node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
MAC_00048 | MAC_00451 | E9DRX5 | E9DS53 | RNA polymerase II subunit 3. | Transcription elongation factor SPT4; The SPT4-SPT5 complex mediates both activation and inhibition of transcription elongation, and plays a role in pre-mRNA processing. This complex seems to be important for the stability of the RNA polymerase II elongation machinery on the chromatin template but not for the inherent ability of this machinery to translocate down the gene. | 0.998 |
MAC_00048 | MAC_01379 | E9DRX5 | E9DUT1 | RNA polymerase II subunit 3. | DNA-directed RNA polymerases II 24 kDa polypeptide. | 0.999 |
MAC_00048 | MAC_02389 | E9DRX5 | E9DXP1 | RNA polymerase II subunit 3. | Transcription elongation factor SPT5; The SPT4-SPT5 complex mediates both activation and inhibition of transcription elongation, and plays a role in pre-mRNA processing. This complex seems to be important for the stability of the RNA polymerase II elongation machinery on the chromatin template but not for the inherent ability of this machinery to translocate down the gene. | 0.998 |
MAC_00048 | MAC_02463 | E9DRX5 | E9DXW5 | RNA polymerase II subunit 3. | DNA-directed RNA polymerase subunit beta; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. | 0.999 |
MAC_00048 | MAC_03334 | E9DRX5 | E9E0D6 | RNA polymerase II subunit 3. | DNA directed RNA polymerase II 15 kDa subunit, putative. | 0.999 |
MAC_00048 | MAC_04149 | E9DRX5 | E9E2Q1 | RNA polymerase II subunit 3. | Putative DNA-directed RNA polymerase II chain Rpb7. | 0.999 |
MAC_00048 | MAC_05288 | E9DRX5 | E9E5Z0 | RNA polymerase II subunit 3. | RNA polymerase Rpb4 family protein. | 0.999 |
MAC_00048 | MAC_05932 | E9DRX5 | E9E7T4 | RNA polymerase II subunit 3. | DNA-directed RNA polymerase II subunit RPB11. | 0.999 |
MAC_00048 | MAC_07185 | E9DRX5 | E9EBD7 | RNA polymerase II subunit 3. | DNA-directed RNA polymerases I. | 0.999 |
MAC_00048 | MAC_07408 | E9DRX5 | E9EC10 | RNA polymerase II subunit 3. | DNA-directed RNA polymerase subunit; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. | 0.999 |
MAC_00451 | MAC_00048 | E9DS53 | E9DRX5 | Transcription elongation factor SPT4; The SPT4-SPT5 complex mediates both activation and inhibition of transcription elongation, and plays a role in pre-mRNA processing. This complex seems to be important for the stability of the RNA polymerase II elongation machinery on the chromatin template but not for the inherent ability of this machinery to translocate down the gene. | RNA polymerase II subunit 3. | 0.998 |
MAC_00451 | MAC_01379 | E9DS53 | E9DUT1 | Transcription elongation factor SPT4; The SPT4-SPT5 complex mediates both activation and inhibition of transcription elongation, and plays a role in pre-mRNA processing. This complex seems to be important for the stability of the RNA polymerase II elongation machinery on the chromatin template but not for the inherent ability of this machinery to translocate down the gene. | DNA-directed RNA polymerases II 24 kDa polypeptide. | 0.996 |
MAC_00451 | MAC_02389 | E9DS53 | E9DXP1 | Transcription elongation factor SPT4; The SPT4-SPT5 complex mediates both activation and inhibition of transcription elongation, and plays a role in pre-mRNA processing. This complex seems to be important for the stability of the RNA polymerase II elongation machinery on the chromatin template but not for the inherent ability of this machinery to translocate down the gene. | Transcription elongation factor SPT5; The SPT4-SPT5 complex mediates both activation and inhibition of transcription elongation, and plays a role in pre-mRNA processing. This complex seems to be important for the stability of the RNA polymerase II elongation machinery on the chromatin template but not for the inherent ability of this machinery to translocate down the gene. | 0.999 |
MAC_00451 | MAC_02463 | E9DS53 | E9DXW5 | Transcription elongation factor SPT4; The SPT4-SPT5 complex mediates both activation and inhibition of transcription elongation, and plays a role in pre-mRNA processing. This complex seems to be important for the stability of the RNA polymerase II elongation machinery on the chromatin template but not for the inherent ability of this machinery to translocate down the gene. | DNA-directed RNA polymerase subunit beta; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. | 0.999 |
MAC_00451 | MAC_03334 | E9DS53 | E9E0D6 | Transcription elongation factor SPT4; The SPT4-SPT5 complex mediates both activation and inhibition of transcription elongation, and plays a role in pre-mRNA processing. This complex seems to be important for the stability of the RNA polymerase II elongation machinery on the chromatin template but not for the inherent ability of this machinery to translocate down the gene. | DNA directed RNA polymerase II 15 kDa subunit, putative. | 0.996 |
MAC_00451 | MAC_04149 | E9DS53 | E9E2Q1 | Transcription elongation factor SPT4; The SPT4-SPT5 complex mediates both activation and inhibition of transcription elongation, and plays a role in pre-mRNA processing. This complex seems to be important for the stability of the RNA polymerase II elongation machinery on the chromatin template but not for the inherent ability of this machinery to translocate down the gene. | Putative DNA-directed RNA polymerase II chain Rpb7. | 0.998 |
MAC_00451 | MAC_05288 | E9DS53 | E9E5Z0 | Transcription elongation factor SPT4; The SPT4-SPT5 complex mediates both activation and inhibition of transcription elongation, and plays a role in pre-mRNA processing. This complex seems to be important for the stability of the RNA polymerase II elongation machinery on the chromatin template but not for the inherent ability of this machinery to translocate down the gene. | RNA polymerase Rpb4 family protein. | 0.998 |
MAC_00451 | MAC_05932 | E9DS53 | E9E7T4 | Transcription elongation factor SPT4; The SPT4-SPT5 complex mediates both activation and inhibition of transcription elongation, and plays a role in pre-mRNA processing. This complex seems to be important for the stability of the RNA polymerase II elongation machinery on the chromatin template but not for the inherent ability of this machinery to translocate down the gene. | DNA-directed RNA polymerase II subunit RPB11. | 0.995 |
MAC_00451 | MAC_07185 | E9DS53 | E9EBD7 | Transcription elongation factor SPT4; The SPT4-SPT5 complex mediates both activation and inhibition of transcription elongation, and plays a role in pre-mRNA processing. This complex seems to be important for the stability of the RNA polymerase II elongation machinery on the chromatin template but not for the inherent ability of this machinery to translocate down the gene. | DNA-directed RNA polymerases I. | 0.995 |
MAC_00451 | MAC_07408 | E9DS53 | E9EC10 | Transcription elongation factor SPT4; The SPT4-SPT5 complex mediates both activation and inhibition of transcription elongation, and plays a role in pre-mRNA processing. This complex seems to be important for the stability of the RNA polymerase II elongation machinery on the chromatin template but not for the inherent ability of this machinery to translocate down the gene. | DNA-directed RNA polymerase subunit; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. | 0.998 |