STRINGSTRING
H6C3A2_EXODN H6C3A2_EXODN H6C3G6_EXODN H6C3G6_EXODN H6C3I6_EXODN H6C3I6_EXODN H6C3M0_EXODN H6C3M0_EXODN UNG1 UNG1 H6C3Q6_EXODN H6C3Q6_EXODN H6C3T2_EXODN H6C3T2_EXODN H6C4A9_EXODN H6C4A9_EXODN H6C4E8_EXODN H6C4E8_EXODN H6C4V7_EXODN H6C4V7_EXODN H6C511_EXODN H6C511_EXODN H6C548_EXODN H6C548_EXODN H6C599_EXODN H6C599_EXODN H6C5B7_EXODN H6C5B7_EXODN H6C5Q6_EXODN H6C5Q6_EXODN H6C5R2_EXODN H6C5R2_EXODN H6C5R6_EXODN H6C5R6_EXODN H6C5T4_EXODN H6C5T4_EXODN H6C5V8_EXODN H6C5V8_EXODN H6C5W6_EXODN H6C5W6_EXODN H6C5Z6_EXODN H6C5Z6_EXODN H6C5Z8_EXODN H6C5Z8_EXODN H6C620_EXODN H6C620_EXODN H6C643_EXODN H6C643_EXODN H6C6D5_EXODN H6C6D5_EXODN H6C6D8_EXODN H6C6D8_EXODN H6C6E7_EXODN H6C6E7_EXODN H6C6F6_EXODN H6C6F6_EXODN H6C6F8_EXODN H6C6F8_EXODN H6C6H6_EXODN H6C6H6_EXODN H6C6L0_EXODN H6C6L0_EXODN H6C6M3_EXODN H6C6M3_EXODN H6C6V0_EXODN H6C6V0_EXODN H6C6Y0_EXODN H6C6Y0_EXODN H6C701_EXODN H6C701_EXODN H6C767_EXODN H6C767_EXODN H6C799_EXODN H6C799_EXODN H6C7A0_EXODN H6C7A0_EXODN H6C7C2_EXODN H6C7C2_EXODN H6C7C8_EXODN H6C7C8_EXODN H6C7D9_EXODN H6C7D9_EXODN H6C7E3_EXODN H6C7E3_EXODN H6C7I5_EXODN H6C7I5_EXODN H6C7M5_EXODN H6C7M5_EXODN H6C7N9_EXODN H6C7N9_EXODN H6C7S3_EXODN H6C7S3_EXODN H6C7Y8_EXODN H6C7Y8_EXODN H6C830_EXODN H6C830_EXODN H6C834_EXODN H6C834_EXODN H6C898_EXODN H6C898_EXODN H6C8W0_EXODN H6C8W0_EXODN H6C9E9_EXODN H6C9E9_EXODN H6C9H7_EXODN H6C9H7_EXODN H6C9J1_EXODN H6C9J1_EXODN H6C9X6_EXODN H6C9X6_EXODN H6CA59_EXODN H6CA59_EXODN H6CAF0_EXODN H6CAF0_EXODN H6CAG1_EXODN H6CAG1_EXODN H6CAG5_EXODN H6CAG5_EXODN H6CAK4_EXODN H6CAK4_EXODN H6CAW5_EXODN H6CAW5_EXODN H6CAX3_EXODN H6CAX3_EXODN H6CB20_EXODN H6CB20_EXODN H6CB21_EXODN H6CB21_EXODN H6CB58_EXODN H6CB58_EXODN H6CB59_EXODN H6CB59_EXODN H6CBB9_EXODN H6CBB9_EXODN H6CBE3_EXODN H6CBE3_EXODN H6CBI6_EXODN H6CBI6_EXODN H6CBM1_EXODN H6CBM1_EXODN H6CBN9_EXODN H6CBN9_EXODN H6CBU9_EXODN H6CBU9_EXODN H6CBV7_EXODN H6CBV7_EXODN H6CBX4_EXODN H6CBX4_EXODN H6CC00_EXODN H6CC00_EXODN H6CC33_EXODN H6CC33_EXODN H6BKA2_EXODN H6BKA2_EXODN H6BKB8_EXODN H6BKB8_EXODN H6BKE6_EXODN H6BKE6_EXODN H6BKE7_EXODN H6BKE7_EXODN H6BKF5_EXODN H6BKF5_EXODN H6BKI4_EXODN H6BKI4_EXODN H6BKJ1_EXODN H6BKJ1_EXODN H6BKK5_EXODN H6BKK5_EXODN H6BKN8_EXODN H6BKN8_EXODN H6BKU0_EXODN H6BKU0_EXODN H6BKU5_EXODN H6BKU5_EXODN H6BL53_EXODN H6BL53_EXODN H6BLC9_EXODN H6BLC9_EXODN H6BLE0_EXODN H6BLE0_EXODN H6BLG3_EXODN H6BLG3_EXODN H6BLL6_EXODN H6BLL6_EXODN H6BLS6_EXODN H6BLS6_EXODN H6BMF5_EXODN H6BMF5_EXODN H6BMH6_EXODN H6BMH6_EXODN H6BMI7_EXODN H6BMI7_EXODN H6BMN0_EXODN H6BMN0_EXODN H6BMX1_EXODN H6BMX1_EXODN H6BN16_EXODN H6BN16_EXODN H6BN62_EXODN H6BN62_EXODN H6BN70_EXODN H6BN70_EXODN H6BN73_EXODN H6BN73_EXODN H6BN74_EXODN H6BN74_EXODN