STRINGSTRING
H6BU30_EXODN H6BU30_EXODN H6BU42_EXODN H6BU42_EXODN H6BU47_EXODN H6BU47_EXODN H6BU80_EXODN H6BU80_EXODN H6BU81_EXODN H6BU81_EXODN H6BU86_EXODN H6BU86_EXODN H6BUA7_EXODN H6BUA7_EXODN H6BUB4_EXODN H6BUB4_EXODN H6BUI9_EXODN H6BUI9_EXODN H6BUR0_EXODN H6BUR0_EXODN H6BUX9_EXODN H6BUX9_EXODN H6BUZ3_EXODN H6BUZ3_EXODN H6BV32_EXODN H6BV32_EXODN H6BVC1_EXODN H6BVC1_EXODN H6BVD7_EXODN H6BVD7_EXODN H6BVU0_EXODN H6BVU0_EXODN H6BVY8_EXODN H6BVY8_EXODN H6BVZ3_EXODN H6BVZ3_EXODN H6BW79_EXODN H6BW79_EXODN H6BW99_EXODN H6BW99_EXODN H6BWF8_EXODN H6BWF8_EXODN H6BWM8_EXODN H6BWM8_EXODN H6BWP3_EXODN H6BWP3_EXODN H6BWU3_EXODN H6BWU3_EXODN H6BWZ4_EXODN H6BWZ4_EXODN H6BXC8_EXODN H6BXC8_EXODN H6BXM8_EXODN H6BXM8_EXODN H6BXN4_EXODN H6BXN4_EXODN H6BXP9_EXODN H6BXP9_EXODN H6BXV8_EXODN H6BXV8_EXODN H6BY44_EXODN H6BY44_EXODN H6BY69_EXODN H6BY69_EXODN H6BY80_EXODN H6BY80_EXODN H6BYA2_EXODN H6BYA2_EXODN H6BYR8_EXODN H6BYR8_EXODN H6BYU8_EXODN H6BYU8_EXODN H6BZ22_EXODN H6BZ22_EXODN H6BZ25_EXODN H6BZ25_EXODN H6BZ32_EXODN H6BZ32_EXODN H6BZD6_EXODN H6BZD6_EXODN H6BZI2_EXODN H6BZI2_EXODN H6BZQ3_EXODN H6BZQ3_EXODN H6BZS6_EXODN H6BZS6_EXODN H6BZT9_EXODN H6BZT9_EXODN H6BZU5_EXODN H6BZU5_EXODN H6BZZ1_EXODN H6BZZ1_EXODN H6BZZ5_EXODN H6BZZ5_EXODN H6C075_EXODN H6C075_EXODN H6C091_EXODN H6C091_EXODN H6C0D0_EXODN H6C0D0_EXODN H6C0E3_EXODN H6C0E3_EXODN H6C0H1_EXODN H6C0H1_EXODN H6C0M7_EXODN H6C0M7_EXODN H6C0S4_EXODN H6C0S4_EXODN H6C0S8_EXODN H6C0S8_EXODN H6C0X5_EXODN H6C0X5_EXODN H6C149_EXODN H6C149_EXODN H6C1A7_EXODN H6C1A7_EXODN H6C1J0_EXODN H6C1J0_EXODN H6C1M5_EXODN H6C1M5_EXODN H6C1Q3_EXODN H6C1Q3_EXODN H6C1Y7_EXODN H6C1Y7_EXODN H6C273_EXODN H6C273_EXODN H6C274_EXODN H6C274_EXODN H6C288_EXODN H6C288_EXODN H6C2Q7_EXODN H6C2Q7_EXODN H6C2S2_EXODN H6C2S2_EXODN H6C2X3_EXODN H6C2X3_EXODN H6C334_EXODN H6C334_EXODN H6C3A2_EXODN H6C3A2_EXODN H6C3D2_EXODN H6C3D2_EXODN H6C3D5_EXODN H6C3D5_EXODN H6C3J6_EXODN H6C3J6_EXODN H6C3M5_EXODN H6C3M5_EXODN H6C3U3_EXODN H6C3U3_EXODN H6C428_EXODN H6C428_EXODN H6C453_EXODN H6C453_EXODN H6C4A4_EXODN H6C4A4_EXODN H6C4B3_EXODN H6C4B3_EXODN H6C4L8_EXODN H6C4L8_EXODN H6C4N5_EXODN H6C4N5_EXODN H6C4N8_EXODN H6C4N8_EXODN H6C542_EXODN H6C542_EXODN H6C4Y1_EXODN H6C4Y1_EXODN H6CC29_EXODN H6CC29_EXODN H6CBZ7_EXODN H6CBZ7_EXODN H6CBS8_EXODN H6CBS8_EXODN H6CBL3_EXODN H6CBL3_EXODN H6CBI6_EXODN H6CBI6_EXODN H6CB96_EXODN H6CB96_EXODN H6CB70_EXODN H6CB70_EXODN H6CB35_EXODN H6CB35_EXODN H6C9I9_EXODN H6C9I9_EXODN H6C9F4_EXODN H6C9F4_EXODN H6C9B6_EXODN H6C9B6_EXODN H6C9B4_EXODN H6C9B4_EXODN H6C928_EXODN H6C928_EXODN H6C905_EXODN H6C905_EXODN H6C8T4_EXODN H6C8T4_EXODN H6C8T3_EXODN H6C8T3_EXODN H6C8M7_EXODN H6C8M7_EXODN H6C815_EXODN H6C815_EXODN H6C7X6_EXODN H6C7X6_EXODN H6C7Q4_EXODN H6C7Q4_EXODN H6C7Q1_EXODN H6C7Q1_EXODN H6C7M5_EXODN H6C7M5_EXODN H6C7I5_EXODN H6C7I5_EXODN H6C7G9_EXODN H6C7G9_EXODN H6C7C4_EXODN H6C7C4_EXODN H6C7B5_EXODN H6C7B5_EXODN H6C7A0_EXODN H6C7A0_EXODN H6C799_EXODN H6C799_EXODN H6C720_EXODN H6C720_EXODN H6C719_EXODN H6C719_EXODN H6C6X4_EXODN H6C6X4_EXODN H6C6X3_EXODN H6C6X3_EXODN H6C6U8_EXODN H6C6U8_EXODN H6C6M3_EXODN H6C6M3_EXODN H6C6B3_EXODN