STRINGSTRING
H6BKA8_EXODN H6BKA8_EXODN H6BKB7_EXODN H6BKB7_EXODN H6BKE9_EXODN H6BKE9_EXODN H6BKM8_EXODN H6BKM8_EXODN H6BKN3_EXODN H6BKN3_EXODN H6BKS7_EXODN H6BKS7_EXODN LSM3 LSM3 H6BKV9_EXODN H6BKV9_EXODN H6BKX9_EXODN H6BKX9_EXODN H6BKZ5_EXODN H6BKZ5_EXODN H6BL39_EXODN H6BL39_EXODN H6BL70_EXODN H6BL70_EXODN H6BLC3_EXODN H6BLC3_EXODN H6BLF8_EXODN H6BLF8_EXODN H6BLP4_EXODN H6BLP4_EXODN H6BLQ7_EXODN H6BLQ7_EXODN H6BLQ9_EXODN H6BLQ9_EXODN H6BM24_EXODN H6BM24_EXODN H6BM57_EXODN H6BM57_EXODN H6BM62_EXODN H6BM62_EXODN H6BM65_EXODN H6BM65_EXODN LSM5 LSM5 H6BMN7_EXODN H6BMN7_EXODN H6BMP9_EXODN H6BMP9_EXODN H6BMQ7_EXODN H6BMQ7_EXODN H6BMQ9_EXODN H6BMQ9_EXODN H6BMT6_EXODN H6BMT6_EXODN CLP1 CLP1 H6BN01_EXODN H6BN01_EXODN H6BN91_EXODN H6BN91_EXODN H6BN93_EXODN H6BN93_EXODN H6BNJ0_EXODN H6BNJ0_EXODN H6BNJ2_EXODN H6BNJ2_EXODN H6BNK6_EXODN H6BNK6_EXODN H6BNK9_EXODN H6BNK9_EXODN H6BNR9_EXODN H6BNR9_EXODN H6BNU0_EXODN H6BNU0_EXODN H6BNV4_EXODN H6BNV4_EXODN H6BNV7_EXODN H6BNV7_EXODN H6BNX8_EXODN H6BNX8_EXODN H6BPK6_EXODN H6BPK6_EXODN H6BPS3_EXODN H6BPS3_EXODN H6BPX8_EXODN H6BPX8_EXODN H6BQ23_EXODN H6BQ23_EXODN H6BQ52_EXODN H6BQ52_EXODN H6BQ70_EXODN H6BQ70_EXODN H6BQ72_EXODN H6BQ72_EXODN H6BQA6_EXODN H6BQA6_EXODN H6BQL1_EXODN H6BQL1_EXODN H6BQN2_EXODN H6BQN2_EXODN H6BQN7_EXODN H6BQN7_EXODN H6BQR3_EXODN H6BQR3_EXODN H6BR15_EXODN H6BR15_EXODN H6BR18_EXODN H6BR18_EXODN H6BRF2_EXODN H6BRF2_EXODN H6BRH2_EXODN H6BRH2_EXODN H6BRI7_EXODN H6BRI7_EXODN H6BRM2_EXODN H6BRM2_EXODN H6BRV0_EXODN H6BRV0_EXODN H6BRV3_EXODN H6BRV3_EXODN H6BS10_EXODN H6BS10_EXODN H6BS57_EXODN H6BS57_EXODN H6BSG0_EXODN H6BSG0_EXODN H6BSH8_EXODN H6BSH8_EXODN H6BSK9_EXODN H6BSK9_EXODN H6BSN4_EXODN H6BSN4_EXODN H6BST7_EXODN H6BST7_EXODN LSM1 LSM1 H6BSY0_EXODN H6BSY0_EXODN H6BT22_EXODN H6BT22_EXODN H6BT33_EXODN H6BT33_EXODN H6BTC3_EXODN H6BTC3_EXODN H6BTE7_EXODN H6BTE7_EXODN H6BTH5_EXODN H6BTH5_EXODN H6BTL1_EXODN H6BTL1_EXODN H6BTZ0_EXODN H6BTZ0_EXODN H6BU33_EXODN H6BU33_EXODN H6BU48_EXODN H6BU48_EXODN LSM8 LSM8 H6BUZ3_EXODN H6BUZ3_EXODN H6BV26_EXODN H6BV26_EXODN H6BVD3_EXODN H6BVD3_EXODN H6BVF1_EXODN H6BVF1_EXODN H6BVI0_EXODN H6BVI0_EXODN H6BVL0_EXODN H6BVL0_EXODN H6BW04_EXODN H6BW04_EXODN H6BW54_EXODN H6BW54_EXODN H6BW89_EXODN H6BW89_EXODN H6BW91_EXODN H6BW91_EXODN H6BWA2_EXODN H6BWA2_EXODN H6BWM9_EXODN H6BWM9_EXODN H6BWY9_EXODN H6BWY9_EXODN H6BWZ1_EXODN H6BWZ1_EXODN H6BX01_EXODN H6BX01_EXODN H6BX13_EXODN H6BX13_EXODN H6BX90_EXODN H6BX90_EXODN H6BXC0_EXODN H6BXC0_EXODN H6BXH4_EXODN H6BXH4_EXODN H6BXI5_EXODN H6BXI5_EXODN H6BXU9_EXODN H6BXU9_EXODN H6BXV0_EXODN H6BXV0_EXODN H6BY98_EXODN H6BY98_EXODN H6BYB1_EXODN H6BYB1_EXODN H6BYI9_EXODN H6BYI9_EXODN H6BYJ0_EXODN H6BYJ0_EXODN H6BYJ6_EXODN H6BYJ6_EXODN H6BYS5_EXODN H6BYS5_EXODN H6BYU4_EXODN