H6BN77_EXODN H6BN77_EXODN H6BN78_EXODN H6BN78_EXODN H6BN83_EXODN H6BN83_EXODN H6BN91_EXODN H6BN91_EXODN H6BNA7_EXODN H6BNA7_EXODN H6BNB4_EXODN H6BNB4_EXODN H6BNC1_EXODN H6BNC1_EXODN H6BNH5_EXODN H6BNH5_EXODN H6BNK6_EXODN H6BNK6_EXODN H6BNN2_EXODN H6BNN2_EXODN H6BNR9_EXODN H6BNR9_EXODN H6BNU4_EXODN H6BNU4_EXODN H6BNV7_EXODN H6BNV7_EXODN H6BP12_EXODN H6BP12_EXODN H6BP32_EXODN H6BP32_EXODN H6BPC0_EXODN H6BPC0_EXODN H6BPE3_EXODN H6BPE3_EXODN H6BPJ5_EXODN H6BPJ5_EXODN NTH1 NTH1 H6BPP6_EXODN H6BPP6_EXODN H6BPT1_EXODN H6BPT1_EXODN H6BPV0_EXODN H6BPV0_EXODN H6BPZ0_EXODN H6BPZ0_EXODN H6BQJ7_EXODN H6BQJ7_EXODN H6BQT7_EXODN H6BQT7_EXODN H6BQU3_EXODN H6BQU3_EXODN H6BQW5_EXODN H6BQW5_EXODN H6BR00_EXODN H6BR00_EXODN H6BR04_EXODN H6BR04_EXODN H6BR56_EXODN H6BR56_EXODN H6BR69_EXODN H6BR69_EXODN H6BRA6_EXODN H6BRA6_EXODN H6BRT9_EXODN H6BRT9_EXODN H6BSF9_EXODN H6BSF9_EXODN H6BSH1_EXODN H6BSH1_EXODN H6BSM6_EXODN H6BSM6_EXODN H6BSN7_EXODN H6BSN7_EXODN H6BSR6_EXODN H6BSR6_EXODN H6BSV5_EXODN H6BSV5_EXODN H6BT50_EXODN H6BT50_EXODN H6BTA2_EXODN H6BTA2_EXODN H6BTE7_EXODN H6BTE7_EXODN H6BTF3_EXODN H6BTF3_EXODN H6BTL8_EXODN H6BTL8_EXODN H6BTM9_EXODN H6BTM9_EXODN H6BTN4_EXODN H6BTN4_EXODN H6BTR1_EXODN H6BTR1_EXODN H6BTT2_EXODN H6BTT2_EXODN H6BUE8_EXODN H6BUE8_EXODN H6BUZ5_EXODN H6BUZ5_EXODN H6BV99_EXODN H6BV99_EXODN H6BVB4_EXODN H6BVB4_EXODN H6BVC7_EXODN H6BVC7_EXODN H6BVD7_EXODN H6BVD7_EXODN H6BVS6_EXODN H6BVS6_EXODN H6BW27_EXODN H6BW27_EXODN H6BW67_EXODN H6BW67_EXODN H6BW69_EXODN H6BW69_EXODN H6BW79_EXODN H6BW79_EXODN H6BWC1_EXODN H6BWC1_EXODN H6BWI1_EXODN H6BWI1_EXODN H6BWM1_EXODN H6BWM1_EXODN H6BXA1_EXODN H6BXA1_EXODN H6BXI9_EXODN H6BXI9_EXODN H6BXM3_EXODN H6BXM3_EXODN H6BXQ1_EXODN H6BXQ1_EXODN H6BXW2_EXODN H6BXW2_EXODN H6BYK9_EXODN H6BYK9_EXODN H6BYX1_EXODN H6BYX1_EXODN H6BZ16_EXODN H6BZ16_EXODN H6BZ21_EXODN H6BZ21_EXODN H6BZ30_EXODN H6BZ30_EXODN H6BZ83_EXODN H6BZ83_EXODN H6BZ84_EXODN H6BZ84_EXODN H6BZ91_EXODN H6BZ91_EXODN H6BZF9_EXODN H6BZF9_EXODN H6BZG9_EXODN H6BZG9_EXODN H6BZH3_EXODN H6BZH3_EXODN H6BZZ1_EXODN H6BZZ1_EXODN H6C0D0_EXODN H6C0D0_EXODN H6C0J3_EXODN H6C0J3_EXODN H6C0J5_EXODN H6C0J5_EXODN H6C0S4_EXODN H6C0S4_EXODN H6C0S8_EXODN H6C0S8_EXODN H6C0U9_EXODN H6C0U9_EXODN H6C0X6_EXODN H6C0X6_EXODN H6C0Z3_EXODN H6C0Z3_EXODN H6C157_EXODN H6C157_EXODN H6C1A6_EXODN H6C1A6_EXODN H6C1K4_EXODN H6C1K4_EXODN H6C1L3_EXODN H6C1L3_EXODN H6C1M7_EXODN H6C1M7_EXODN H6C1Q6_EXODN H6C1Q6_EXODN H6C1Z5_EXODN H6C1Z5_EXODN H6C239_EXODN H6C239_EXODN H6C270_EXODN H6C270_EXODN H6C271_EXODN H6C271_EXODN H6C297_EXODN H6C297_EXODN H6C2A7_EXODN H6C2A7_EXODN H6C2H6_EXODN H6C2H6_EXODN H6C2J6_EXODN H6C2J6_EXODN H6C2Q7_EXODN H6C2Q7_EXODN H6C2S2_EXODN H6C2S2_EXODN H6C2X9_EXODN H6C2X9_EXODN H6C364_EXODN H6C364_EXODN H6C365_EXODN H6C365_EXODN H6C381_EXODN H6C381_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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H6C3A2_EXODNUncharacterized protein. (919 aa)