H6C6B3_EXODN H6C5Z8_EXODN H6C5Z8_EXODN H6C5N4_EXODN H6C5N4_EXODN H6C5D6_EXODN H6C5D6_EXODN H6C585_EXODN H6C585_EXODN H6C548_EXODN H6C548_EXODN H6BK54_EXODN H6BK54_EXODN H6BK78_EXODN H6BK78_EXODN H6BKF4_EXODN H6BKF4_EXODN H6BKS5_EXODN H6BKS5_EXODN H6BKV2_EXODN H6BKV2_EXODN H6BKV4_EXODN H6BKV4_EXODN H6BKX4_EXODN H6BKX4_EXODN H6BL75_EXODN H6BL75_EXODN H6BLE9_EXODN H6BLE9_EXODN H6BLG3_EXODN H6BLG3_EXODN H6BLS6_EXODN H6BLS6_EXODN H6BM33_EXODN H6BM33_EXODN H6BMD3_EXODN H6BMD3_EXODN H6BMI7_EXODN H6BMI7_EXODN H6BMI8_EXODN H6BMI8_EXODN H6BMT1_EXODN H6BMT1_EXODN H6BMW8_EXODN H6BMW8_EXODN H6BNR8_EXODN H6BNR8_EXODN H6BNV7_EXODN H6BNV7_EXODN H6BP15_EXODN H6BP15_EXODN H6BP28_EXODN H6BP28_EXODN H6BPD0_EXODN H6BPD0_EXODN H6BPM6_EXODN H6BPM6_EXODN H6BPM7_EXODN H6BPM7_EXODN H6BPS8_EXODN H6BPS8_EXODN H6BPU1_EXODN H6BPU1_EXODN H6BPU4_EXODN H6BPU4_EXODN H6BPV0_EXODN H6BPV0_EXODN H6BPX3_EXODN H6BPX3_EXODN H6BPX7_EXODN H6BPX7_EXODN H6BPY7_EXODN H6BPY7_EXODN H6BQ27_EXODN H6BQ27_EXODN H6BQ42_EXODN H6BQ42_EXODN H6BQ85_EXODN H6BQ85_EXODN H6BQC4_EXODN H6BQC4_EXODN H6BQK1_EXODN H6BQK1_EXODN H6BQN7_EXODN H6BQN7_EXODN H6BQN9_EXODN H6BQN9_EXODN H6BQS3_EXODN H6BQS3_EXODN H6BQW5_EXODN H6BQW5_EXODN H6BQZ4_EXODN H6BQZ4_EXODN H6BR55_EXODN H6BR55_EXODN H6BR56_EXODN H6BR56_EXODN H6BRC5_EXODN H6BRC5_EXODN H6BRF6_EXODN H6BRF6_EXODN H6BRR5_EXODN H6BRR5_EXODN H6BRR6_EXODN H6BRR6_EXODN H6BS16_EXODN H6BS16_EXODN H6BS90_EXODN H6BS90_EXODN H6BSG0_EXODN H6BSG0_EXODN H6BSI4_EXODN H6BSI4_EXODN H6BSL4_EXODN H6BSL4_EXODN H6BSV9_EXODN H6BSV9_EXODN H6BT04_EXODN H6BT04_EXODN H6BT18_EXODN H6BT18_EXODN H6BT19_EXODN H6BT19_EXODN H6BT29_EXODN H6BT29_EXODN H6BT87_EXODN H6BT87_EXODN H6BTA3_EXODN H6BTA3_EXODN H6BTB0_EXODN H6BTB0_EXODN H6BTC3_EXODN H6BTC3_EXODN H6BTJ0_EXODN H6BTJ0_EXODN H6BTL1_EXODN H6BTL1_EXODN H6BTQ1_EXODN H6BTQ1_EXODN H6BU18_EXODN H6BU18_EXODN
Nodes:
Network nodes represent proteins
splice isoforms or post-translational modifications are collapsed, i.e. each node represents all the proteins produced by a single, protein-coding gene locus.
Node Color
colored nodes:
query proteins and first shell of interactors
white nodes:
second shell of interactors
Node Content
empty nodes:
proteins of unknown 3D structure
filled nodes:
a 3D structure is known or predicted
Edges:
Edges represent protein-protein associations
associations are meant to be specific and meaningful, i.e. proteins jointly contribute to a shared function; this does not necessarily mean they are physically binding to each other.
Known Interactions
from curated databases
experimentally determined
Predicted Interactions
gene neighborhood
gene fusions
gene co-occurrence
Others
textmining
co-expression
protein homology
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H6BU30_EXODNDihydrodipicolinate synthetase; Belongs to the DapA family. (314 aa)
H6BU42_EXODNRRM domain-containing protein. (833 aa)
H6BU47_EXODNRtt106 domain-containing protein. (579 aa)
H6BU80_EXODNZn(2)-C6 fungal-type domain-containing protein. (620 aa)
H6BU81_EXODNZn(2)-C6 fungal-type domain-containing protein. (693 aa)
