STRINGSTRING
H6BTY7_EXODN H6BTY7_EXODN H6BTY8_EXODN H6BTY8_EXODN H6BU49_EXODN H6BU49_EXODN H6BUA6_EXODN H6BUA6_EXODN H6BUA8_EXODN H6BUA8_EXODN H6BUK2_EXODN H6BUK2_EXODN H6BUK3_EXODN H6BUK3_EXODN H6CC16_EXODN H6CC16_EXODN H6BUQ4_EXODN H6BUQ4_EXODN H6BUS4_EXODN H6BUS4_EXODN H6BUT7_EXODN H6BUT7_EXODN H6BUV5_EXODN H6BUV5_EXODN H6BUX8_EXODN H6BUX8_EXODN H6BUY8_EXODN H6BUY8_EXODN H6BVA6_EXODN H6BVA6_EXODN H6BVL8_EXODN H6BVL8_EXODN H6BVN8_EXODN H6BVN8_EXODN H6CBX9_EXODN H6CBX9_EXODN H6CBX0_EXODN H6CBX0_EXODN H6CBI3_EXODN H6CBI3_EXODN H6CBD3_EXODN H6CBD3_EXODN H6CBC3_EXODN H6CBC3_EXODN H6CB09_EXODN H6CB09_EXODN H6CAS3_EXODN H6CAS3_EXODN H6CAN7_EXODN H6CAN7_EXODN H6CAJ8_EXODN H6CAJ8_EXODN H6CAJ4_EXODN H6CAJ4_EXODN H6CAI9_EXODN H6CAI9_EXODN H6C9Y9_EXODN H6C9Y9_EXODN H6C9U9_EXODN H6C9U9_EXODN H6C9U5_EXODN H6C9U5_EXODN H6C9U1_EXODN H6C9U1_EXODN H6C9P2_EXODN H6C9P2_EXODN H6C9M8_EXODN H6C9M8_EXODN H6C9M7_EXODN H6C9M7_EXODN H6C9H7_EXODN H6C9H7_EXODN H6C9D8_EXODN H6C9D8_EXODN H6C985_EXODN H6C985_EXODN H6C8Z5_EXODN H6C8Z5_EXODN H6C8Z0_EXODN H6C8Z0_EXODN H6C8A4_EXODN H6C8A4_EXODN H6C8A0_EXODN H6C8A0_EXODN H6C7X0_EXODN H6C7X0_EXODN H6C7V8_EXODN H6C7V8_EXODN H6C7T0_EXODN H6C7T0_EXODN H6C7Q7_EXODN H6C7Q7_EXODN H6C7Q5_EXODN H6C7Q5_EXODN H6C787_EXODN H6C787_EXODN H6C765_EXODN H6C765_EXODN H6C727_EXODN H6C727_EXODN H6C6Z7_EXODN H6C6Z7_EXODN H6C6T5_EXODN H6C6T5_EXODN H6C6C0_EXODN H6C6C0_EXODN H6C6B4_EXODN H6C6B4_EXODN H6C6A6_EXODN H6C6A6_EXODN H6C636_EXODN H6C636_EXODN H6C612_EXODN H6C612_EXODN H6C5Z3_EXODN H6C5Z3_EXODN H6C5K5_EXODN H6C5K5_EXODN H6C532_EXODN H6C532_EXODN H6C4X9_EXODN H6C4X9_EXODN H6C4V3_EXODN H6C4V3_EXODN H6C4P8_EXODN H6C4P8_EXODN H6C4P0_EXODN H6C4P0_EXODN H6C485_EXODN H6C485_EXODN H6C3Y5_EXODN H6C3Y5_EXODN H6C3V0_EXODN H6C3V0_EXODN H6C3P3_EXODN H6C3P3_EXODN H6C3M7_EXODN H6C3M7_EXODN H6C3E7_EXODN H6C3E7_EXODN H6C3C6_EXODN H6C3C6_EXODN H6C380_EXODN H6C380_EXODN H6C306_EXODN H6C306_EXODN H6C2Z4_EXODN H6C2Z4_EXODN H6C2X6_EXODN H6C2X6_EXODN H6C2U7_EXODN H6C2U7_EXODN H6C2R4_EXODN H6C2R4_EXODN H6C2Q0_EXODN H6C2Q0_EXODN H6C2M3_EXODN H6C2M3_EXODN MDM34 MDM34 H6C2F0_EXODN H6C2F0_EXODN H6C293_EXODN H6C293_EXODN H6C272_EXODN H6C272_EXODN H6C264_EXODN H6C264_EXODN H6C246_EXODN H6C246_EXODN H6C235_EXODN H6C235_EXODN H6C216_EXODN H6C216_EXODN H6C1R3_EXODN H6C1R3_EXODN H6C1P2_EXODN H6C1P2_EXODN H6C1J0_EXODN H6C1J0_EXODN H6C187_EXODN H6C187_EXODN H6C176_EXODN H6C176_EXODN MDM12 MDM12 H6BZH4_EXODN H6BZH4_EXODN H6BZ80_EXODN H6BZ80_EXODN H6BYZ5_EXODN H6BYZ5_EXODN H6BYY7_EXODN H6BYY7_EXODN H6BYX4_EXODN H6BYX4_EXODN H6BYT8_EXODN H6BYT8_EXODN H6BYJ1_EXODN H6BYJ1_EXODN H6BYF2_EXODN H6BYF2_EXODN H6BYE2_EXODN H6BYE2_EXODN H6BYB3_EXODN H6BYB3_EXODN H6BY85_EXODN H6BY85_EXODN H6BX73_EXODN H6BX73_EXODN H6BX70_EXODN H6BX70_EXODN H6BWR0_EXODN H6BWR0_EXODN H6BWC6_EXODN H6BWC6_EXODN