H6C3G6_EXODNUncharacterized protein. (323 aa)
H6C3I6_EXODNCHY-type domain-containing protein. (769 aa)
H6C3M0_EXODNReplication protein A subunit; As part of the replication protein A (RPA/RP-A), a single- stranded DNA-binding heterotrimeric complex, may play an essential role in DNA replication, recombination and repair. Binds and stabilizes single-stranded DNA intermediates, preventing complementary DNA reannealing and recruiting different proteins involved in DNA metabolism. (608 aa)
UNG1Uracil-DNA glycosylase; Excises uracil residues from the DNA which can arise as a result of misincorporation of dUMP residues by DNA polymerase or due to deamination of cytosine. (446 aa)
H6C3Q6_EXODNFungal_trans domain-containing protein. (856 aa)
H6C3T2_EXODNHistone H2B; Belongs to the histone H2B family. (141 aa)
H6C4A9_EXODNMethylated-DNA-[protein]-cysteine S-methyltransferase. (311 aa)
H6C4E8_EXODNTDG/mug DNA glycosylase. (345 aa)
H6C4V7_EXODNDUF1767 domain-containing protein. (279 aa)
H6C511_EXODNDNA mismatch repair protein MutS. (1000 aa)
H6C548_EXODNTranscription elongation factor S-II. (306 aa)
H6C599_EXODNVesicle-fusing ATPase. (752 aa)
H6C5B7_EXODNUncharacterized protein. (766 aa)
H6C5Q6_EXODNAtaxia telangiectasia and Rad3, variant; Belongs to the PI3/PI4-kinase family. (2304 aa)
H6C5R2_EXODNUncharacterized protein. (2052 aa)
H6C5R6_EXODNMethylated-DNA-protein-cysteine methyltransferase like protein. (149 aa)
H6C5T4_EXODNChromosome segregation in meiosis protein; Plays an important role in the control of DNA replication and the maintenance of replication fork stability. Belongs to the CSM3 family. (606 aa)
H6C5V8_EXODNGuanine deaminase. (228 aa)
H6C5W6_EXODNCMP/dCMP-type deaminase domain-containing protein. (222 aa)
H6C5Z6_EXODNUncharacterized protein. (1238 aa)
H6C5Z8_EXODNCyclin H; Belongs to the cyclin family. (381 aa)
H6C620_EXODNActin-related protein 8; Probably involved in transcription regulation via its interaction with the INO80 complex, a chromatin remodeling complex. Belongs to the actin family. (727 aa)
H6C643_EXODNUncharacterized protein. (538 aa)
H6C6D5_EXODNDouble-strand break repair protein; Involved in DNA double-strand break repair (DSBR). Possesses single-strand endonuclease activity and double-strand-specific 3'-5' exonuclease activity. Also involved in meiotic DSB processing. (785 aa)
H6C6D8_EXODNDNA damage-binding protein 1. (1185 aa)
H6C6E7_EXODNERCC4 domain-containing protein. (668 aa)