H6BU86_EXODNProtein HIR; Required for replication-independent chromatin assembly and for the periodic repression of histone gene transcription during the cell cycle; Belongs to the WD repeat HIR1 family. (1090 aa)
H6BUA7_EXODNRNA polymerase III subunit C3; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. (569 aa)
H6BUB4_EXODNUncharacterized protein. (627 aa)
H6BUI9_EXODNUncharacterized protein. (976 aa)
H6BUR0_EXODNZn(2)-C6 fungal-type domain-containing protein. (750 aa)
H6BUX9_EXODNZn(2)-C6 fungal-type domain-containing protein. (634 aa)
H6BUZ3_EXODNUncharacterized protein. (688 aa)
H6BV32_EXODNTranscription elongation factor Spt6; Plays a role in maintenance of chromatin structure during RNA polymerase II transcription elongation thereby repressing transcription initiation from cryptic promoters. Mediates the reassembly of nucleosomes onto the promoters of at least a selected set of genes during repression; the nucleosome reassembly is essential for transcriptional repression; Belongs to the SPT6 family. (1422 aa)
H6BVC1_EXODNCasein kinase II subunit beta; Plays a complex role in regulating the basal catalytic activity of the alpha subunit; Belongs to the casein kinase 2 subunit beta family. (462 aa)
H6BVD7_EXODNDNA-directed RNA Polymerase II subunit K. (78 aa)
H6BVU0_EXODNTAFII28 domain-containing protein. (349 aa)
H6BVY8_EXODNUncharacterized protein. (456 aa)
H6BVZ3_EXODNTranscription initiation factor TFIIF beta subunit. (380 aa)
H6BW79_EXODNDNA excision repair protein ERCC-3. (852 aa)
H6BW99_EXODNUncharacterized protein. (1032 aa)
H6BWF8_EXODNZn(2)-C6 fungal-type domain-containing protein. (237 aa)
H6BWM8_EXODNUncharacterized protein. (786 aa)
H6BWP3_EXODNZn(2)-C6 fungal-type domain-containing protein. (695 aa)
H6BWU3_EXODNTranscription initiation factor TFIID subunit D4. (912 aa)
H6BWZ4_EXODNMitogen-activated protein kinase kinase kinase. (865 aa)
H6BXC8_EXODNZn(2)-C6 fungal-type domain-containing protein. (712 aa)
H6BXM8_EXODNZn(2)-C6 fungal-type domain-containing protein. (1117 aa)
H6BXN4_EXODNTranscriptional regulatory protein GAL4. (892 aa)
H6BXP9_EXODNUncharacterized protein. (303 aa)
H6BXV8_EXODNDihydrodipicolinate synthetase. (331 aa)
H6BY44_EXODNNon-specific serine/threonine protein kinase. (828 aa)
H6BY69_EXODNTranscription elongation factor 1 homolog; Transcription elongation factor implicated in the maintenance of proper chromatin structure in actively transcribed regions. Belongs to the ELOF1 family. (125 aa)
H6BY80_EXODNDNA-directed RNA polymerase III subunit C19. (129 aa)
H6BYA2_EXODNEukaryotic peptide chain release factor subunit 1. (435 aa)
H6BYR8_EXODNUncharacterized protein. (337 aa)
H6BYU8_EXODNTranscription initiation factor TFIID subunit D11. (211 aa)
H6BZ22_EXODNRNase_PH domain-containing protein. (259 aa)
H6BZ25_EXODNEndoribonuclease ysh1. (868 aa)
H6BZ32_EXODNDNA-directed RNA polymerase III subunit C31. (320 aa)
H6BZD6_EXODNSenataxin. (2264 aa)
H6BZI2_EXODNUncharacterized protein. (1241 aa)
H6BZQ3_EXODNHistone H3. (151 aa)
H6BZS6_EXODNFungal_trans domain-containing protein. (430 aa)
H6BZT9_EXODNMitogen-activated protein kinase kinase kinase. (755 aa)