H6BWC3_EXODN H6BWC3_EXODN H6BW84_EXODN H6BW84_EXODN H6BVZ5_EXODN H6BVZ5_EXODN H6BVS4_EXODN H6BVS4_EXODN H6BJX8_EXODN H6BJX8_EXODN H6BJT8_EXODN H6BJT8_EXODN H5WH79_EXODN H5WH79_EXODN H5WH74_EXODN H5WH74_EXODN H5WH68_EXODN H5WH68_EXODN H6C4X8_EXODN H6C4X8_EXODN H6BKA3_EXODN H6BKA3_EXODN H6BKG4_EXODN H6BKG4_EXODN H6BKJ8_EXODN H6BKJ8_EXODN H6BL06_EXODN H6BL06_EXODN H6BL12_EXODN H6BL12_EXODN H6BL13_EXODN H6BL13_EXODN H6BLC1_EXODN H6BLC1_EXODN H6BLH5_EXODN H6BLH5_EXODN H6BLM7_EXODN H6BLM7_EXODN H6BLR2_EXODN H6BLR2_EXODN H6BLW7_EXODN H6BLW7_EXODN H6BM11_EXODN H6BM11_EXODN H6BM16_EXODN H6BM16_EXODN H6BMC7_EXODN H6BMC7_EXODN H6BMD9_EXODN H6BMD9_EXODN H6BMG4_EXODN H6BMG4_EXODN H6BMT4_EXODN H6BMT4_EXODN H6BMU2_EXODN H6BMU2_EXODN H6BMV7_EXODN H6BMV7_EXODN H6BN46_EXODN H6BN46_EXODN H6BN72_EXODN H6BN72_EXODN H6BNC9_EXODN H6BNC9_EXODN H6BNH1_EXODN H6BNH1_EXODN H6BNI9_EXODN H6BNI9_EXODN H6BNK8_EXODN H6BNK8_EXODN H6BNM6_EXODN H6BNM6_EXODN H6BNN1_EXODN H6BNN1_EXODN H6BNP2_EXODN H6BNP2_EXODN H6BNQ8_EXODN H6BNQ8_EXODN MDM10 MDM10 H6BP37_EXODN H6BP37_EXODN H6BP41_EXODN H6BP41_EXODN H6BP63_EXODN H6BP63_EXODN H6BQ49_EXODN H6BQ49_EXODN MMM1 MMM1 H6BQG8_EXODN H6BQG8_EXODN H6BQK6_EXODN H6BQK6_EXODN H6BRE3_EXODN H6BRE3_EXODN H6BRN0_EXODN H6BRN0_EXODN H6BRP2_EXODN H6BRP2_EXODN H6BRW3_EXODN H6BRW3_EXODN H6BS97_EXODN H6BS97_EXODN H6BSL3_EXODN H6BSL3_EXODN H6BSM0_EXODN H6BSM0_EXODN H6BSM2_EXODN H6BSM2_EXODN H6BSM3_EXODN H6BSM3_EXODN H6BSN8_EXODN H6BSN8_EXODN H6BSV3_EXODN H6BSV3_EXODN H6BSX6_EXODN H6BSX6_EXODN H6BSY2_EXODN H6BSY2_EXODN H6BT13_EXODN H6BT13_EXODN H6BT30_EXODN H6BT30_EXODN H6BTG2_EXODN H6BTG2_EXODN H6BTI9_EXODN H6BTI9_EXODN H6BTJ1_EXODN H6BTJ1_EXODN H6BTU6_EXODN H6BTU6_EXODN H6BTW2_EXODN H6BTW2_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
Your Input:
H6BTY7_EXODNUncharacterized protein. (303 aa)
H6BTY8_EXODNMitochondrial import inner membrane translocase subunit TIM44; Essential component of the PAM complex, a complex required for the translocation of transit peptide-containing proteins from the inner membrane into the mitochondrial matrix in an ATP-dependent manner; Belongs to the Tim44 family. (523 aa)
H6BU49_EXODNUncharacterized protein. (517 aa)
H6BUA6_EXODNF-type H+-transporting ATPase subunit epsilon. (76 aa)
H6BUA8_EXODNUbiquinol-cytochrome c reductase core subunit 2. (460 aa)
H6BUK2_EXODNATP synthase subunit beta; Produces ATP from ADP in the presence of a proton gradient across the membrane. (519 aa)
H6BUK3_EXODNCytochrome c oxidase subunit IV. (202 aa)
H6CC16_EXODN4-coumarate-CoA ligase. (560 aa)
H6BUQ4_EXODN50S ribosomal protein L3. (319 aa)
H6BUS4_EXODNMitochondrial import inner membrane translocase subunit tim14. (107 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)
H6BUV5_EXODNCytochrome c oxidase subunit Va. (165 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)