H6C6F6_EXODNYL1_C domain-containing protein. (197 aa)
H6C6F8_EXODNHistone acetyltransferase; Belongs to the MYST (SAS/MOZ) family. (566 aa)
H6C6H6_EXODNActin beta/gamma 1; Belongs to the actin family. (770 aa)
H6C6L0_EXODNTelomere length regulation protein. (1109 aa)
H6C6M3_EXODNDNA-directed RNA polymerase II subunit C. (335 aa)
H6C6V0_EXODN26S proteasome regulatory subunit N7. (491 aa)
H6C6Y0_EXODNzf-GRF domain-containing protein. (272 aa)
H6C701_EXODNUncharacterized protein. (532 aa)
H6C767_EXODNUbiquitin thiolesterase; Belongs to the peptidase C19 family. (1411 aa)
H6C799_EXODNUncharacterized protein. (561 aa)
H6C7A0_EXODNDNA-directed RNA polymerase II subunit G. (169 aa)
H6C7C2_EXODNDNA mismatch repair protein MutL. (949 aa)
H6C7C8_EXODNUncharacterized protein. (390 aa)
H6C7D9_EXODNNon-specific serine/threonine protein kinase. (959 aa)
H6C7E3_EXODNFanconi-associated nuclease; Nuclease required for the repair of DNA interstrand cross- links (ICL). Acts as a 5'-3' exonuclease that anchors at a cut end of DNA and cleaves DNA successively at every third nucleotide, allowing to excise an ICL from one strand through flanking incisions. Belongs to the FAN1 family. (998 aa)
H6C7I5_EXODNDNA-directed RNA polymerase II subunit D. (152 aa)
H6C7M5_EXODNDNA repair helicase rad15. (819 aa)
H6C7N9_EXODNRECA_2 domain-containing protein. (468 aa)
H6C7S3_EXODNSer/Thr/Tyr protein kinase RAD53. (1082 aa)
H6C7Y8_EXODNProtein-serine/threonine kinase; Belongs to the protein kinase superfamily. (471 aa)
H6C830_EXODNUncharacterized protein. (1379 aa)
H6C834_EXODNCytosine deaminase. (150 aa)
H6C898_EXODNPeptidylprolyl isomerase. (158 aa)
H6C8W0_EXODNDNA damage-binding protein CMR1; DNA-binding protein that binds to both single- and double- stranded DNA. Binds preferentially to UV-damaged DNA. May be involved in DNA-metabolic processes. (534 aa)
H6C9E9_EXODNReplication factor C subunit 5. (354 aa)
H6C9H7_EXODNUncharacterized protein. (443 aa)
H6C9J1_EXODNDNA repair protein REV1; Deoxycytidyl transferase involved in DNA repair. Transfers a dCMP residue from dCTP to the 3'-end of a DNA primer in a template- dependent reaction. May assist in the first step in the bypass of abasic lesions by the insertion of a nucleotide opposite the lesion. Required for normal induction of mutations by physical and chemical agents; Belongs to the DNA polymerase type-Y family. (1188 aa)
H6C9X6_EXODNUncharacterized protein. (797 aa)
H6CA59_EXODNDNA excision repair protein ERCC-6. (1204 aa)
H6CAF0_EXODNAsparaginyl-tRNA synthetase. (572 aa)
H6CAG1_EXODNDNA ligase. (931 aa)
H6CAG5_EXODNBloom syndrome protein. (1681 aa)
H6CAK4_EXODNUbiquitin thiolesterase. (1111 aa)