H6BYU4_EXODN H6BYV1_EXODN H6BYV1_EXODN H6BYV4_EXODN H6BYV4_EXODN H6BYX3_EXODN H6BYX3_EXODN H6BYX9_EXODN H6BYX9_EXODN H6CBZ7_EXODN H6CBZ7_EXODN H6CBM7_EXODN H6CBM7_EXODN H6CBL5_EXODN H6CBL5_EXODN H6CBG7_EXODN H6CBG7_EXODN H6CBA0_EXODN H6CBA0_EXODN H6CB84_EXODN H6CB84_EXODN H6CB29_EXODN H6CB29_EXODN H6CB07_EXODN H6CB07_EXODN H6CAZ4_EXODN H6CAZ4_EXODN H6CAW8_EXODN H6CAW8_EXODN H6CAU4_EXODN H6CAU4_EXODN H6CAQ1_EXODN H6CAQ1_EXODN H6CAI1_EXODN H6CAI1_EXODN H6CAH3_EXODN H6CAH3_EXODN H6CAG9_EXODN H6CAG9_EXODN H6CAF7_EXODN H6CAF7_EXODN H6CAD8_EXODN H6CAD8_EXODN PAN2 PAN2 H6CAC3_EXODN H6CAC3_EXODN H6CAA1_EXODN H6CAA1_EXODN H6CA91_EXODN H6CA91_EXODN H6CA65_EXODN H6CA65_EXODN LSM4 LSM4 H6C9C8_EXODN H6C9C8_EXODN H6C972_EXODN H6C972_EXODN H6C970_EXODN H6C970_EXODN H6C961_EXODN H6C961_EXODN H6C8Z2_EXODN H6C8Z2_EXODN H6C8X8_EXODN H6C8X8_EXODN H6C8W5_EXODN H6C8W5_EXODN H6C8T9_EXODN H6C8T9_EXODN H6C878_EXODN H6C878_EXODN H6C852_EXODN H6C852_EXODN H6C843_EXODN H6C843_EXODN H6C815_EXODN H6C815_EXODN H6C813_EXODN H6C813_EXODN H6C7Z1_EXODN H6C7Z1_EXODN H6C7Y5_EXODN H6C7Y5_EXODN H6C7X6_EXODN H6C7X6_EXODN H6C7I5_EXODN H6C7I5_EXODN H6C7E7_EXODN H6C7E7_EXODN H6C7E0_EXODN H6C7E0_EXODN H6C7B8_EXODN H6C7B8_EXODN H6C7B7_EXODN H6C7B7_EXODN H6C776_EXODN H6C776_EXODN H6C710_EXODN H6C710_EXODN H6C6X3_EXODN H6C6X3_EXODN H6C6M6_EXODN H6C6M6_EXODN H6C6G1_EXODN H6C6G1_EXODN H6C697_EXODN H6C697_EXODN H6C638_EXODN H6C638_EXODN H6C619_EXODN H6C619_EXODN H6C615_EXODN H6C615_EXODN H6C604_EXODN H6C604_EXODN H6C602_EXODN H6C602_EXODN H6C5V2_EXODN H6C5V2_EXODN H6C5R8_EXODN H6C5R8_EXODN H6C5N4_EXODN H6C5N4_EXODN H6C5F6_EXODN H6C5F6_EXODN H6C5E7_EXODN H6C5E7_EXODN H6C5D5_EXODN H6C5D5_EXODN H6C5A7_EXODN H6C5A7_EXODN H6C562_EXODN H6C562_EXODN H6C551_EXODN H6C551_EXODN H6C518_EXODN H6C518_EXODN H6C4T7_EXODN H6C4T7_EXODN H6C4T4_EXODN H6C4T4_EXODN H6C475_EXODN H6C475_EXODN H6C455_EXODN H6C455_EXODN H6C3Y0_EXODN H6C3Y0_EXODN H6C3X7_EXODN H6C3X7_EXODN H6C3T0_EXODN H6C3T0_EXODN H6C3L5_EXODN H6C3L5_EXODN H6C3K8_EXODN H6C3K8_EXODN H6C3G8_EXODN H6C3G8_EXODN H6C3C5_EXODN H6C3C5_EXODN H6C3C2_EXODN H6C3C2_EXODN H6C3A3_EXODN H6C3A3_EXODN H6C366_EXODN H6C366_EXODN H6C2Y1_EXODN H6C2Y1_EXODN H6C2U5_EXODN H6C2U5_EXODN H6C2R8_EXODN H6C2R8_EXODN H6C2R1_EXODN H6C2R1_EXODN H6C2P0_EXODN H6C2P0_EXODN H6C2D9_EXODN H6C2D9_EXODN H6C2C0_EXODN H6C2C0_EXODN H6C2A1_EXODN H6C2A1_EXODN H6C285_EXODN H6C285_EXODN H6C233_EXODN H6C233_EXODN H6C1I5_EXODN H6C1I5_EXODN H6C1D8_EXODN H6C1D8_EXODN H6C1C0_EXODN H6C1C0_EXODN H6C169_EXODN H6C169_EXODN H6C143_EXODN H6C143_EXODN H6C116_EXODN H6C116_EXODN H6C0Z4_EXODN H6C0Z4_EXODN H6C0S5_EXODN H6C0S5_EXODN H6C0S0_EXODN H6C0S0_EXODN H6C0H9_EXODN H6C0H9_EXODN H6C0H3_EXODN H6C0H3_EXODN PAN3 PAN3 H6C0D7_EXODN H6C0D7_EXODN