H6BUY8_EXODN50S ribosomal protein L1. (309 aa)
H6BVA6_EXODNNADH dehydrogenase (Ubiquinone) Fe-S protein 6. (243 aa)
H6BVL8_EXODNMitochondrial import inner membrane translocase subunit TIM50; Essential component of the TIM23 complex, a complex that mediates the translocation of transit peptide-containing proteins across the mitochondrial inner membrane. (554 aa)
H6BVN8_EXODNUncharacterized protein. (379 aa)
H6CBX9_EXODN4-coumarate-CoA ligase. (567 aa)
H6CBX0_EXODNUncharacterized protein. (326 aa)
H6CBI3_EXODNPeptidase_S24 domain-containing protein. (437 aa)
H6CBD3_EXODNUncharacterized protein. (358 aa)
H6CBC3_EXODNTartrate dehydrogenase. (392 aa)
H6CB09_EXODNUncharacterized protein. (294 aa)
H6CAS3_EXODNCytochrome c oxidase subunit 6A, mitochondrial. (143 aa)
H6CAN7_EXODNIntermembrane space AAA protease IAP-1. (864 aa)
H6CAJ8_EXODNUncharacterized protein. (174 aa)
H6CAJ4_EXODNMRP-L46 domain-containing protein. (387 aa)
H6CAI9_EXODN50S ribosomal protein L14; Belongs to the universal ribosomal protein uL14 family. (134 aa)
H6C9Y9_EXODNUrease accessory protein. (293 aa)
H6C9U9_EXODN2-oxoisovalerate dehydrogenase subunit alpha; The branched-chain alpha-keto dehydrogenase complex catalyzes the overall conversion of alpha-keto acids to acyl-CoA and CO(2). It contains multiple copies of three enzymatic components: branched-chain alpha-keto acid decarboxylase (E1), lipoamide acyltransferase (E2) and lipoamide dehydrogenase (E3). (456 aa)
H6C9U5_EXODN50S ribosomal protein L33. (57 aa)
H6C9U1_EXODNUbiquinol-cytochrome c reductase subunit 9. (71 aa)
H6C9P2_EXODNUncharacterized protein. (572 aa)
H6C9M8_EXODNUncharacterized protein. (132 aa)
H6C9M7_EXODNUncharacterized protein. (396 aa)
H6C9H7_EXODNUncharacterized protein. (443 aa)
H6C9D8_EXODNUncharacterized protein. (134 aa)
H6C985_EXODNDNL-type domain-containing protein. (208 aa)
H6C8Z5_EXODNUncharacterized protein. (436 aa)
H6C8Z0_EXODN50S ribosomal protein L13. (167 aa)
H6C8A4_EXODNMolecular chaperone GrpE; Belongs to the GrpE family. (267 aa)
H6C8A0_EXODNCytochrome c oxidase subunit; This protein is one of the nuclear-coded polypeptide chains of cytochrome c oxidase, the terminal oxidase in mitochondrial electron transport. (95 aa)
H6C7X0_EXODNUncharacterized protein. (316 aa)
H6C7V8_EXODNUncharacterized protein. (160 aa)
H6C7T0_EXODNUncharacterized protein. (188 aa)
H6C7Q7_EXODNCoA ligase. (564 aa)
H6C7Q5_EXODNF-type H+-transporting ATPase subunit H. (124 aa)
H6C787_EXODNSuccinate dehydrogenase [ubiquinone] flavoprotein subunit, mitochondrial; Flavoprotein (FP) subunit of succinate dehydrogenase (SDH) that is involved in complex II of the mitochondrial electron transport chain and is responsible for transferring electrons from succinate to ubiquinone (coenzyme Q). (648 aa)