H6CAW5_EXODNDNA polymerase. (1773 aa)
H6CAX3_EXODNAP endonuclease 2. (635 aa)
H6CB20_EXODNUncharacterized protein. (64 aa)
H6CB21_EXODNUncharacterized protein. (229 aa)
H6CB58_EXODNProliferating cell nuclear antigen; This protein is an auxiliary protein of DNA polymerase delta and is involved in the control of eukaryotic DNA replication by increasing the polymerase's processibility during elongation of the leading strand; Belongs to the PCNA family. (602 aa)
H6CB59_EXODNProliferating cell nuclear antigen. (590 aa)
H6CBB9_EXODNSerine/threonine-protein kinase Chk2; Belongs to the protein kinase superfamily. (478 aa)
H6CBE3_EXODNProtein kinase domain-containing protein. (290 aa)
H6CBI6_EXODNTranscription initiation factor TFIIH subunit H1. (619 aa)
H6CBM1_EXODNUDP-galactopyranose mutase. (563 aa)
H6CBN9_EXODNCrossover junction endonuclease MUS81. (616 aa)
H6CBU9_EXODNUncharacterized protein. (665 aa)
H6CBV7_EXODNUncharacterized protein. (664 aa)
H6CBX4_EXODNBRCT domain-containing protein. (505 aa)
H6CC00_EXODNDNA repair protein RAD57. (453 aa)
H6CC33_EXODNPhosphate system cyclin PHO80. (363 aa)
H6BKA2_EXODNDNA excision repair protein ERCC-8. (564 aa)
H6BKB8_EXODNDNA mismatch repair protein; Component of the post-replicative DNA mismatch repair system (MMR). (1250 aa)
H6BKE6_EXODNCullin 4; Belongs to the cullin family. (901 aa)
H6BKE7_EXODNUncharacterized protein. (133 aa)
H6BKF5_EXODNUncharacterized protein. (511 aa)
H6BKI4_EXODNProtein kinase. (666 aa)
H6BKJ1_EXODNUncharacterized protein. (636 aa)
H6BKK5_EXODNDNA replication regulator DPB11. (861 aa)
H6BKN8_EXODNNuclear transport factor 2. (125 aa)
H6BKU0_EXODNTelo_bind domain-containing protein. (642 aa)
H6BKU5_EXODNDNA polymerase delta, subunit 4. (242 aa)
H6BL53_EXODNDNA polymerase epsilon subunit 4. (192 aa)
H6BLC9_EXODNReplication factor A2. (284 aa)
H6BLE0_EXODNSerine/threonine-protein phosphatase. (324 aa)
H6BLG3_EXODNTranscription initiation factor TFIIH subunit H3. (455 aa)
H6BLL6_EXODNSerine/threonine-protein kinase Chk2. (703 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)
H6BMF5_EXODNDNA polymerase kappa subunit. (732 aa)
H6BMH6_EXODNENDO3c domain-containing protein. (602 aa)
H6BMI7_EXODNDNA-directed RNA polymerase II subunit J. (269 aa)
H6BMN0_EXODNDNA mismatch repair protein MLH1. (755 aa)
H6BMX1_EXODNCOP9 signalosome complex subunit 5. (374 aa)
H6BN16_EXODNCDK-activating kinase assembly factor MAT1. (271 aa)
H6BN62_EXODNUncharacterized protein. (355 aa)
H6BN70_EXODNUncharacterized protein; 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. (118 aa)
H6BN73_EXODNProtein kinase. (767 aa)
H6BN74_EXODNCa2+/calmodulin-dependent protein kinase. (1087 aa)
