STRINGSTRING
H6BP54_EXODN H6BP54_EXODN H6C7D0_EXODN H6C7D0_EXODN H6C7Q5_EXODN H6C7Q5_EXODN H6C7S3_EXODN H6C7S3_EXODN H6C7T6_EXODN H6C7T6_EXODN H6C7V8_EXODN H6C7V8_EXODN H6C834_EXODN H6C834_EXODN H6C871_EXODN H6C871_EXODN H6C8A1_EXODN H6C8A1_EXODN H6C8B5_EXODN H6C8B5_EXODN H6C8H6_EXODN H6C8H6_EXODN H6C8S6_EXODN H6C8S6_EXODN H6C8T3_EXODN H6C8T3_EXODN H6C8T4_EXODN H6C8T4_EXODN ADK2 ADK2 H6C8X0_EXODN H6C8X0_EXODN H6C8Y9_EXODN H6C8Y9_EXODN H6C8Z5_EXODN H6C8Z5_EXODN H6C917_EXODN H6C917_EXODN H6C992_EXODN H6C992_EXODN H6C9B4_EXODN H6C9B4_EXODN H6C9B8_EXODN H6C9B8_EXODN H6C9F9_EXODN H6C9F9_EXODN H6C9G3_EXODN H6C9G3_EXODN H6C9H0_EXODN H6C9H0_EXODN H6C9I7_EXODN H6C9I7_EXODN H6C9R1_EXODN H6C9R1_EXODN H6C9T2_EXODN H6C9T2_EXODN H6C9T7_EXODN H6C9T7_EXODN H6C9V3_EXODN H6C9V3_EXODN H6C9X9_EXODN H6C9X9_EXODN H6CA25_EXODN H6CA25_EXODN H6CAA2_EXODN H6CAA2_EXODN H6CAB5_EXODN H6CAB5_EXODN H6CAJ5_EXODN H6CAJ5_EXODN H6CAK2_EXODN H6CAK2_EXODN H6CAS6_EXODN H6CAS6_EXODN H6CB56_EXODN H6CB56_EXODN H6CBF0_EXODN H6CBF0_EXODN H6CBF4_EXODN H6CBF4_EXODN H6CBI8_EXODN H6CBI8_EXODN H6CBK9_EXODN H6CBK9_EXODN H6CBL4_EXODN H6CBL4_EXODN H6CBU6_EXODN H6CBU6_EXODN ADK1 ADK1 H6CBZ2_EXODN H6CBZ2_EXODN H6BPA1_EXODN H6BPA1_EXODN H6BPD5_EXODN H6BPD5_EXODN H6BPI3_EXODN H6BPI3_EXODN H6BPJ9_EXODN H6BPJ9_EXODN H6BPL2_EXODN H6BPL2_EXODN H6BPS4_EXODN H6BPS4_EXODN H6BQ10_EXODN H6BQ10_EXODN H6BQ36_EXODN H6BQ36_EXODN H6BQ93_EXODN H6BQ93_EXODN H6BQG8_EXODN H6BQG8_EXODN H6BQL0_EXODN H6BQL0_EXODN H6BQS5_EXODN H6BQS5_EXODN H6BQT2_EXODN H6BQT2_EXODN H6BQW9_EXODN H6BQW9_EXODN H6BR22_EXODN H6BR22_EXODN H6BV42_EXODN H6BV42_EXODN H6BV02_EXODN H6BV02_EXODN H6BUX8_EXODN H6BUX8_EXODN H6BUV3_EXODN H6BUV3_EXODN H6BUT7_EXODN H6BUT7_EXODN H6BUL5_EXODN H6BUL5_EXODN H6BUK2_EXODN H6BUK2_EXODN H6BUI0_EXODN H6BUI0_EXODN H6BUG7_EXODN H6BUG7_EXODN H6BUE2_EXODN H6BUE2_EXODN H6BUA6_EXODN H6BUA6_EXODN H6BU81_EXODN H6BU81_EXODN H6BU80_EXODN H6BU80_EXODN H6BU63_EXODN H6BU63_EXODN H6BTV0_EXODN H6BTV0_EXODN H6BTN2_EXODN H6BTN2_EXODN H6BTJ2_EXODN H6BTJ2_EXODN H6BTB0_EXODN H6BTB0_EXODN H6BSL3_EXODN H6BSL3_EXODN H6BSH2_EXODN H6BSH2_EXODN H6BSF4_EXODN H6BSF4_EXODN H6BS94_EXODN H6BS94_EXODN H6BS87_EXODN H6BS87_EXODN H6BS37_EXODN H6BS37_EXODN H6BRW8_EXODN H6BRW8_EXODN H6BRU3_EXODN H6BRU3_EXODN H6BRR9_EXODN H6BRR9_EXODN H6BRP7_EXODN H6BRP7_EXODN H6BRN3_EXODN H6BRN3_EXODN H6BRK1_EXODN H6BRK1_EXODN H6BRH7_EXODN H6BRH7_EXODN H6BRF0_EXODN H6BRF0_EXODN H6BR87_EXODN H6BR87_EXODN H6BR46_EXODN H6BR46_EXODN H5WH69_EXODN H5WH69_EXODN H5WH75_EXODN H5WH75_EXODN H5WH76_EXODN H5WH76_EXODN H6BK31_EXODN H6BK31_EXODN H6BK76_EXODN H6BK76_EXODN H6BKF9_EXODN H6BKF9_EXODN H6BKM5_EXODN H6BKM5_EXODN H6BKN0_EXODN H6BKN0_EXODN H6BKP0_EXODN H6BKP0_EXODN H6BKT1_EXODN H6BKT1_EXODN H6BKU6_EXODN H6BKU6_EXODN H6BL47_EXODN H6BL47_EXODN H6BL60_EXODN H6BL60_EXODN H6BL78_EXODN H6BL78_EXODN H6BL84_EXODN H6BL84_EXODN H6BLB7_EXODN H6BLB7_EXODN H6BLE6_EXODN H6BLE6_EXODN H6BLE7_EXODN H6BLE7_EXODN H6BLF6_EXODN H6BLF6_EXODN H6BLN4_EXODN H6BLN4_EXODN BNA4 BNA4 H6BLW0_EXODN H6BLW0_EXODN H6BLW8_EXODN H6BLW8_EXODN H6BM03_EXODN H6BM03_EXODN H6BM16_EXODN H6BM16_EXODN H6BM43_EXODN H6BM43_EXODN BNA5 BNA5 H6BMM3_EXODN H6BMM3_EXODN H6BMN8_EXODN H6BMN8_EXODN H6BMP2_EXODN H6BMP2_EXODN H6BMS2_EXODN H6BMS2_EXODN H6BMU7_EXODN H6BMU7_EXODN H6BMU9_EXODN H6BMU9_EXODN H6BMV1_EXODN H6BMV1_EXODN H6BMX9_EXODN H6BMX9_EXODN H6BMZ8_EXODN H6BMZ8_EXODN H6BN12_EXODN H6BN12_EXODN H6BNI5_EXODN H6BNI5_EXODN H6BNM8_EXODN H6BNM8_EXODN H6BNS3_EXODN H6BNS3_EXODN H6BNS5_EXODN H6BNS5_EXODN H6BNU4_EXODN H6BNU4_EXODN