H6BZU5_EXODNDihydrodipicolinate synthetase. (390 aa)
H6BZZ1_EXODNAdenosinetriphosphatase. (1690 aa)
H6BZZ5_EXODNDNA-directed RNA polymerase I subunit A49. (487 aa)
H6C075_EXODNZn(2)-C6 fungal-type domain-containing protein. (664 aa)
H6C091_EXODNProline utilization trans-activator. (632 aa)
H6C0D0_EXODNDNA-directed RNA polymerase I, II, and III subunit RPABC5. (72 aa)
H6C0E3_EXODNDNA-directed RNA polymerase III subunit C34. (453 aa)
H6C0H1_EXODNCBFD_NFYB_HMF domain-containing protein. (317 aa)
H6C0M7_EXODNDNA-directed RNA polymerase I subunit A43. (462 aa)
H6C0S4_EXODNDNA-directed RNA polymerase subunit beta; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. (1263 aa)
H6C0S8_EXODNDNA-directed RNA polymerase subunit; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. (1762 aa)
H6C0X5_EXODNUncharacterized protein. (302 aa)
H6C149_EXODNTranscription initiation factor TFIIA large subunit. (382 aa)
H6C1A7_EXODNUncharacterized protein. (339 aa)
H6C1J0_EXODNUncharacterized protein. (583 aa)
H6C1M5_EXODNHMG box domain-containing protein. (294 aa)
H6C1Q3_EXODNTranscription initiation factor TFIIE alpha subunit. (483 aa)
H6C1Y7_EXODNPhospholipase A2. (462 aa)
H6C273_EXODNTAF8_C domain-containing protein. (359 aa)
H6C274_EXODNDNA-directed RNA polymerase subunit; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. (1581 aa)
H6C288_EXODNDNA (Cytosine-5-)-methyltransferase; Belongs to the class I-like SAM-binding methyltransferase superfamily. C5-methyltransferase family. (1254 aa)
H6C2Q7_EXODNRick_17kDa_Anti domain-containing protein. (267 aa)
H6C2S2_EXODNAdenosinetriphosphatase. (1120 aa)
H6C2X3_EXODNDihydrodipicolinate synthase; Belongs to the DapA family. (296 aa)
H6C334_EXODNHTH myb-type domain-containing protein. (859 aa)
H6C3A2_EXODNUncharacterized protein. (919 aa)
H6C3D2_EXODNMitogen-activated protein kinase kinase kinase. (682 aa)
H6C3D5_EXODNDNA-directed RNA polymerase subunit beta; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. (1219 aa)
H6C3J6_EXODNBTB/POZ domain-containing protein 13. (992 aa)
H6C3M5_EXODNHistone H4; Core component of nucleosome. Nucleosomes wrap and compact DNA into chromatin, limiting DNA accessibility to the cellular machineries which require DNA as a template. Histones thereby play a central role in transcription regulation, DNA repair, DNA replication and chromosomal stability. DNA accessibility is regulated via a complex set of post-translational modifications of histones, also called histone code, and nucleosome remodeling. (103 aa)
H6C3U3_EXODNUncharacterized protein. (419 aa)
H6C428_EXODNUncharacterized protein. (996 aa)
H6C453_EXODNTranscriptional regulatory protein GAL4. (795 aa)
H6C4A4_EXODNUncharacterized protein. (219 aa)
H6C4B3_EXODNMediator of RNA polymerase II transcription subunit 1; Component of the Mediator complex, a coactivator involved in the regulated transcription of nearly all RNA polymerase II-dependent genes. Mediator functions as a bridge to convey information from gene- specific regulatory proteins to the basal RNA polymerase II transcription machinery. Mediator is recruited to promoters by direct interactions with regulatory proteins and serves as a scaffold for the assembly of a functional preinitiation complex with RNA polymerase II and the general transcription factors. (697 aa)