H6BN77_EXODNDNA ligase. (1044 aa)
H6BN78_EXODNSerine/threonine-protein phosphatase. (452 aa)
H6BN83_EXODNWD_REPEATS_REGION domain-containing protein. (720 aa)
H6BN91_EXODNPre-mRNA-splicing factor syf1. (853 aa)
H6BNA7_EXODNDNA polymerase delta subunit 3. (532 aa)
H6BNB4_EXODNUncharacterized protein. (614 aa)
H6BNC1_EXODNDNA mismatch repair protein; Component of the post-replicative DNA mismatch repair system (MMR). (1108 aa)
H6BNH5_EXODNDNA excision repair protein ERCC-5. (1319 aa)
H6BNK6_EXODNPre-mRNA-processing factor 19. (479 aa)
H6BNN2_EXODNSerine/threonine-protein kinase Tel1; Serine/threonine protein kinase which activates checkpoint signaling upon genotoxic stresses such as ionizing radiation (IR), ultraviolet light (UV), or DNA replication stalling, thereby acting as a DNA damage sensor. Recognizes the substrate consensus sequence [ST]- Q. Phosphorylates histone H2A to form H2AS128ph (gamma-H2A) at sites of DNA damage, involved in the regulation of DNA damage response mechanism. Required for the control of telomere length and genome stability; Belongs to the PI3/PI4-kinase family. ATM subfamily. (2918 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)
H6BNU4_EXODNCMP/dCMP-type deaminase domain-containing protein. (345 aa)
H6BNV7_EXODNCyclin-dependent kinase 7; Belongs to the protein kinase superfamily. (423 aa)
H6BP12_EXODNFHA domain-containing protein. (704 aa)
H6BP32_EXODNE3 ubiquitin-protein ligase RAD18. (518 aa)
H6BPC0_EXODNMethylated-DNA-[protein]-cysteine S-methyltransferase. (215 aa)
H6BPE3_EXODNTyrosyl-DNA phosphodiesterase 1. (793 aa)
H6BPJ5_EXODNG1/S-specific cyclin PLC2. (439 aa)
NTH1Endonuclease III homolog; Bifunctional DNA N-glycosylase with associated apurinic/apyrimidinic (AP) lyase function that catalyzes the first step in base excision repair (BER), the primary repair pathway for the repair of oxidative DNA damage. The DNA N-glycosylase activity releases the damaged DNA base from DNA by cleaving the N-glycosidic bond, leaving an AP site. The AP lyase activity cleaves the phosphodiester bond 3' to the AP site by a beta-elimination. Primarily recognizes and repairs oxidative base damage of pyrimidines. (468 aa)
H6BPP6_EXODNDNA excision repair protein ERCC-5. (768 aa)
H6BPT1_EXODNUbiquitin-conjugating enzyme E2 2; Belongs to the ubiquitin-conjugating enzyme family. (151 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)
H6BPZ0_EXODNUncharacterized protein. (557 aa)
H6BQJ7_EXODNProtein kinase domain-containing protein; Belongs to the protein kinase superfamily. (414 aa)
H6BQT7_EXODNUbiquitin carboxyl-terminal hydrolase. (756 aa)
H6BQU3_EXODNPCI domain-containing protein. (419 aa)