H6BNU6_EXODN H6BNU6_EXODN H6BNX0_EXODN H6BNX0_EXODN H6BNZ4_EXODN H6BNZ4_EXODN H6BP97_EXODN H6BP97_EXODN H6C6V3_EXODN H6C6V3_EXODN H6C6R3_EXODN H6C6R3_EXODN H6C6K3_EXODN H6C6K3_EXODN H6C6K0_EXODN H6C6K0_EXODN H6C6E3_EXODN H6C6E3_EXODN H6C6D7_EXODN H6C6D7_EXODN H6C6C0_EXODN H6C6C0_EXODN H6C693_EXODN H6C693_EXODN H6C690_EXODN H6C690_EXODN H6C686_EXODN H6C686_EXODN H6C659_EXODN H6C659_EXODN H6C651_EXODN H6C651_EXODN H6C649_EXODN H6C649_EXODN H6C636_EXODN H6C636_EXODN H6C635_EXODN H6C635_EXODN H6C631_EXODN H6C631_EXODN H6C5S5_EXODN H6C5S5_EXODN H6C5S4_EXODN H6C5S4_EXODN H6C590_EXODN H6C590_EXODN H6C538_EXODN H6C538_EXODN BNA1 BNA1 H6C4T1_EXODN H6C4T1_EXODN H6C4M8_EXODN H6C4M8_EXODN H6C4M0_EXODN H6C4M0_EXODN H6C4L6_EXODN H6C4L6_EXODN H6C4F1_EXODN H6C4F1_EXODN H6C452_EXODN H6C452_EXODN H6C3T5_EXODN H6C3T5_EXODN H6C3N5_EXODN H6C3N5_EXODN H6C3K0_EXODN H6C3K0_EXODN H6C3H3_EXODN H6C3H3_EXODN H6C3D3_EXODN H6C3D3_EXODN H6C396_EXODN H6C396_EXODN H6C383_EXODN H6C383_EXODN H6C377_EXODN H6C377_EXODN H6C361_EXODN H6C361_EXODN H6C2U1_EXODN H6C2U1_EXODN H6C2M9_EXODN H6C2M9_EXODN H6C2H8_EXODN H6C2H8_EXODN H6C2F1_EXODN H6C2F1_EXODN H6C216_EXODN H6C216_EXODN H6C1R8_EXODN H6C1R8_EXODN H6C1P2_EXODN H6C1P2_EXODN H6C1K7_EXODN H6C1K7_EXODN H6C150_EXODN H6C150_EXODN H6C140_EXODN H6C140_EXODN H6C104_EXODN H6C104_EXODN H6C0Y3_EXODN H6C0Y3_EXODN H6C0P1_EXODN H6C0P1_EXODN AAH1 AAH1 H6C0E7_EXODN H6C0E7_EXODN H6C093_EXODN H6C093_EXODN H6C042_EXODN H6C042_EXODN H6C035_EXODN H6C035_EXODN H6BZZ7_EXODN H6BZZ7_EXODN H6BZX4_EXODN H6BZX4_EXODN H6BZL5_EXODN H6BZL5_EXODN H6BZD3_EXODN H6BZD3_EXODN H6BZ31_EXODN H6BZ31_EXODN H6BZ09_EXODN H6BZ09_EXODN H6BYY5_EXODN H6BYY5_EXODN H6BYG2_EXODN H6BYG2_EXODN H6BYE7_EXODN H6BYE7_EXODN H6BYE6_EXODN H6BYE6_EXODN H6BYD4_EXODN H6BYD4_EXODN H6BY64_EXODN H6BY64_EXODN H6BY42_EXODN H6BY42_EXODN H6BXX1_EXODN H6BXX1_EXODN H6BXW0_EXODN H6BXW0_EXODN H6BXL3_EXODN H6BXL3_EXODN H6BXK9_EXODN H6BXK9_EXODN H6BXC3_EXODN H6BXC3_EXODN H6BX73_EXODN H6BX73_EXODN H6BX16_EXODN H6BX16_EXODN H6BWJ6_EXODN H6BWJ6_EXODN H6BVX1_EXODN H6BVX1_EXODN H6BVT9_EXODN H6BVT9_EXODN H6BVK0_EXODN H6BVK0_EXODN H6BVJ1_EXODN H6BVJ1_EXODN H6BVG7_EXODN H6BVG7_EXODN H6BV91_EXODN H6BV91_EXODN H6BV64_EXODN H6BV64_EXODN H6C6Y4_EXODN H6C6Y4_EXODN H6C6Z7_EXODN H6C6Z7_EXODN H6C709_EXODN H6C709_EXODN H6C727_EXODN H6C727_EXODN H6C780_EXODN H6C780_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.
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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
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textmining
co-expression
protein homology
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H6BP54_EXODNGuanosine-diphosphatase; Belongs to the GDA1/CD39 NTPase family. (576 aa)
H6C7D0_EXODNAMP deaminase. (1146 aa)
H6C7Q5_EXODNF-type H+-transporting ATPase subunit H. (124 aa)
H6C7S3_EXODNSer/Thr/Tyr protein kinase RAD53. (1082 aa)
H6C7T6_EXODNATP synthase subunit gamma. (298 aa)
H6C7V8_EXODNUncharacterized protein. (160 aa)
H6C834_EXODNCytosine deaminase. (150 aa)
H6C871_EXODNCTP synthase; Catalyzes the ATP-dependent amination of UTP to CTP with either L-glutamine or ammonia as the source of nitrogen. (600 aa)
H6C8A1_EXODNNudix hydrolase domain-containing protein. (158 aa)
H6C8B5_EXODNMannose-6-phosphate isomerase. (443 aa)
H6C8H6_EXODNAdenosine deaminase. (618 aa)
H6C8S6_EXODNUncharacterized protein. (165 aa)
H6C8T3_EXODNFungal_trans domain-containing protein. (433 aa)
H6C8T4_EXODNUncharacterized protein. (150 aa)