H6C0C5_EXODN H6C0C5_EXODN H6BZY8_EXODN H6BZY8_EXODN H6BZY1_EXODN H6BZY1_EXODN H6BZX6_EXODN H6BZX6_EXODN H6BZI3_EXODN H6BZI3_EXODN H6BZE6_EXODN H6BZE6_EXODN H6BZ75_EXODN H6BZ75_EXODN H6BZ25_EXODN H6BZ25_EXODN H6BZ14_EXODN H6BZ14_EXODN H6BZ10_EXODN H6BZ10_EXODN H6BJT7_EXODN H6BJT7_EXODN H6BJV1_EXODN H6BJV1_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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H6BKA8_EXODNU2 small nuclear ribonucleoprotein B'. (200 aa)
H6BKB7_EXODNTyrosine--tRNA ligase. (616 aa)
H6BKE9_EXODNSmall nuclear ribonucleoprotein Sm D2. (100 aa)
H6BKM8_EXODNWD_REPEATS_REGION domain-containing protein. (354 aa)
H6BKN3_EXODNDnaJ protein, subfamily C, member 17. (257 aa)
H6BKS7_EXODNSpliceosomal protein DIB1; Essential role in pre-mRNA splicing. Also essential for entry into mitosis (G2/M progression) as well as for chromosome segregation during mitosis; Belongs to the DIM1 family. (143 aa)
LSM3U6 snRNA-associated Sm-like protein LSm3; Binds specifically to the 3'-terminal U-tract of U6 snRNA. (104 aa)
H6BKV9_EXODNNon-specific serine/threonine protein kinase. (401 aa)
H6BKX9_EXODNUncharacterized protein. (589 aa)
H6BKZ5_EXODNUncharacterized protein; Belongs to the RNR ribonuclease family. (1006 aa)
H6BL39_EXODNPre-mRNA-splicing factor prp46. (438 aa)
H6BL70_EXODNSmall nuclear ribonucleoprotein B and B. (227 aa)
H6BLC3_EXODNAdenosinetriphosphatase. (1228 aa)
H6BLF8_EXODNPre-mRNA-splicing factor ATP-dependent RNA helicase PRP43. (764 aa)
H6BLP4_EXODNUncharacterized protein. (1678 aa)
H6BLQ7_EXODNUncharacterized protein. (375 aa)
H6BLQ9_EXODNFip1 domain-containing protein. (354 aa)
H6BM24_EXODNUncharacterized protein. (539 aa)
H6BM57_EXODNU6 snRNA-associated Sm-like protein LSm6. (80 aa)
H6BM62_EXODNUbiquitin thiolesterase. (588 aa)
H6BM65_EXODNG-patch_2 domain-containing protein. (465 aa)
LSM5U6 snRNA-associated Sm-like protein LSm5; Plays a role in U6 snRNP assembly and function. Binds to the 3' end of U6 snRNA. (84 aa)
H6BMN7_EXODNDnaJ protein, subfamily C, member 8. (212 aa)
H6BMP9_EXODNAutocrine motility factor receptor. (287 aa)
H6BMQ7_EXODNNon-specific serine/threonine protein kinase. (572 aa)
H6BMQ9_EXODNUncharacterized protein. (243 aa)
H6BMT6_EXODNPolynucleotide 5'-phosphatase. (755 aa)
CLP1mRNA cleavage and polyadenylation factor CLP1; Required for endonucleolytic cleavage during polyadenylation- dependent pre-mRNA 3'-end formation. (511 aa)
H6BN01_EXODNMFAP1 domain-containing protein. (533 aa)
H6BN91_EXODNPre-mRNA-splicing factor syf1. (853 aa)
H6BN93_EXODNU2 small nuclear ribonucleoprotein B'. (256 aa)
H6BNJ0_EXODNUncharacterized protein. (561 aa)
H6BNJ2_EXODNPre-mRNA-splicing ATP-dependent RNA helicase prp28. (835 aa)