H6BQW5_EXODNDNA-directed RNA polymerase II subunit E. (238 aa)
H6BR00_EXODNDNA repair and recombination protein RAD52. (574 aa)
H6BR04_EXODNDNA polymerase theta subunit. (927 aa)
H6BR56_EXODNDNA-directed RNA Polymerase II subunit F. (152 aa)
H6BR69_EXODNEndo/exonuclease/phosphatase domain-containing protein. (345 aa)
H6BRA6_EXODNUncharacterized protein. (1201 aa)
H6BRT9_EXODNMitotic spindle assembly checkpoint protein MAD2. (389 aa)
H6BSF9_EXODNReplication factor C subunit 3/5. (408 aa)
H6BSH1_EXODNPHD domain-containing protein. (355 aa)
H6BSM6_EXODNBRCT domain-containing protein. (601 aa)
H6BSN7_EXODNReplication factor C subunit 1. (1098 aa)
H6BSR6_EXODNUBA domain-containing protein. (306 aa)
H6BSV5_EXODNReplication factor C subunit 2/4. (408 aa)
H6BT50_EXODNDNA-repair protein complementing XP-A cells. (362 aa)
H6BTA2_EXODNUncharacterized protein. (452 aa)
H6BTE7_EXODNPre-mRNA-splicing factor isy1. (252 aa)
H6BTF3_EXODNUBX domain-containing protein. (593 aa)
H6BTL8_EXODNPeptidyl-prolyl cis-trans isomerase D. (373 aa)
H6BTM9_EXODNReplication fork protection complex subunit Swi1/Tof1. (1155 aa)
H6BTN4_EXODNRNA polymerase II transcription factor B subunit 2; 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. Belongs to the TFB2 family. (508 aa)
H6BTR1_EXODNUncharacterized protein. (851 aa)
H6BTT2_EXODNDNA polymerase IV. (763 aa)
H6BUE8_EXODNDNA excision repair protein ERCC-1. (387 aa)
H6BUZ5_EXODNDNA ligase (ATP). (884 aa)
H6BV99_EXODNCHY-type domain-containing protein. (121 aa)
H6BVB4_EXODNBZIP domain-containing protein. (292 aa)
H6BVC7_EXODNDNA repair protein RAD51 homolog; Required both for recombination and for the repair of DNA damage caused by X-rays; Belongs to the RecA family. RAD51 subfamily. (349 aa)
H6BVD7_EXODNDNA-directed RNA Polymerase II subunit K. (78 aa)
H6BVS6_EXODNUncharacterized protein. (447 aa)
H6BW27_EXODNRing finger and CHY zinc finger domain-containing protein 1. (751 aa)
H6BW67_EXODNProtein kinase domain-containing protein. (849 aa)
H6BW69_EXODNUbiquitin thiolesterase; Belongs to the peptidase C19 family. (1131 aa)
H6BW79_EXODNDNA excision repair protein ERCC-3. (852 aa)
H6BWC1_EXODNZn(2)-C6 fungal-type domain-containing protein. (572 aa)
H6BWI1_EXODNUbiquitin carboxyl-terminal hydrolase. (898 aa)
H6BWM1_EXODNCOP9 signalosome complex subunit 2. (498 aa)
H6BXA1_EXODNDNA topoisomerase; Introduces a single-strand break via transesterification at a target site in duplex DNA. Releases the supercoiling and torsional tension of DNA introduced during the DNA replication and transcription by transiently cleaving and rejoining one strand of the DNA duplex. The scissile phosphodiester is attacked by the catalytic tyrosine of the enzyme, resulting in the formation of a DNA-(5'-phosphotyrosyl)-enzyme intermediate and the expulsion of a 3'-OH DNA strand. Belongs to the type IA topoisomerase family. (625 aa)