ADK2GTP:AMP phosphotransferase, mitochondrial; Involved in maintaining the homeostasis of cellular nucleotides by catalyzing the interconversion of nucleoside phosphates. Has GTP:AMP phosphotransferase and ITP:AMP phosphotransferase activities. (259 aa)
H6C8X0_EXODNGlucose-6-phosphate isomerase; Belongs to the GPI family. (553 aa)
H6C8Y9_EXODNUricase; Catalyzes the oxidation of uric acid to 5-hydroxyisourate, which is further processed to form (S)-allantoin. Belongs to the uricase family. (296 aa)
H6C8Z5_EXODNUncharacterized protein. (436 aa)
H6C917_EXODNSuccinate--CoA ligase [ADP-forming] subunit beta, mitochondrial; Succinyl-CoA synthetase functions in the citric acid cycle (TCA), coupling the hydrolysis of succinyl-CoA to the synthesis of ATP and thus represents the only step of substrate-level phosphorylation in the TCA. The beta subunit provides nucleotide specificity of the enzyme and binds the substrate succinate, while the binding sites for coenzyme A and phosphate are found in the alpha subunit. (441 aa)
H6C992_EXODNFructose-bisphosphate aldolase; Catalyzes the aldol condensation of dihydroxyacetone phosphate (DHAP or glycerone-phosphate) with glyceraldehyde 3-phosphate (G3P) to form fructose 1,6-bisphosphate (FBP) in gluconeogenesis and the reverse reaction in glycolysis; Belongs to the class II fructose-bisphosphate aldolase family. (360 aa)
H6C9B4_EXODNZn(2)-C6 fungal-type domain-containing protein. (683 aa)
H6C9B8_EXODNNucleotide pyrophosphatase. (714 aa)
H6C9F9_EXODNFructose-bisphosphate aldolase class-I. (369 aa)
H6C9G3_EXODNPhosphotransferase. (489 aa)
H6C9H0_EXODNRiboflavin kinase. (191 aa)
H6C9I7_EXODNRED_N domain-containing protein. (516 aa)
H6C9R1_EXODNVacuolar proton pump subunit B; Non-catalytic subunit of the peripheral V1 complex of vacuolar ATPase; Belongs to the ATPase alpha/beta chains family. (509 aa)
H6C9T2_EXODNdCMP deaminase. (434 aa)
H6C9T7_EXODNIsochorismatase. (238 aa)
H6C9V3_EXODNNicotinamide-nucleotide adenylyltransferase; Belongs to the eukaryotic NMN adenylyltransferase family. (419 aa)
H6C9X9_EXODNUncharacterized protein. (291 aa)
H6CA25_EXODNThymidylate synthase. (385 aa)
H6CAA2_EXODNPhosphoribosylaminoimidazole carboxylase; In the C-terminal section; belongs to the AIR carboxylase family. Class I subfamily. (606 aa)
H6CAB5_EXODNS-methyl-5'-thioadenosine phosphorylase; Catalyzes the reversible phosphorylation of S-methyl-5'- thioadenosine (MTA) to adenine and 5-methylthioribose-1-phosphate. Involved in the breakdown of MTA, a major by-product of polyamine biosynthesis. Responsible for the first step in the methionine salvage pathway after MTA has been generated from S-adenosylmethionine. Has broad substrate specificity with 6-aminopurine nucleosides as preferred substrates. (314 aa)
H6CAJ5_EXODNBH4_2 domain-containing protein. (486 aa)
H6CAK2_EXODNFormyltetrahydrofolate deformylase. (353 aa)
H6CAS6_EXODNPhosphoribosylaminoimidazole-succinocarboxamide synthase. (306 aa)
H6CB56_EXODNdUTP pyrophosphatase. (203 aa)
H6CBF0_EXODNRibose-phosphate pyrophosphokinase. (533 aa)
H6CBF4_EXODNAcetyltransferase component of pyruvate dehydrogenase complex; The pyruvate dehydrogenase complex catalyzes the overall conversion of pyruvate to acetyl-CoA and CO(2). (498 aa)
H6CBI8_EXODNAcetyl-CoA synthetase. (590 aa)
H6CBK9_EXODNGlutamine-dependent NAD(+) synthetase; In the C-terminal section; belongs to the NAD synthetase family. (718 aa)
H6CBL4_EXODN3-carboxy-cis,cis-muconate cycloisomerase. (453 aa)
H6CBU6_EXODN3-hydroxyisobutyrate dehydrogenase. (326 aa)