H6C765_EXODNUncharacterized protein. (212 aa)
H6C727_EXODNATP synthase subunit delta, mitochondrial. (165 aa)
H6C6Z7_EXODNATP synthase F1, delta subunit. (228 aa)
H6C6T5_EXODNGFA domain-containing protein. (140 aa)
H6C6C0_EXODNF-type H+-transporting ATPase subunit F. (101 aa)
H6C6B4_EXODN30S ribosomal protein S19; Belongs to the universal ribosomal protein uS19 family. (121 aa)
H6C6A6_EXODN30S ribosomal protein S5; Belongs to the universal ribosomal protein uS5 family. (402 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)
H6C612_EXODNUncharacterized protein. (244 aa)
H6C5Z3_EXODN4-coumarate-CoA ligase. (569 aa)
H6C5K5_EXODNUncharacterized protein. (133 aa)
H6C532_EXODNUncharacterized protein. (103 aa)
H6C4X9_EXODNUncharacterized protein. (96 aa)
H6C4V3_EXODNNADH dehydrogenase. (119 aa)
H6C4P8_EXODNL51_S25_CI-B8 domain-containing protein. (227 aa)
H6C4P0_EXODNIsocitrate dehydrogenase [NAD] subunit, mitochondrial. (388 aa)
H6C485_EXODNUncharacterized protein. (201 aa)
H6C3Y5_EXODN30S ribosomal protein S2. (434 aa)
H6C3V0_EXODNDihydrolipoyl dehydrogenase. (516 aa)
H6C3P3_EXODNMICOS complex subunit; Component of the MICOS complex, a large protein complex of the mitochondrial inner membrane that plays crucial roles in the maintenance of crista junctions, inner membrane architecture, and formation of contact sites to the outer membrane. (261 aa)
H6C3M7_EXODNMitochondrial protein-transporting ATPase; Belongs to the small Tim family. (135 aa)
H6C3E7_EXODNUncharacterized protein; Belongs to the enoyl-CoA hydratase/isomerase family. (251 aa)
H6C3C6_EXODNProhibitin. (307 aa)
H6C380_EXODNUncharacterized protein. (300 aa)
H6C306_EXODN4-coumarate-CoA ligase. (554 aa)
H6C2Z4_EXODNAcyl-CoA dehydrogenase. (689 aa)
H6C2X6_EXODN30S ribosomal protein S5e. (372 aa)
H6C2U7_EXODNUncharacterized protein; Belongs to the universal ribosomal protein uL22 family. (293 aa)
H6C2R4_EXODNMRP-S28 domain-containing protein. (391 aa)
H6C2Q0_EXODN4-coumarate-CoA ligase. (570 aa)
H6C2M3_EXODN2-oxoisovalerate dehydrogenase E1 component, beta subunit. (390 aa)
MDM34Mitochondrial distribution and morphology protein 34; Component of the ERMES/MDM complex, which serves as a molecular tether to connect the endoplasmic reticulum (ER) and mitochondria. Components of this complex are involved in the control of mitochondrial shape and protein biogenesis, and function in nonvesicular lipid trafficking between the ER and mitochondria. MDM34 is required for the interaction of the ER-resident membrane protein MMM1 and the outer mitochondrial membrane-resident beta-barrel protein MDM10. (615 aa)
H6C2F0_EXODNMitochondrial import inner membrane translocase subunit tim-17. (150 aa)
H6C293_EXODNUncharacterized protein. (190 aa)
H6C272_EXODNUncharacterized protein. (143 aa)
H6C264_EXODNMCU domain-containing protein. (473 aa)