H6BNK6_EXODNPre-mRNA-processing factor 19. (479 aa)
H6BNK9_EXODNU1 small nuclear ribonucleoprotein 70kDa. (377 aa)
H6BNR9_EXODNPre-mRNA-splicing factor; Involved in mRNA splicing where it associates with cdc5 and the other cwf proteins as part of the spliceosome. (1418 aa)
H6BNU0_EXODNTPR_REGION domain-containing protein. (558 aa)
H6BNV4_EXODNUncharacterized protein. (334 aa)
H6BNV7_EXODNCyclin-dependent kinase 7; Belongs to the protein kinase superfamily. (423 aa)
H6BNX8_EXODNEndoplasmic reticulum to nucleus signaling IRE. (1179 aa)
H6BPK6_EXODNUncharacterized protein. (810 aa)
H6BPS3_EXODNUncharacterized protein. (219 aa)
H6BPX8_EXODNUncharacterized protein. (598 aa)
H6BQ23_EXODNUncharacterized protein. (300 aa)
H6BQ52_EXODNCa2+/calmodulin-dependent protein kinase. (359 aa)
H6BQ70_EXODNDEAD box RNA helicase HelA; Belongs to the DEAD box helicase family. (673 aa)
H6BQ72_EXODNC2H2-type domain-containing protein. (217 aa)
H6BQA6_EXODNUncharacterized protein. (578 aa)
H6BQL1_EXODNDEAD box RNA helicase HelA; Belongs to the DEAD box helicase family. (556 aa)
H6BQN2_EXODNUncharacterized protein. (555 aa)
H6BQN7_EXODNUncharacterized protein. (511 aa)
H6BQR3_EXODNGST N-terminal domain-containing protein. (237 aa)
H6BR15_EXODNUncharacterized protein. (775 aa)
H6BR18_EXODNUncharacterized protein. (369 aa)
H6BRF2_EXODNG-patch domain-containing protein. (336 aa)
H6BRH2_EXODNSerine/threonine-protein phosphatase; Belongs to the PPP phosphatase family. (324 aa)
H6BRI7_EXODNUncharacterized protein. (276 aa)
H6BRM2_EXODNUncharacterized protein. (318 aa)
H6BRV0_EXODNRNA lariat debranching enzyme Dbr1. (1029 aa)
H6BRV3_EXODNUncharacterized protein. (189 aa)
H6BS10_EXODNSmall nuclear ribonucleoprotein E; Associated with the spliceosome snRNP U1, U2, U4/U6 and U5. Belongs to the snRNP Sm proteins family. (94 aa)
H6BS57_EXODNUncharacterized protein. (244 aa)
H6BSG0_EXODNCdc2-like kinase, arginine/serine-rich. (679 aa)
H6BSH8_EXODNTranscription initiation factor TFIID subunit D4. (346 aa)
H6BSK9_EXODN26S proteasome regulatory subunit N7. (206 aa)
H6BSN4_EXODNMatrin-type domain-containing protein. (527 aa)
H6BST7_EXODNUncharacterized protein. (243 aa)
LSM1U6 snRNA-associated Sm-like protein LSm1; Component of the cytoplasmic LSM1-LSM7 complex which is involved in mRNA degradation. (216 aa)
H6BSY0_EXODNUncharacterized protein. (264 aa)
H6BT22_EXODNUncharacterized protein. (316 aa)
H6BT33_EXODNPSP domain-containing protein. (594 aa)
H6BTC3_EXODN5'-3' exoribonuclease; Possesses 5'->3' exoribonuclease activity. May promote termination of transcription by RNA polymerase II. (1075 aa)
H6BTE7_EXODNPre-mRNA-splicing factor isy1. (252 aa)
H6BTH5_EXODNPeptidylprolyl isomerase. (597 aa)
H6BTL1_EXODNPlus3 domain-containing protein. (608 aa)