H6C4L8_EXODNMyb-like DNA-binding protein REB1. (1402 aa)
H6C4N5_EXODNTranscription initiation factor TFIIE beta subunit. (232 aa)
H6C4N8_EXODNUncharacterized protein. (582 aa)
H6C542_EXODNZn(2)-C6 fungal-type domain-containing protein. (1039 aa)
H6C4Y1_EXODNHistone-lysine N-methyltransferase ASH1L. (894 aa)
H6CC29_EXODNUncharacterized protein. (783 aa)
H6CBZ7_EXODNUncharacterized protein. (659 aa)
H6CBS8_EXODNDihydrodipicolinate synthetase. (124 aa)
H6CBL3_EXODNTranscription initiation factor TFIIB. (977 aa)
H6CBI6_EXODNTranscription initiation factor TFIIH subunit H1. (619 aa)
H6CB96_EXODNMitogen-activated protein kinase kinase kinase. (759 aa)
H6CB70_EXODNZn(2)-C6 fungal-type domain-containing protein. (697 aa)
H6CB35_EXODNTranscription initiation factor TFIIF alpha subunit. (715 aa)
H6C9I9_EXODNTranscription initiation factor TFIID subunit D1. (1123 aa)
H6C9F4_EXODNMitogen-activated protein kinase kinase kinase. (779 aa)
H6C9B6_EXODNZn(2)-C6 fungal-type domain-containing protein. (820 aa)
H6C9B4_EXODNZn(2)-C6 fungal-type domain-containing protein. (683 aa)
H6C928_EXODNCBFD_NFYB_HMF domain-containing protein. (163 aa)
H6C905_EXODNDihydrodipicolinate synthetase; Belongs to the DapA family. (324 aa)
H6C8T4_EXODNUncharacterized protein. (150 aa)
H6C8T3_EXODNFungal_trans domain-containing protein. (433 aa)
H6C8M7_EXODNBeta-lactamase. (421 aa)
H6C815_EXODNRAI1 domain-containing protein. (403 aa)
H6C7X6_EXODNUncharacterized protein. (2339 aa)
H6C7Q4_EXODNTranscription initiation factor TFIIB. (365 aa)
H6C7Q1_EXODNTranscription initiation factor TFIID subunit D10. (572 aa)
H6C7M5_EXODNDNA repair helicase rad15. (819 aa)
H6C7I5_EXODNDNA-directed RNA polymerase II subunit D. (152 aa)
H6C7G9_EXODNDNA-directed RNA polymerase III subunit C25. (155 aa)
H6C7C4_EXODNDihydrodipicolinate synthetase; Belongs to the DapA family. (318 aa)
H6C7B5_EXODNAcyl_transf_3 domain-containing protein. (469 aa)
H6C7A0_EXODNDNA-directed RNA polymerase II subunit G. (169 aa)
H6C799_EXODNUncharacterized protein. (561 aa)
H6C720_EXODNTranscription initiation factor TFIID subunit D6. (773 aa)
H6C719_EXODNBTP domain-containing protein. (231 aa)
H6C6X4_EXODNUncharacterized protein. (357 aa)
H6C6X3_EXODNUncharacterized protein. (317 aa)
H6C6U8_EXODNAlpha-L-rhamnosidase. (681 aa)
H6C6M3_EXODNDNA-directed RNA polymerase II subunit C. (335 aa)
H6C6B3_EXODNTranscription initiation factor TFIID subunit 10; Functions as a component of the DNA-binding general transcription factor complex TFIID and the transcription regulatory histone acetylation (HAT) complexes SAGA and SLIK. Binding of TFIID to a promoter (with or without TATA element) is the initial step in preinitiation complex (PIC) formation. TFIID plays a key role in the regulation of gene expression by RNA polymerase II through different activities such as transcription activator interaction, core promoter recognition and selectivity, TFIIA and TFIIB interaction, chromatin modificati [...] (272 aa)