ADK1Adenylate kinase; Catalyzes the reversible transfer of the terminal phosphate group between ATP and AMP. Plays an important role in cellular energy homeostasis and in adenine nucleotide metabolism. Adenylate kinase activity is critical for regulation of the phosphate utilization and the AMP de novo biosynthesis pathways. (273 aa)
H6CBZ2_EXODN3-hydroxyisobutyrate dehydrogenase. (339 aa)
H6BPA1_EXODNChlorohydrolase. (510 aa)
H6BPD5_EXODNPhosphomannose isomerase type I. (406 aa)
H6BPI3_EXODNNAD+ kinase. (702 aa)
H6BPJ9_EXODNUDP-N-acetyl-D-mannosamine 6-dehydrogenase; Belongs to the UDP-glucose/GDP-mannose dehydrogenase family. (391 aa)
H6BPL2_EXODNIndoleamine 2,3-dioxygenase. (515 aa)
H6BPS4_EXODNRibose-phosphate pyrophosphokinase. (449 aa)
H6BQ10_EXODN3-hydroxyisobutyrate dehydrogenase. (462 aa)
H6BQ36_EXODNAmidohydro-rel domain-containing protein. (355 aa)
H6BQ93_EXODNEAF domain-containing protein. (567 aa)
H6BQG8_EXODNF-type H+-transporting ATPase subunit J. (63 aa)
H6BQL0_EXODNAllantoicase. (400 aa)
H6BQS5_EXODNFructose-bisphosphate aldolase; Catalyzes the aldol condensation of dihydroxyacetone phosphate (DHAP or glycerone-phosphate) with glyceraldehyde 3-phosphate (G3P) to form fructose 1,6-bisphosphate (FBP) in gluconeogenesis and the reverse reaction in glycolysis; Belongs to the class II fructose-bisphosphate aldolase family. (290 aa)
H6BQT2_EXODNUncharacterized protein. (484 aa)
H6BQW9_EXODNPhosphoacetylglucosamine mutase; Catalyzes the conversion of GlcNAc-6-P into GlcNAc-1-P during the synthesis of uridine diphosphate/UDP-GlcNAc, which is a biosynthetic precursor of chitin and also supplies the amino sugars for N-linked oligosaccharides of glycoproteins. Belongs to the phosphohexose mutase family. (567 aa)
H6BR22_EXODNPhosphopantothenate-cysteine ligase. (364 aa)
H6BV42_EXODNGuanylate kinase. (278 aa)
H6BV02_EXODNAlkaline phosphatase; Belongs to the alkaline phosphatase family. (669 aa)
H6BUX8_EXODNAdenylosuccinate synthetase; Plays an important role in the de novo pathway and in the salvage pathway of purine nucleotide biosynthesis. Catalyzes the first commited step in the biosynthesis of AMP from IMP. (420 aa)
H6BUV3_EXODNPhosphoribosylformylglycinamidine synthase. (1379 aa)
H6BUT7_EXODNAdenylosuccinate synthetase; Plays an important role in the de novo pathway and in the salvage pathway of purine nucleotide biosynthesis. Catalyzes the first commited step in the biosynthesis of AMP from IMP. (453 aa)
H6BUL5_EXODNNudix hydrolase domain-containing protein. (451 aa)
H6BUK2_EXODNATP synthase subunit beta; Produces ATP from ADP in the presence of a proton gradient across the membrane. (519 aa)
H6BUI0_EXODNRibonucleoside-diphosphate reductase; Provides the precursors necessary for DNA synthesis. Catalyzes the biosynthesis of deoxyribonucleotides from the corresponding ribonucleotides. (918 aa)
H6BUG7_EXODNDNA glycosylase. (443 aa)
H6BUE2_EXODNPhosphopantothenoylcysteine decarboxylase. (232 aa)
H6BUA6_EXODNF-type H+-transporting ATPase subunit epsilon. (76 aa)
H6BU81_EXODNZn(2)-C6 fungal-type domain-containing protein. (693 aa)
H6BU80_EXODNZn(2)-C6 fungal-type domain-containing protein. (620 aa)
H6BU63_EXODNUncharacterized protein. (397 aa)
H6BTV0_EXODNDiphosphomevalonate decarboxylase; Belongs to the diphosphomevalonate decarboxylase family. (399 aa)
H6BTN2_EXODN4HBT domain-containing protein. (173 aa)
H6BTJ2_EXODNSeptum formation protein. (276 aa)
H6BTB0_EXODNZn(2)-C6 fungal-type domain-containing protein. (1090 aa)