H6BTZ0_EXODNFHA domain-containing protein. (292 aa)
H6BU33_EXODNUncharacterized protein. (212 aa)
H6BU48_EXODNUncharacterized protein. (526 aa)
LSM8U6 snRNA-associated Sm-like protein LSm8; Plays role in pre-mRNA splicing as component of the U4/U6-U5 tri-snRNP complex that is involved in spliceosome assembly, and as component of the precatalytic spliceosome (spliceosome B complex). The heptameric LSM2-8 complex binds specifically to the 3'-terminal U-tract of U6 snRNA. (98 aa)
H6BUZ3_EXODNUncharacterized protein. (688 aa)
H6BV26_EXODNZn(2)-C6 fungal-type domain-containing protein. (726 aa)
H6BVD3_EXODNUncharacterized protein. (1216 aa)
H6BVF1_EXODNMatrin-type domain-containing protein. (236 aa)
H6BVI0_EXODNPhosphoserine aminotransferase. (328 aa)
H6BVL0_EXODNU2 small nuclear ribonucleoprotein A. (253 aa)
H6BW04_EXODNU1-type domain-containing protein. (289 aa)
H6BW54_EXODNEndo-1,3(4)-beta-glucanase. (364 aa)
H6BW89_EXODNRRM domain-containing protein. (848 aa)
H6BW91_EXODNPre-mRNA-processing protein 45. (585 aa)
H6BWA2_EXODNUncharacterized protein. (682 aa)
H6BWM9_EXODNCir_N domain-containing protein. (410 aa)
H6BWY9_EXODNNop domain-containing protein. (606 aa)
H6BWZ1_EXODNProtein mago nashi. (154 aa)
H6BX01_EXODNPre-mRNA-splicing factor clf1. (677 aa)
H6BX13_EXODNUncharacterized protein. (242 aa)
H6BX90_EXODNG-patch domain-containing protein. (725 aa)
H6BXC0_EXODNUncharacterized protein. (379 aa)
H6BXH4_EXODNUncharacterized protein. (322 aa)
H6BXI5_EXODNUncharacterized protein. (781 aa)
H6BXU9_EXODNUncharacterized protein. (160 aa)
H6BXV0_EXODNSmall nuclear ribonucleoprotein F. (93 aa)
H6BY98_EXODNCwf21 domain-containing protein. (182 aa)
H6BYB1_EXODNUncharacterized protein. (333 aa)
H6BYI9_EXODNUncharacterized protein. (853 aa)
H6BYJ0_EXODNNucleolin. (345 aa)
H6BYJ6_EXODNTranscription 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. (117 aa)
H6BYS5_EXODNUncharacterized protein. (280 aa)
H6BYU4_EXODNUncharacterized protein. (210 aa)
H6BYV1_EXODNATP-dependent RNA helicase sub2. (441 aa)
H6BYV4_EXODNUncharacterized protein. (339 aa)
H6BYX3_EXODNUncharacterized protein. (156 aa)
H6BYX9_EXODNKH domain-containing protein. (493 aa)
H6CBZ7_EXODNUncharacterized protein. (659 aa)
H6CBM7_EXODNUncharacterized protein; Belongs to the cyclin family. (412 aa)
H6CBL5_EXODNCID domain-containing protein. (964 aa)
H6CBG7_EXODNEndo-1,3(4)-beta-glucanase. (393 aa)
H6CBA0_EXODNTudor domain-containing protein. (293 aa)
H6CB84_EXODNNuclear cap-binding protein subunit 2. (166 aa)
H6CB29_EXODNNon-specific serine/threonine protein kinase. (418 aa)
H6CB07_EXODNNon-specific serine/threonine protein kinase. (433 aa)
H6CAZ4_EXODNBranchpoint-bridging protein. (571 aa)