H6C246_EXODNzf-Tim10_DDP domain-containing protein. (96 aa)
H6C235_EXODNMitochondrial import inner membrane translocase subunit TIM23; Essential component of the TIM23 complex, a complex that mediates the translocation of transit peptide-containing proteins across the mitochondrial inner membrane. (235 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)
H6C1R3_EXODN50S ribosomal protein L6; Belongs to the universal ribosomal protein uL6 family. (255 aa)
H6C1P2_EXODNF-type H+-transporting ATPase subunit G. (203 aa)
H6C1J0_EXODNUncharacterized protein. (583 aa)
H6C187_EXODNAFG3 family protein. (911 aa)
H6C176_EXODN37S ribosomal protein S25, mitochondrial. (291 aa)
MDM12Mitochondrial distribution and morphology protein 12; Component of the ERMES/MDM complex, which serves as a molecular tether to connect the endoplasmic reticulum (ER) and mitochondria. Components of this complex are involved in the control of mitochondrial shape and protein biogenesis, and function in nonvesicular lipid trafficking between the ER and mitochondria. MDM12 is required for the interaction of the ER-resident membrane protein MMM1 and the outer mitochondrial membrane-resident beta-barrel protein MDM10. The MDM12-MMM1 subcomplex functions in the major beta-barrel assembly pat [...] (446 aa)
H6BZH4_EXODNANK_REP_REGION domain-containing protein. (666 aa)
H6BZ80_EXODN4-coumarate-CoA ligase, variant. (579 aa)
H6BYZ5_EXODN3-hydroxyacyl-CoA dehydrogenase. (293 aa)
H6BYY7_EXODN50S ribosomal protein L5. (353 aa)
H6BYX4_EXODNzf-Tim10_DDP domain-containing protein; Belongs to the small Tim family. (95 aa)
H6BYT8_EXODN50S ribosomal protein L17; Belongs to the bacterial ribosomal protein bL17 family. (227 aa)
H6BYJ1_EXODNUncharacterized protein. (54 aa)
H6BYF2_EXODNUncharacterized protein. (57 aa)
H6BYE2_EXODNRibosomal_S10 domain-containing protein. (300 aa)
H6BYB3_EXODNUncharacterized protein. (410 aa)
H6BY85_EXODN30S ribosomal protein S9; Belongs to the universal ribosomal protein uS9 family. (311 aa)
H6BX73_EXODNUncharacterized protein. (367 aa)
H6BX70_EXODN50S ribosomal protein L2. (404 aa)
H6BWR0_EXODNRibosomal_L30 domain-containing protein. (90 aa)
H6BWC6_EXODN4-coumarate-CoA ligase. (588 aa)
H6BWC3_EXODNFungal_trans domain-containing protein. (635 aa)
H6BW84_EXODNUncharacterized protein. (234 aa)
H6BVZ5_EXODNUncharacterized protein. (456 aa)
H6BVS4_EXODNUncharacterized protein. (132 aa)
H6BJX8_EXODNRibosomal protein; Belongs to the bacterial ribosomal protein bL36 family. (100 aa)
H6BJT8_EXODNFe-Mn family superoxide dismutase. (333 aa)
H5WH79_EXODNCytochrome c oxidase subunit 2; Cytochrome c oxidase is the component of the respiratory chain that catalyzes the reduction of oxygen to water. Subunits 1-3 form the functional core of the enzyme complex. Subunit 2 transfers the electrons from cytochrome c via its binuclear copper A center to the bimetallic center of the catalytic subunit 1. (245 aa)