H6BSL3_EXODNATP synthase subunit 4, mitochondrial. (248 aa)
H6BSH2_EXODNThymidylate kinase. (226 aa)
H6BSF4_EXODNLong-chain fatty-acid-CoA ligase. (702 aa)
H6BS94_EXODNV-type proton ATPase catalytic subunit A. (688 aa)
H6BS87_EXODNNicotinate-nucleotide pyrophosphorylase [carboxylating]; Involved in the catabolism of quinolinic acid (QA). Belongs to the NadC/ModD family. (315 aa)
H6BS37_EXODNGMP synthase. (544 aa)
H6BRW8_EXODNPhosphoglycerate mutase; Belongs to the phosphoglycerate mutase family. BPG- dependent PGAM subfamily. (235 aa)
H6BRU3_EXODNUncharacterized protein. (273 aa)
H6BRR9_EXODNPhosphotransferase. (595 aa)
H6BRP7_EXODNMethylmalonate-semialdehyde dehydrogenase (Acylating). (318 aa)
H6BRN3_EXODNAdenine phosphoribosyltransferase. (213 aa)
H6BRK1_EXODNDephospho-CoA kinase. (284 aa)
H6BRH7_EXODNCarbamoyl-phosphate synthase arginine-specific large chain. (1164 aa)
H6BRF0_EXODNZn(2)-C6 fungal-type domain-containing protein. (745 aa)
H6BR87_EXODNATP-dependent (S)-NAD(P)H-hydrate dehydratase; Catalyzes the dehydration of the S-form of NAD(P)HX at the expense of ATP, which is converted to ADP. Together with NAD(P)HX epimerase, which catalyzes the epimerization of the S-and R-forms, the enzyme allows the repair of both epimers of NAD(P)HX, a damaged form of NAD(P)H that is a result of enzymatic or heat-dependent hydration. Belongs to the NnrD/CARKD family. (345 aa)
H6BR46_EXODNCytidine deaminase; This enzyme scavenges exogenous and endogenous cytidine and 2'-deoxycytidine for UMP synthesis; Belongs to the cytidine and deoxycytidylate deaminase family. (162 aa)
H5WH69_EXODNATP synthase subunit 9, mitochondrial; Belongs to the ATPase C chain family. (74 aa)
H5WH75_EXODNATP synthase subunit 8. (56 aa)
H5WH76_EXODNATP synthase subunit a. (258 aa)
H6BK31_EXODNUncharacterized protein. (829 aa)
H6BK76_EXODNDNA glycosylase. (365 aa)
H6BKF9_EXODNUracil phosphoribosyltransferase. (287 aa)
H6BKM5_EXODNOHCU_decarbox domain-containing protein. (177 aa)
H6BKN0_EXODNRibonucleoside-diphosphate reductase small chain. (417 aa)
H6BKP0_EXODN3-hydroxy-3-methylglutaryl coenzyme A synthase; This enzyme condenses acetyl-CoA with acetoacetyl-CoA to form HMG-CoA, which is the substrate for HMG-CoA reductase. (468 aa)
H6BKT1_EXODNElongation factor EF-1 alpha subunit. (655 aa)
H6BKU6_EXODNATP-citrate synthase subunit 2. (485 aa)
H6BL47_EXODNUncharacterized protein. (208 aa)
H6BL60_EXODNUncharacterized protein. (411 aa)
H6BL78_EXODNFungal_trans domain-containing protein. (631 aa)
H6BL84_EXODNPyruvate kinase; Belongs to the pyruvate kinase family. (524 aa)
H6BLB7_EXODNPhosphomannomutase; Involved in the synthesis of the GDP-mannose and dolichol- phosphate-mannose required for a number of critical mannosyl transfer reactions. (270 aa)
H6BLE6_EXODNPhosphoribosylaminoimidazole carboxylase; In the C-terminal section; belongs to the AIR carboxylase family. Class I subfamily. (603 aa)
H6BLE7_EXODNNicotinate phosphoribosyltransferase. (487 aa)
H6BLF6_EXODNTriosephosphate isomerase. (250 aa)
H6BLN4_EXODNProtein pyrABCN. (2296 aa)
BNA4Kynurenine 3-monooxygenase; Catalyzes the hydroxylation of L-kynurenine (L-Kyn) to form 3-hydroxy-L-kynurenine (L-3OHKyn). Required for synthesis of quinolinic acid. (482 aa)
H6BLW0_EXODN3-hydroxyisobutyrate dehydrogenase. (335 aa)
H6BLW8_EXODNPhosphoribosylglycinamide formyltransferase. (257 aa)
H6BM03_EXODNPribosyltran domain-containing protein. (203 aa)
H6BM16_EXODNUncharacterized protein. (79 aa)
H6BM43_EXODNPalmitoyl-CoA hydrolase. (260 aa)