H6CAW8_EXODNSlu7 domain-containing protein. (515 aa)
H6CAU4_EXODNG-patch domain-containing protein. (653 aa)
H6CAQ1_EXODNNon-specific serine/threonine protein kinase. (387 aa)
H6CAI1_EXODNUncharacterized protein. (558 aa)
H6CAH3_EXODNUncharacterized protein. (358 aa)
H6CAG9_EXODNUncharacterized protein. (293 aa)
H6CAF7_EXODNmRNA-capping enzyme subunit alpha; Second step of mRNA capping. Transfer of the GMP moiety of GTP to the 5'-end of RNA via an enzyme-GMP covalent reaction intermediate; Belongs to the eukaryotic GTase family. (440 aa)
H6CAD8_EXODNUncharacterized protein. (230 aa)
PAN2PAN2-PAN3 deadenylation complex catalytic subunit PAN2; Catalytic subunit of the poly(A)-nuclease (PAN) deadenylation complex, one of two cytoplasmic mRNA deadenylases involved in mRNA turnover. PAN specifically shortens poly(A) tails of RNA and the activity is stimulated by poly(A)-binding protein PAB1. PAN deadenylation is followed by rapid degradation of the shortened mRNA tails by the CCR4-NOT complex. Deadenylated mRNAs are then degraded by two alternative mechanisms, namely exosome-mediated 3'-5' exonucleolytic degradation, or deadenlyation-dependent mRNA decaping and subsequent [...] (1178 aa)
H6CAC3_EXODNmRNA (Guanine-N7-)-methyltransferase. (631 aa)
H6CAA1_EXODNRRM domain-containing protein. (116 aa)
H6CA91_EXODNCleavage and polyadenylation specificity factor subunit 2. (948 aa)
H6CA65_EXODNSerine/threonine kinase 23. (608 aa)
LSM4U6 snRNA-associated Sm-like protein LSm4; Binds specifically to the 3'-terminal U-tract of U6 snRNA. (135 aa)
H6C9C8_EXODNPre-mRNA-processing factor 4. (586 aa)
H6C972_EXODNUncharacterized protein. (647 aa)
H6C970_EXODNUncharacterized protein. (945 aa)
H6C961_EXODNUncharacterized protein. (455 aa)
H6C8Z2_EXODNUncharacterized protein. (419 aa)
H6C8X8_EXODNUncharacterized protein. (812 aa)
H6C8W5_EXODNHistone H2A. (1361 aa)
H6C8T9_EXODNMI domain-containing protein. (1011 aa)
H6C878_EXODNDUF2040 domain-containing protein. (409 aa)
H6C852_EXODNSde2_N_Ubi domain-containing protein. (350 aa)
H6C843_EXODNUncharacterized protein. (673 aa)
H6C815_EXODNRAI1 domain-containing protein. (403 aa)
H6C813_EXODNUncharacterized protein. (445 aa)
H6C7Z1_EXODNRRM domain-containing protein. (370 aa)
H6C7Y5_EXODNUncharacterized protein. (335 aa)
H6C7X6_EXODNUncharacterized protein. (2339 aa)
H6C7I5_EXODNDNA-directed RNA polymerase II subunit D. (152 aa)
H6C7E7_EXODNRRM domain-containing protein. (296 aa)
H6C7E0_EXODNU6 snRNA-associated Sm-like protein LSm2; Binds specifically to the 3'-terminal U-tract of U6 snRNA. (98 aa)
H6C7B8_EXODNSymplekin. (760 aa)
H6C7B7_EXODNPre-mRNA-processing factor 4. (502 aa)
H6C776_EXODNCVNH domain-containing protein. (380 aa)
H6C710_EXODNAdenosinetriphosphatase. (979 aa)