H5WH74_EXODNCytochrome c oxidase subunit 1; Cytochrome c oxidase is the component of the respiratory chain that catalyzes the reduction of oxygen to water. Subunits 1-3 form the functional core of the enzyme complex. CO I is the catalytic subunit of the enzyme. Electrons originating in cytochrome c are transferred via the copper A center of subunit 2 and heme A of subunit 1 to the bimetallic center formed by heme A3 and copper B. (531 aa)
H5WH68_EXODNCytochrome c oxidase subunit 3; Subunits I, II and III form the functional core of the enzyme complex. (269 aa)
H6C4X8_EXODNCyclin H. (357 aa)
H6BKA3_EXODNUncharacterized protein. (415 aa)
H6BKG4_EXODN4-coumarate-CoA ligase. (556 aa)
H6BKJ8_EXODNUncharacterized protein. (640 aa)
H6BL06_EXODN30S ribosomal protein S13; Belongs to the universal ribosomal protein uS13 family. (118 aa)
H6BL12_EXODNUncharacterized protein. (416 aa)
H6BL13_EXODNMitochondrial inner membrane protease subunit. (225 aa)
H6BLC1_EXODNAdenosinetriphosphatase. (765 aa)
H6BLH5_EXODNIsocitrate dehydrogenase [NAD] subunit, mitochondrial. (389 aa)
H6BLM7_EXODNUncharacterized protein. (352 aa)
H6BLR2_EXODNUncharacterized protein. (171 aa)
H6BLW7_EXODNCoA ligase. (583 aa)
H6BM11_EXODNAmino-acid acetyltransferase, mitochondrial; N-acetylglutamate synthase involved in arginine biosynthesis. Belongs to the acetyltransferase family. (673 aa)
H6BM16_EXODNUncharacterized protein. (79 aa)
H6BMC7_EXODNUncharacterized protein. (246 aa)
H6BMD9_EXODNOuter membrane protein. (515 aa)
H6BMG4_EXODNIsoleucyl-tRNA synthetase; Belongs to the class-I aminoacyl-tRNA synthetase family. (1036 aa)
H6BMT4_EXODN30S ribosomal protein S8. (170 aa)
H6BMU2_EXODNUncharacterized protein. (251 aa)
H6BMV7_EXODN3-oxoacyl-[acyl-carrier protein] reductase. (276 aa)
H6BN46_EXODNCytochrome c1, heme protein, mitochondrial. (324 aa)
H6BN72_EXODN50S ribosomal protein L11; Belongs to the universal ribosomal protein uL11 family. (153 aa)
H6BNC9_EXODNUncharacterized protein. (492 aa)
H6BNH1_EXODNUncharacterized protein. (1101 aa)
H6BNI9_EXODNMitoc_mL59 domain-containing protein. (225 aa)
H6BNK8_EXODNL51_S25_CI-B8 domain-containing protein. (139 aa)
H6BNM6_EXODNHAD superfamily (Subfamily IIIA) phosphatase. (230 aa)
H6BNN1_EXODNDNA polymerase gamma 1. (1208 aa)
H6BNP2_EXODN30S ribosomal protein S12. (180 aa)
H6BNQ8_EXODNMICOS complex subunit MIC60; Component of the MICOS complex, a large protein complex of the mitochondrial inner membrane that plays crucial roles in the maintenance of crista junctions, inner membrane architecture, and formation of contact sites to the outer membrane. (701 aa)