BNA5Kynureninase; Catalyzes the cleavage of L-kynurenine (L-Kyn) and L-3- hydroxykynurenine (L-3OHKyn) into anthranilic acid (AA) and 3- hydroxyanthranilic acid (3-OHAA), respectively; Belongs to the kynureninase family. (468 aa)
H6BMM3_EXODNYjeF. (226 aa)
H6BMN8_EXODNFMN adenylyltransferase. (354 aa)
H6BMP2_EXODNGlyceraldehyde-3-phosphate dehydrogenase. (337 aa)
H6BMS2_EXODNElongator complex protein 2. (451 aa)
H6BMU7_EXODNBifunctional purine biosynthesis protein ADE17. (598 aa)
H6BMU9_EXODNGlutaryl-CoA dehydrogenase. (439 aa)
H6BMV1_EXODNMevalonate kinase; Catalyzes the phosphorylation of mevalonate to mevalonate 5- phosphate, a key step in isoprenoid and cholesterol biosynthesis. Belongs to the GHMP kinase family. Mevalonate kinase subfamily. (477 aa)
H6BMX9_EXODNMIT family metal ion transporter. (693 aa)
H6BMZ8_EXODNNAD+ kinase. (540 aa)
H6BN12_EXODNUridylate kinase; Catalyzes the phosphorylation of pyrimidine nucleoside monophosphates at the expense of ATP. Plays an important role in de novo pyrimidine nucleotide biosynthesis. Has preference for UMP and dUMP as phosphate acceptors, but can also use CMP, dCMP and AMP. Belongs to the adenylate kinase family. UMP-CMP kinase subfamily. (238 aa)
H6BNI5_EXODNEnolase. (438 aa)
H6BNM8_EXODNUncharacterized protein. (427 aa)
H6BNS3_EXODNATP-dependent 6-phosphofructokinase; Catalyzes the phosphorylation of D-fructose 6-phosphate to fructose 1,6-bisphosphate by ATP, the first committing step of glycolysis; Belongs to the phosphofructokinase type A (PFKA) family. ATP-dependent PFK group I subfamily. Eukaryotic two domain clade 'E' sub-subfamily. (794 aa)
H6BNS5_EXODNIMP-specific 5'-nucleotidase 1; IMP-specific 5'-nucleotidase involved in IMP (inositol monophosphate) degradation. (389 aa)
H6BNU4_EXODNCMP/dCMP-type deaminase domain-containing protein. (345 aa)
H6BNU6_EXODNType II pantothenate kinase. (440 aa)
H6BNX0_EXODNGlucosamine-fructose-6-phosphate aminotransferase. (701 aa)
H6BNZ4_EXODNNicotinate phosphoribosyltransferase; Catalyzes the synthesis of beta-nicotinate D-ribonucleotide from nicotinate and 5-phospho-D-ribose 1-phosphate at the expense of ATP; Belongs to the NAPRTase family. (447 aa)
H6BP97_EXODNMannose-1-phosphate guanyltransferase. (382 aa)
H6C6V3_EXODNATP adenylyltransferase. (342 aa)
H6C6R3_EXODNATP synthase subunit alpha; Produces ATP from ADP in the presence of a proton gradient across the membrane. (556 aa)
H6C6K3_EXODNPhosphomevalonate kinase; Belongs to the GHMP kinase family. Mevalonate kinase subfamily. (516 aa)
H6C6K0_EXODNUridine kinase; Belongs to the uridine kinase family. (478 aa)
H6C6E3_EXODNFlavokinase domain-containing protein. (648 aa)
H6C6D7_EXODN3-hydroxyisobutyrate dehydrogenase; Belongs to the HIBADH-related family. (336 aa)
H6C6C0_EXODNF-type H+-transporting ATPase subunit F. (101 aa)
H6C693_EXODNAmidophosphoribosyltransferase. (592 aa)
H6C690_EXODNAcyl-CoA thioester hydrolase. (459 aa)
H6C686_EXODNPhosphotransferase. (496 aa)
H6C659_EXODNNudix hydrolase domain-containing protein. (274 aa)
H6C651_EXODNPhosphotransferase. (523 aa)
H6C649_EXODNOrotate phosphoribosyltransferase. (245 aa)
H6C636_EXODNPyruvate dehydrogenase E1 component subunit beta; The pyruvate dehydrogenase complex catalyzes the overall conversion of pyruvate to acetyl-CoA and CO2. (376 aa)
H6C635_EXODNMetallophos domain-containing protein. (608 aa)
H6C631_EXODNTriosephosphate isomerase. (302 aa)
H6C5S5_EXODNHD domain-containing protein. (266 aa)
H6C5S4_EXODNBis(5'-adenosyl)-triphosphatase. (194 aa)