H6C6X3_EXODNUncharacterized protein. (317 aa)
H6C6M6_EXODNPolyadenylate-binding protein; Binds the poly(A) tail of mRNA. Belongs to the polyadenylate-binding protein type-1 family. (779 aa)
H6C6G1_EXODNPre-mRNA-splicing factor cef1. (780 aa)
H6C697_EXODN3' exoribonuclease. (354 aa)
H6C638_EXODNSNRNP27 domain-containing protein. (226 aa)
H6C619_EXODNAdenosinetriphosphatase. (1239 aa)
H6C615_EXODNC2H2-type domain-containing protein. (163 aa)
H6C604_EXODNNon-specific serine/threonine protein kinase. (463 aa)
H6C602_EXODNTranslation initiation factor eIF-3 subunit 2. (339 aa)
H6C5V2_EXODNRRM domain-containing protein. (217 aa)
H6C5R8_EXODNUncharacterized protein. (383 aa)
H6C5N4_EXODNCDC73_C domain-containing protein. (442 aa)
H6C5F6_EXODNAdenosinetriphosphatase. (991 aa)
H6C5E7_EXODNUncharacterized protein. (506 aa)
H6C5D5_EXODNSmall nuclear ribonucleoprotein G. (80 aa)
H6C5A7_EXODNRibonucloprotein; Common component of the spliceosome and rRNA processing machinery; Belongs to the eukaryotic ribosomal protein eL8 family. (125 aa)
H6C562_EXODNElongation factor EF-2. (986 aa)
H6C551_EXODNC2H2-type domain-containing protein. (912 aa)
H6C518_EXODNUncharacterized protein. (2223 aa)
H6C4T7_EXODNRRM domain-containing protein. (200 aa)
H6C4T4_EXODNUncharacterized protein. (339 aa)
H6C475_EXODNATP-dependent RNA helicase dhh1; Belongs to the DEAD box helicase family. (506 aa)
H6C455_EXODNUncharacterized protein. (539 aa)
H6C3Y0_EXODNPre-mRNA-splicing factor slt11. (377 aa)
H6C3X7_EXODNUncharacterized protein. (197 aa)
H6C3T0_EXODNG-patch domain-containing protein. (786 aa)
H6C3L5_EXODNPinin_SDK_memA domain-containing protein. (363 aa)
H6C3K8_EXODNPre-mRNA-splicing factor ini1. (110 aa)
H6C3G8_EXODNCID domain-containing protein. (284 aa)
H6C3C5_EXODNNucleolin. (293 aa)
H6C3C2_EXODNSmall nuclear ribonucleoprotein Sm D1; Involved in pre-mRNA splicing. Binds snRNA U1, U2, U4 and U5 which contain a highly conserved structural motif called the Sm binding site; Belongs to the snRNP core protein family. (130 aa)
H6C3A3_EXODNUncharacterized protein. (502 aa)
H6C366_EXODNUncharacterized protein. (334 aa)
H6C2Y1_EXODNCID domain-containing protein. (480 aa)
H6C2U5_EXODNNucleolin, variant. (1283 aa)
H6C2R8_EXODNU1 small nuclear ribonucleoprotein C; Component of the spliceosomal U1 snRNP, which is essential for recognition of the pre-mRNA 5' splice-site and the subsequent assembly of the spliceosome. U1-C is directly involved in initial 5' splice-site recognition for both constitutive and regulated alternative splicing. The interaction with the 5' splice-site seems to precede base-pairing between the pre-mRNA and the U1 snRNA. Stimulates commitment or early (E) complex formation by stabilizing the base pairing of the 5' end of the U1 snRNA and the 5' splice-site region. (185 aa)
