.1 | Intca_0992 | Intca_1617 | Transcription elongation factor GreA; Necessary for efficient RNA polymerase transcription elongation past template-encoded arresting sites. The arresting sites in DNA have the property of trapping a certain fraction of elongating RNA polymerases that pass through, resulting in locked ternary complexes. Cleavage of the nascent transcript by cleavage factors such as GreA or GreB allows the resumption of elongation from the new 3'terminus. GreA releases sequences of 2 to 3 nucleotides. | Fmu (Sun) domain protein; COGs: COG0144 tRNA and rRNA cytosine-C5-methylase; InterPro IPR006027: IPR001678; KEGG: cfl:Cfla_1856 Fmu (Sun) domain protein; PFAM: Fmu (Sun) domain protein; NusB/RsmB/TIM44; SPTR: Putative RNA-binding Sun protein; PFAM: NOL1/NOP2/sun family; NusB family; TIGRFAM: ribosomal RNA small subunit methyltransferase RsmB; Belongs to the class I-like SAM-binding methyltransferase superfamily. RsmB/NOP family. | 0.612 |
| greA | mfd | Intca_0992 | Intca_0928 | Transcription elongation factor GreA; Necessary for efficient RNA polymerase transcription elongation past template-encoded arresting sites. The arresting sites in DNA have the property of trapping a certain fraction of elongating RNA polymerases that pass through, resulting in locked ternary complexes. Cleavage of the nascent transcript by cleavage factors such as GreA or GreB allows the resumption of elongation from the new 3'terminus. GreA releases sequences of 2 to 3 nucleotides. | Transcription-repair coupling factor; Couples transcription and DNA repair by recognizing RNA polymerase (RNAP) stalled at DNA lesions. Mediates ATP-dependent release of RNAP and its truncated transcript from the DNA, and recruitment of nucleotide excision repair machinery to the damaged site; In the C-terminal section; belongs to the helicase family. RecG subfamily. | 0.653 |
| greA | nusG | Intca_0992 | Intca_2788 | Transcription elongation factor GreA; Necessary for efficient RNA polymerase transcription elongation past template-encoded arresting sites. The arresting sites in DNA have the property of trapping a certain fraction of elongating RNA polymerases that pass through, resulting in locked ternary complexes. Cleavage of the nascent transcript by cleavage factors such as GreA or GreB allows the resumption of elongation from the new 3'terminus. GreA releases sequences of 2 to 3 nucleotides. | Transcription antitermination protein nusG; Participates in transcription elongation, termination and antitermination. | 0.756 |
| greA | pnp | Intca_0992 | Intca_2196 | Transcription elongation factor GreA; Necessary for efficient RNA polymerase transcription elongation past template-encoded arresting sites. The arresting sites in DNA have the property of trapping a certain fraction of elongating RNA polymerases that pass through, resulting in locked ternary complexes. Cleavage of the nascent transcript by cleavage factors such as GreA or GreB allows the resumption of elongation from the new 3'terminus. GreA releases sequences of 2 to 3 nucleotides. | Guanosine pentaphosphate synthetase I/polyribonucleotide nucleotidyltransferase; Involved in mRNA degradation. Catalyzes the phosphorolysis of single-stranded polyribonucleotides processively in the 3'- to 5'- direction. | 0.612 |
| greA | rpoA | Intca_0992 | Intca_2724 | Transcription elongation factor GreA; Necessary for efficient RNA polymerase transcription elongation past template-encoded arresting sites. The arresting sites in DNA have the property of trapping a certain fraction of elongating RNA polymerases that pass through, resulting in locked ternary complexes. Cleavage of the nascent transcript by cleavage factors such as GreA or GreB allows the resumption of elongation from the new 3'terminus. GreA releases sequences of 2 to 3 nucleotides. | DNA-directed RNA polymerase subunit alpha; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. | 0.942 |
| greA | rpoB | Intca_0992 | Intca_2766 | Transcription elongation factor GreA; Necessary for efficient RNA polymerase transcription elongation past template-encoded arresting sites. The arresting sites in DNA have the property of trapping a certain fraction of elongating RNA polymerases that pass through, resulting in locked ternary complexes. Cleavage of the nascent transcript by cleavage factors such as GreA or GreB allows the resumption of elongation from the new 3'terminus. GreA releases sequences of 2 to 3 nucleotides. | DNA-directed RNA polymerase subunit beta; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. | 0.955 |
| greA | rpoC | Intca_0992 | Intca_2764 | Transcription elongation factor GreA; Necessary for efficient RNA polymerase transcription elongation past template-encoded arresting sites. The arresting sites in DNA have the property of trapping a certain fraction of elongating RNA polymerases that pass through, resulting in locked ternary complexes. Cleavage of the nascent transcript by cleavage factors such as GreA or GreB allows the resumption of elongation from the new 3'terminus. GreA releases sequences of 2 to 3 nucleotides. | DNA-directed RNA polymerase subunit beta; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. | 0.979 |
| greA | rpoZ | Intca_0992 | Intca_1610 | Transcription elongation factor GreA; Necessary for efficient RNA polymerase transcription elongation past template-encoded arresting sites. The arresting sites in DNA have the property of trapping a certain fraction of elongating RNA polymerases that pass through, resulting in locked ternary complexes. Cleavage of the nascent transcript by cleavage factors such as GreA or GreB allows the resumption of elongation from the new 3'terminus. GreA releases sequences of 2 to 3 nucleotides. | DNA-directed RNA polymerase subunit omega; Promotes RNA polymerase assembly. Latches the N- and C- terminal regions of the beta' subunit thereby facilitating its interaction with the beta and alpha subunits. | 0.911 |
| greA | rpsO | Intca_0992 | Intca_2197 | Transcription elongation factor GreA; Necessary for efficient RNA polymerase transcription elongation past template-encoded arresting sites. The arresting sites in DNA have the property of trapping a certain fraction of elongating RNA polymerases that pass through, resulting in locked ternary complexes. Cleavage of the nascent transcript by cleavage factors such as GreA or GreB allows the resumption of elongation from the new 3'terminus. GreA releases sequences of 2 to 3 nucleotides. | SSU ribosomal protein S15P; Forms an intersubunit bridge (bridge B4) with the 23S rRNA of the 50S subunit in the ribosome. | 0.708 |
| mfd | greA | Intca_0928 | Intca_0992 | Transcription-repair coupling factor; Couples transcription and DNA repair by recognizing RNA polymerase (RNAP) stalled at DNA lesions. Mediates ATP-dependent release of RNAP and its truncated transcript from the DNA, and recruitment of nucleotide excision repair machinery to the damaged site; In the C-terminal section; belongs to the helicase family. RecG subfamily. | Transcription elongation factor GreA; Necessary for efficient RNA polymerase transcription elongation past template-encoded arresting sites. The arresting sites in DNA have the property of trapping a certain fraction of elongating RNA polymerases that pass through, resulting in locked ternary complexes. Cleavage of the nascent transcript by cleavage factors such as GreA or GreB allows the resumption of elongation from the new 3'terminus. GreA releases sequences of 2 to 3 nucleotides. | 0.653 |