H6C590_EXODNUncharacterized protein. (429 aa)
H6C538_EXODNDihydroorotate reductase PyrE. (663 aa)
BNA13-hydroxyanthranilate 3,4-dioxygenase; Catalyzes the oxidative ring opening of 3-hydroxyanthranilate to 2-amino-3-carboxymuconate semialdehyde, which spontaneously cyclizes to quinolinate. (194 aa)
H6C4T1_EXODNRibose-phosphate pyrophosphokinase. (380 aa)
H6C4M8_EXODN2,3-bisphosphoglycerate-independent phosphoglycerate mutase. (520 aa)
H6C4M0_EXODNUncharacterized protein. (1517 aa)
H6C4L6_EXODNAllantoinase. (547 aa)
H6C4F1_EXODNPalmitoyl-CoA hydrolase. (387 aa)
H6C452_EXODNEnolase. (445 aa)
H6C3T5_EXODNDihydrolipoyllysine-residue succinyltransferase, E2 component. (472 aa)
H6C3N5_EXODN4HBT domain-containing protein. (159 aa)
H6C3K0_EXODNAdenylate cyclase. (2040 aa)
H6C3H3_EXODNPyruvate dehydrogenase E1 component subunit alpha; The pyruvate dehydrogenase complex catalyzes the overall conversion of pyruvate to acetyl-CoA and CO(2). (409 aa)
H6C3D3_EXODNUncharacterized protein. (2293 aa)
H6C396_EXODNAdenylosuccinate lyase; Belongs to the lyase 1 family. Adenylosuccinate lyase subfamily. (483 aa)
H6C383_EXODNUncharacterized protein. (400 aa)
H6C377_EXODNXanthine dehydrogenase. (1360 aa)
H6C361_EXODNAcetyl-coenzyme A synthetase. (670 aa)
H6C2U1_EXODNHit family protein 1. (134 aa)
H6C2M9_EXODNFructose-bisphosphate aldolase; Catalyzes the aldol condensation of dihydroxyacetone phosphate (DHAP or glycerone-phosphate) with glyceraldehyde 3-phosphate (G3P) to form fructose 1,6-bisphosphate (FBP) in gluconeogenesis and the reverse reaction in glycolysis; Belongs to the class II fructose-bisphosphate aldolase family. (294 aa)
H6C2H8_EXODNDihydroorotase, homodimeric type. (370 aa)
H6C2F1_EXODNGuanine deaminase; Catalyzes the hydrolytic deamination of guanine, producing xanthine and ammonia; Belongs to the metallo-dependent hydrolases superfamily. ATZ/TRZ family. (462 aa)
H6C216_EXODNATP synthase subunit d, mitochondrial; Mitochondrial membrane ATP synthase (F(1)F(0) ATP synthase or Complex V) produces ATP from ADP in the presence of a proton gradient across the membrane which is generated by electron transport complexes of the respiratory chain. F-type ATPases consist of two structural domains, F(1) - containing the extramembraneous catalytic core, and F(0) - containing the membrane proton channel, linked together by a central stalk and a peripheral stalk. During catalysis, ATP synthesis in the catalytic domain of F(1) is coupled via a rotary mechanism of the cent [...] (174 aa)
H6C1R8_EXODNFlavoprotein domain-containing protein. (597 aa)
H6C1P2_EXODNF-type H+-transporting ATPase subunit G. (203 aa)
H6C1K7_EXODN5-hydroxyisourate hydrolase; Belongs to the transthyretin family. 5-hydroxyisourate hydrolase subfamily. (128 aa)
H6C150_EXODNIsochorismatase family hydrolase. (232 aa)
H6C140_EXODNNudix hydrolase domain-containing protein; Belongs to the Nudix hydrolase family. (302 aa)
H6C104_EXODNPyruvate dehydrogenase E2 component (Dihydrolipoamide acetyltransferase). (468 aa)
H6C0Y3_EXODN5-methyltetrahydropteroyltriglutamate-homocysteine methyltransferase. (774 aa)
H6C0P1_EXODNUDP-N-acetylglucosamine pyrophosphorylase. (513 aa)
AAH1Adenine deaminase; Catalyzes the hydrolytic deamination of adenine to hypoxanthine. Plays an important role in the purine salvage pathway and in nitrogen catabolism; Belongs to the metallo-dependent hydrolases superfamily. Adenosine and AMP deaminases family. Adenine deaminase type 2 subfamily. (348 aa)
H6C0E7_EXODNUTP--glucose-1-phosphate uridylyltransferase. (524 aa)