H6C5Z8_EXODNCyclin H; Belongs to the cyclin family. (381 aa)
H6C5N4_EXODNCDC73_C domain-containing protein. (442 aa)
H6C5D6_EXODNTranscription initiation factor TFIID subunit D2. (1299 aa)
H6C585_EXODNUncharacterized protein. (630 aa)
H6C548_EXODNTranscription elongation factor S-II. (306 aa)
H6BK54_EXODNTranscriptional regulatory protein GAL4. (1007 aa)
H6BK78_EXODNZn(2)-C6 fungal-type domain-containing protein. (1196 aa)
H6BKF4_EXODNUncharacterized protein. (555 aa)
H6BKS5_EXODNDNA-directed RNA polymerase subunit; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. Belongs to the archaeal rpoM/eukaryotic RPA12/RPB9/RPC11 RNA polymerase family. (123 aa)
H6BKV2_EXODNUncharacterized protein. (425 aa)
H6BKV4_EXODNDNA-directed RNA polymerase; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. Belongs to the phage and mitochondrial RNA polymerase family. (1425 aa)
H6BKX4_EXODNZn(2)-C6 fungal-type domain-containing protein. (576 aa)
H6BL75_EXODNSWIB domain-containing protein. (283 aa)
H6BLE9_EXODNZn(2)-C6 fungal-type domain-containing protein. (1024 aa)
H6BLG3_EXODNTranscription initiation factor TFIIH subunit H3. (455 aa)
H6BLS6_EXODNDNA-directed RNA polymerases I, II, and III subunit RPABC3; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. Common component of RNA polymerases I, II and III which synthesize ribosomal RNA precursors, mRNA precursors and many functional non- coding RNAs, and small RNAs, such as 5S rRNA and tRNAs, respectively. (143 aa)
H6BM33_EXODNUncharacterized protein. (386 aa)
H6BMD3_EXODNUncharacterized protein. (555 aa)
H6BMI7_EXODNDNA-directed RNA polymerase II subunit J. (269 aa)
H6BMI8_EXODNOxidoreductase 2-nitropropane dioxygenase. (353 aa)
H6BMT1_EXODNFungal_trans domain-containing protein. (519 aa)
H6BMW8_EXODNB-block_TFIIIC domain-containing protein. (2078 aa)
H6BNR8_EXODNUncharacterized protein. (709 aa)
H6BNV7_EXODNCyclin-dependent kinase 7; Belongs to the protein kinase superfamily. (423 aa)
H6BP15_EXODNMitogen-activated protein kinase kinase kinase. (780 aa)
H6BP28_EXODNDUF4211 domain-containing protein. (763 aa)
H6BPD0_EXODNTranscription initiation factor TFIID subunit D7. (270 aa)
H6BPM6_EXODNHistone H3; Belongs to the histone H3 family. (136 aa)
H6BPM7_EXODNHistone H4; Core component of nucleosome. Nucleosomes wrap and compact DNA into chromatin, limiting DNA accessibility to the cellular machineries which require DNA as a template. Histones thereby play a central role in transcription regulation, DNA repair, DNA replication and chromosomal stability. DNA accessibility is regulated via a complex set of post-translational modifications of histones, also called histone code, and nucleosome remodeling. (103 aa)
H6BPS8_EXODNUncharacterized protein. (140 aa)
H6BPU1_EXODNZn(2)-C6 fungal-type domain-containing protein. (827 aa)
H6BPU4_EXODNUncharacterized protein. (608 aa)