MDM10Mitochondrial distribution and morphology protein 10; Component of the ERMES/MDM complex, which serves as a molecular tether to connect the endoplasmic reticulum and mitochondria. Components of this complex are involved in the control of mitochondrial shape and protein biogenesis and may function in phospholipid exchange. MDM10 is involved in the late assembly steps of the general translocase of the mitochondrial outer membrane (TOM complex). Functions in the TOM40-specific route of the assembly of outer membrane beta-barrel proteins, including the association of TOM40 with the recepto [...] (535 aa)
H6BP37_EXODN50S ribosomal protein L4. (316 aa)
H6BP41_EXODN50S ribosomal protein L15. (322 aa)
H6BP63_EXODNUncharacterized protein. (140 aa)
H6BQ49_EXODNUncharacterized protein. (573 aa)
MMM1Maintenance of mitochondrial morphology protein 1; Component of the ERMES/MDM complex, which serves as a molecular tether to connect the endoplasmic reticulum (ER) and mitochondria. Components of this complex are involved in the control of mitochondrial shape and protein biogenesis, and function in nonvesicular lipid trafficking between the ER and mitochondria. The MDM12-MMM1 subcomplex functions in the major beta-barrel assembly pathway that is responsible for biogenesis of all outer membrane beta- barrel proteins, and acts in a late step after the SAM complex. The MDM10-MDM12-MMM1 su [...] (425 aa)
H6BQG8_EXODNF-type H+-transporting ATPase subunit J. (63 aa)
H6BQK6_EXODNUncharacterized protein. (203 aa)
H6BRE3_EXODN30S ribosomal protein S14. (114 aa)
H6BRN0_EXODNProtein phosphatase methylesterase 1; Demethylates proteins that have been reversibly carboxymethylated. (408 aa)
H6BRP2_EXODNNADH dehydrogenase (Ubiquinone) 1 beta subcomplex 8. (162 aa)
H6BRW3_EXODNS4 RNA-binding domain-containing protein. (450 aa)
H6BS97_EXODNUncharacterized protein. (173 aa)
H6BSL3_EXODNATP synthase subunit 4, mitochondrial. (248 aa)
H6BSM0_EXODNUncharacterized protein. (309 aa)
H6BSM2_EXODNUbiquinol-cytochrome c reductase subunit 8. (120 aa)
H6BSM3_EXODNProhibitin. (282 aa)
H6BSN8_EXODN50S ribosomal protein L16; Belongs to the universal ribosomal protein uL16 family. (212 aa)
H6BSV3_EXODNUncharacterized protein. (110 aa)
H6BSX6_EXODNProtein-serine/threonine kinase. (425 aa)
H6BSY2_EXODNzf-Tim10_DDP domain-containing protein. (84 aa)
H6BT13_EXODN30S ribosomal protein S15. (316 aa)
H6BT30_EXODNUncharacterized protein. (107 aa)
H6BTG2_EXODNMercuric reductase. (545 aa)
H6BTI9_EXODNMitochondrial-processing peptidase subunit beta; Belongs to the peptidase M16 family. (478 aa)
H6BTJ1_EXODNSuccinate dehydrogenase [ubiquinone] cytochrome b small subunit. (219 aa)
H6BTU6_EXODNCytochrome c oxidase subunit VIIc. (73 aa)
H6BTW2_EXODN4-coumarate-CoA ligase. (568 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
Server load: low (24%) [HD]