H6C093_EXODNNAD+ kinase. (462 aa)
H6C042_EXODN3-hydroxy-3-methylglutaryl coenzyme A reductase. (1152 aa)
H6C035_EXODN3',5'-cyclic-nucleotide phosphodiesterase. (642 aa)
H6BZZ7_EXODN5'-nucleotidase; Belongs to the 5'-nucleotidase family. (632 aa)
H6BZX4_EXODNInosine-5'-monophosphate dehydrogenase; Catalyzes the conversion of inosine 5'-phosphate (IMP) to xanthosine 5'-phosphate (XMP), the first committed and rate-limiting step in the de novo synthesis of guanine nucleotides, and therefore plays an important role in the regulation of cell growth. (550 aa)
H6BZL5_EXODNCytidylate kinase; Belongs to the adenylate kinase family. (388 aa)
H6BZD3_EXODNCarbamoyl-phosphate synthase arginine-specific small chain. (481 aa)
H6BZ31_EXODNPhosphoserine aminotransferase; Belongs to the class-V pyridoxal-phosphate-dependent aminotransferase family. (440 aa)
H6BZ09_EXODNAlkaline phosphatase. (625 aa)
H6BYY5_EXODNAdenosine kinase. (348 aa)
H6BYG2_EXODNUDP-glucose 4-epimerase. (311 aa)
H6BYE7_EXODNAdenylate kinase isoenzyme 6 homolog; Broad-specificity nucleoside monophosphate (NMP) kinase that catalyzes the reversible transfer of the terminal phosphate group between nucleoside triphosphates and monophosphates. Has also ATPase activity. May be involved in rRNA maturation and transcription regulation. (193 aa)
H6BYE6_EXODNInosine triphosphate pyrophosphatase; Pyrophosphatase that hydrolyzes non-canonical purine nucleotides such as inosine triphosphate (ITP), deoxyinosine triphosphate (dITP) or xanthosine 5'-triphosphate (XTP) to their respective monophosphate derivatives. The enzyme does not distinguish between the deoxy- and ribose forms. Probably excludes non-canonical purines from RNA and DNA precursor pools, thus preventing their incorporation into RNA and DNA and avoiding chromosomal lesions. Belongs to the HAM1 NTPase family. (204 aa)
H6BYD4_EXODNUracil phosphoribosyltransferase. (248 aa)
H6BY64_EXODNPropionyl-CoA synthetase. (697 aa)
H6BY42_EXODNUncharacterized protein. (394 aa)
H6BXX1_EXODNATP-grasp domain-containing protein. (795 aa)
H6BXW0_EXODNGlucosamine 6-phosphate N-acetyltransferase; Belongs to the acetyltransferase family. GNA1 subfamily. (246 aa)
H6BXL3_EXODNDNA glycosylase. (477 aa)
H6BXK9_EXODN3-hydroxyisobutyrate dehydrogenase. (346 aa)
H6BXC3_EXODNPhosphoglycerate kinase; Belongs to the phosphoglycerate kinase family. (417 aa)
H6BX73_EXODNUncharacterized protein. (367 aa)
H6BX16_EXODNNucleoside diphosphate kinase. (153 aa)
H6BWJ6_EXODNUncharacterized protein. (438 aa)
H6BVX1_EXODNUDPglucose 6-dehydrogenase. (653 aa)
H6BVT9_EXODNPhosphotransferase. (532 aa)
H6BVK0_EXODNApyrase; Belongs to the GDA1/CD39 NTPase family. (703 aa)
H6BVJ1_EXODNZn(2)-C6 fungal-type domain-containing protein. (701 aa)
H6BVG7_EXODNDihydroorotate dehydrogenase (fumarate); Catalyzes the conversion of dihydroorotate to orotate with fumarate as the electron acceptor; Belongs to the dihydroorotate dehydrogenase family. Type 1 subfamily. (373 aa)
H6BV91_EXODNUncharacterized protein. (330 aa)
H6BV64_EXODNProbable acetate kinase. (423 aa)
H6C6Y4_EXODNOrotidine 5'-phosphate decarboxylase; Belongs to the OMP decarboxylase family. (273 aa)
H6C6Z7_EXODNATP synthase F1, delta subunit. (228 aa)
H6C709_EXODNMethylenetetrahydrofolate dehydrogenase (NAD+). (351 aa)
H6C727_EXODNATP synthase subunit delta, mitochondrial. (165 aa)
H6C780_EXODNGlutaryl-CoA dehydrogenase. (426 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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