H6BPV0_EXODNGeneral transcription and DNA repair factor IIH; Component of the general transcription and DNA repair factor IIH (TFIIH) core complex, which is involved in general and transcription-coupled nucleotide excision repair (NER) of damaged DNA and, when complexed to TFIIK, in RNA transcription by RNA polymerase II; Belongs to the GTF2H2 family. (464 aa)
H6BPX3_EXODNDNA-directed RNA Polymerase III subunit C5. (373 aa)
H6BPX7_EXODNDNA-directed RNA polymerase subunit; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. (1744 aa)
H6BPY7_EXODNUncharacterized protein. (565 aa)
H6BQ27_EXODNUncharacterized protein. (586 aa)
H6BQ42_EXODNDNA-directed RNA polymerase subunit; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. Belongs to the archaeal rpoM/eukaryotic RPA12/RPB9/RPC11 RNA polymerase family. (117 aa)
H6BQ85_EXODNZn(2)-C6 fungal-type domain-containing protein. (872 aa)
H6BQC4_EXODNMyb_DNA-bind_7 domain-containing protein. (788 aa)
H6BQK1_EXODNUncharacterized protein. (612 aa)
H6BQN7_EXODNUncharacterized protein. (511 aa)
H6BQN9_EXODNTranscriptional regulatory protein AMDR. (696 aa)
H6BQS3_EXODNFungal_trans domain-containing protein. (628 aa)
H6BQW5_EXODNDNA-directed RNA polymerase II subunit E. (238 aa)
H6BQZ4_EXODNDNA polymerase phi subunit. (1058 aa)
H6BR55_EXODNGeneral transcription factor IIIA. (575 aa)
H6BR56_EXODNDNA-directed RNA Polymerase II subunit F. (152 aa)
H6BRC5_EXODNAdenosinetriphosphatase. (1904 aa)
H6BRF6_EXODNUncharacterized protein. (337 aa)
H6BRR5_EXODNUncharacterized protein. (364 aa)
H6BRR6_EXODNTranscription initiation factor IIA subunit 2; TFIIA is a component of the transcription machinery of RNA polymerase II and plays an important role in transcriptional activation; Belongs to the TFIIA subunit 2 family. (111 aa)
H6BS16_EXODNUncharacterized protein. (691 aa)
H6BS90_EXODNDNA-directed RNA polymerase subunit beta; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. (1225 aa)
H6BSG0_EXODNCdc2-like kinase, arginine/serine-rich. (679 aa)
H6BSI4_EXODNTranscription initiation factor TFIID subunit D5. (451 aa)
H6BSL4_EXODNUncharacterized protein. (1358 aa)
H6BSV9_EXODNMitogen-activated protein kinase kinase kinase. (761 aa)
H6BT04_EXODNTranscriptional regulatory protein CAT8. (861 aa)
H6BT18_EXODNUncharacterized protein. (226 aa)
H6BT19_EXODNTranscription initiation protein SPT3. (321 aa)
H6BT29_EXODNRibonuclease III. (296 aa)
H6BT87_EXODNTATA-box-binding protein. (268 aa)
H6BTA3_EXODNUncharacterized protein. (510 aa)
H6BTB0_EXODNZn(2)-C6 fungal-type domain-containing protein. (1090 aa)
H6BTC3_EXODN5'-3' exoribonuclease; Possesses 5'->3' exoribonuclease activity. May promote termination of transcription by RNA polymerase II. (1075 aa)
H6BTJ0_EXODNZn(2)-C6 fungal-type domain-containing protein. (717 aa)
H6BTL1_EXODNPlus3 domain-containing protein. (608 aa)
H6BTQ1_EXODNFungal_trans domain-containing protein. (750 aa)
H6BU18_EXODNFungal_trans domain-containing protein. (749 aa)
Your Current Organism:
Exophiala dermatitidis
NCBI taxonomy Id: 858893
Other names: E. dermatitidis NIH/UT8656, Exophiala dermatitidis NIH 8656, Exophiala dermatitidis NIH/UT8656, Wangiella dermatitidis NIH 8656
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