H6C2R1_EXODNSplicing factor subunit; Belongs to the SF3B5 family. (85 aa)
H6C2P0_EXODNRRM domain-containing protein. (365 aa)
H6C2D9_EXODNWD_REPEATS_REGION domain-containing protein. (670 aa)
H6C2C0_EXODNUncharacterized protein. (389 aa)
H6C2A1_EXODNU2 snRNP auxiliary factor large subunit; Necessary for the splicing of pre-mRNA. Belongs to the splicing factor SR family. (574 aa)
H6C285_EXODNU2 snRNP component prp10. (1211 aa)
H6C233_EXODNUncharacterized protein. (344 aa)
H6C1I5_EXODNUncharacterized protein. (662 aa)
H6C1D8_EXODNNucleolin. (562 aa)
H6C1C0_EXODNSuf domain-containing protein. (1074 aa)
H6C169_EXODNPWI domain-containing protein. (193 aa)
H6C143_EXODNSFM domain-containing protein. (431 aa)
H6C116_EXODNPoly(A) polymerase; Polymerase that creates the 3'-poly(A) tail of mRNA's. (611 aa)
H6C0Z4_EXODNATP dependent RNA helicase. (676 aa)
H6C0S5_EXODN3-oxoacyl-[acyl-carrier protein] reductase. (607 aa)
H6C0S0_EXODNMitochondrial exoribonuclease Cyt-4. (1091 aa)
H6C0H9_EXODNtRNA-dihydrouridine(47) synthase [NAD(P)(+)]; Catalyzes the synthesis of dihydrouridine, a modified base found in the D-loop of most tRNAs. Specifically modifies U47 in cytoplasmic tRNAs. (788 aa)
H6C0H3_EXODNUncharacterized protein. (1011 aa)
PAN3PAN2-PAN3 deadenylation complex subunit PAN3; Regulatory subunit of the poly(A)-nuclease (PAN) deadenylation complex, one of two cytoplasmic mRNA deadenylases involved in mRNA turnover. PAN specifically shortens poly(A) tails of RNA and the activity is stimulated by poly(A)-binding protein PAB1. PAN deadenylation is followed by rapid degradation of the shortened mRNA tails by the CCR4-NOT complex. Deadenylated mRNAs are then degraded by two alternative mechanisms, namely exosome-mediated 3'-5' exonucleolytic degradation, or deadenlyation-dependent mRNA decaping and subsequent 5'-3' exo [...] (640 aa)
H6C0D7_EXODNSmall nuclear ribonucleoprotein. (138 aa)
H6C0C5_EXODNPre-mRNA-splicing factor rse1. (1210 aa)
H6BZY8_EXODNUncharacterized protein. (392 aa)
H6BZY1_EXODNUncharacterized protein. (209 aa)
H6BZX6_EXODNUncharacterized protein. (347 aa)
H6BZI3_EXODNSepiapterin reductase. (588 aa)
H6BZE6_EXODNUncharacterized protein. (323 aa)
H6BZ75_EXODNUncharacterized protein. (691 aa)
H6BZ25_EXODNEndoribonuclease ysh1. (868 aa)
H6BZ14_EXODNUncharacterized protein. (547 aa)
H6BZ10_EXODNPre-mRNA-processing-splicing factor 8. (2360 aa)
H6BJT7_EXODNGlucose repression regulatory protein TUP1. (590 aa)
H6BJV1_EXODNTranscription 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. (1108 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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