H6BXI9_EXODNUncharacterized protein. (146 aa)
H6BXM3_EXODNUncharacterized protein. (567 aa)
H6BXQ1_EXODNReplication factor C subunit 4. (352 aa)
H6BXW2_EXODNUncharacterized protein. (872 aa)
H6BYK9_EXODNSerine/threonine-protein kinase Chk1. (540 aa)
H6BYX1_EXODNRING-box protein 1. (124 aa)
H6BZ16_EXODNUncharacterized protein. (743 aa)
H6BZ21_EXODNDNA excision repair protein ERCC-6. (1195 aa)
H6BZ30_EXODNDNA polymerase eta subunit. (663 aa)
H6BZ83_EXODNUncharacterized protein. (450 aa)
H6BZ84_EXODNAAA family ATPase. (794 aa)
H6BZ91_EXODNPCI domain-containing protein. (345 aa)
H6BZF9_EXODNUV excision repair protein Rad23. (405 aa)
H6BZG9_EXODNProtein-serine/threonine kinase. (517 aa)
H6BZH3_EXODNPoly [ADP-ribose] polymerase. (710 aa)
H6BZZ1_EXODNAdenosinetriphosphatase. (1690 aa)
H6C0D0_EXODNDNA-directed RNA polymerase I, II, and III subunit RPABC5. (72 aa)
H6C0J3_EXODNUncharacterized protein. (535 aa)
H6C0J5_EXODNDNA repair protein RAD50. (1305 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)
H6C0U9_EXODNUncharacterized protein. (1000 aa)
H6C0X6_EXODNDNA excision repair protein ERCC-4. (949 aa)
H6C0Z3_EXODNATP-dependent DNA helicase; Belongs to the helicase family. RecQ subfamily. (510 aa)
H6C157_EXODNDNA ligase. (878 aa)
H6C1A6_EXODNMPN domain-containing protein. (444 aa)
H6C1K4_EXODNUbiquitin-40S ribosomal protein S27a. (154 aa)
H6C1L3_EXODNDNA mismatch repair protein msh-2; Component of the post-replicative DNA mismatch repair system (MMR). (932 aa)
H6C1M7_EXODNDNA cross-link repair 1C protein. (683 aa)
H6C1Q6_EXODNZds_C domain-containing protein. (991 aa)
H6C1Z5_EXODNUncharacterized protein. (884 aa)
H6C239_EXODNUbiquitin thiolesterase; Belongs to the peptidase C19 family. (1511 aa)
H6C270_EXODNPCI domain-containing protein. (510 aa)
H6C271_EXODNDNA-repair protein XRCC2. (507 aa)
H6C297_EXODNN-glycosylase/DNA lyase. (422 aa)
H6C2A7_EXODNDNA polymerase IV. (749 aa)
H6C2H6_EXODNExonuclease 1. (774 aa)
H6C2J6_EXODNFHA domain-containing protein. (648 aa)
H6C2Q7_EXODNRick_17kDa_Anti domain-containing protein. (267 aa)
H6C2S2_EXODNAdenosinetriphosphatase. (1120 aa)
H6C2X9_EXODNDNA mismatch repair protein PMS2. (1035 aa)
H6C364_EXODNCentrin-2. (236 aa)
H6C365_EXODNDNA polymerase iota subunit. (583 aa)
H6C381_EXODNRuvB-like helicase; DNA helicase participates in several chromatin remodeling complexes, including the SWR1 and the INO80 complexes. (457 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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