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H3GA96_PHYRM H3GA96_PHYRM H3GAA1_PHYRM H3GAA1_PHYRM H3GAT6_PHYRM H3GAT6_PHYRM H3GB02_PHYRM H3GB02_PHYRM H3GC34_PHYRM H3GC34_PHYRM H3GEV0_PHYRM H3GEV0_PHYRM H3GFL7_PHYRM H3GFL7_PHYRM H3GFZ5_PHYRM H3GFZ5_PHYRM H3GG45_PHYRM H3GG45_PHYRM H3GGM1_PHYRM H3GGM1_PHYRM H3GGN2_PHYRM H3GGN2_PHYRM H3GH39_PHYRM H3GH39_PHYRM H3GH41_PHYRM H3GH41_PHYRM H3G8T8_PHYRM H3G8T8_PHYRM H3G8P0_PHYRM H3G8P0_PHYRM H3G8L4_PHYRM H3G8L4_PHYRM H3G8K0_PHYRM H3G8K0_PHYRM H3G8F0_PHYRM H3G8F0_PHYRM H3G7Y6_PHYRM H3G7Y6_PHYRM H3G7X6_PHYRM H3G7X6_PHYRM H3G7S9_PHYRM H3G7S9_PHYRM H3G7P4_PHYRM H3G7P4_PHYRM H3G7K5_PHYRM H3G7K5_PHYRM H3G7E5_PHYRM H3G7E5_PHYRM H3G7D8_PHYRM H3G7D8_PHYRM H3G7C5_PHYRM H3G7C5_PHYRM H3G793_PHYRM H3G793_PHYRM H3G6Z2_PHYRM H3G6Z2_PHYRM H3G6U8_PHYRM H3G6U8_PHYRM H3G6K1_PHYRM H3G6K1_PHYRM H3G5I4_PHYRM H3G5I4_PHYRM H3G5C6_PHYRM H3G5C6_PHYRM H3G4Y7_PHYRM H3G4Y7_PHYRM H3HEC2_PHYRM H3HEC2_PHYRM H3HEB7_PHYRM H3HEB7_PHYRM H3HDI1_PHYRM H3HDI1_PHYRM H3HCS6_PHYRM H3HCS6_PHYRM H3HCM4_PHYRM H3HCM4_PHYRM H3HBZ7_PHYRM H3HBZ7_PHYRM H3HBY0_PHYRM H3HBY0_PHYRM H3HBU1_PHYRM H3HBU1_PHYRM H3HBL6_PHYRM H3HBL6_PHYRM H3GH69_PHYRM H3GH69_PHYRM H3GHN9_PHYRM H3GHN9_PHYRM H3GHU6_PHYRM H3GHU6_PHYRM H3GIG2_PHYRM H3GIG2_PHYRM H3GII1_PHYRM H3GII1_PHYRM H3GIQ9_PHYRM H3GIQ9_PHYRM H3GK30_PHYRM H3GK30_PHYRM H3GMQ0_PHYRM H3GMQ0_PHYRM H3GMQ7_PHYRM H3GMQ7_PHYRM H3GPI8_PHYRM H3GPI8_PHYRM H3GN26_PHYRM H3GN26_PHYRM H3HBK6_PHYRM H3HBK6_PHYRM H3HBH6_PHYRM H3HBH6_PHYRM H3HBE8_PHYRM H3HBE8_PHYRM H3HBE7_PHYRM H3HBE7_PHYRM H3H9W7_PHYRM H3H9W7_PHYRM H3H988_PHYRM H3H988_PHYRM H3H6J6_PHYRM H3H6J6_PHYRM H3H4A6_PHYRM H3H4A6_PHYRM H3H3N0_PHYRM H3H3N0_PHYRM H3H3M7_PHYRM H3H3M7_PHYRM H3GMX3_PHYRM H3GMX3_PHYRM H3H2B6_PHYRM H3H2B6_PHYRM H3H1S5_PHYRM H3H1S5_PHYRM H3H1H2_PHYRM H3H1H2_PHYRM H3H198_PHYRM H3H198_PHYRM H3H0X0_PHYRM H3H0X0_PHYRM H3GYT2_PHYRM H3GYT2_PHYRM H3GYG9_PHYRM H3GYG9_PHYRM H3GXC6_PHYRM H3GXC6_PHYRM H3GV84_PHYRM H3GV84_PHYRM H3GV33_PHYRM H3GV33_PHYRM H3GV30_PHYRM H3GV30_PHYRM H3GUI9_PHYRM H3GUI9_PHYRM H3GUC7_PHYRM H3GUC7_PHYRM H3GU26_PHYRM H3GU26_PHYRM H3GT05_PHYRM H3GT05_PHYRM H3GSS3_PHYRM H3GSS3_PHYRM H3GSC9_PHYRM H3GSC9_PHYRM H3GSA2_PHYRM H3GSA2_PHYRM H3GS20_PHYRM H3GS20_PHYRM H3GRS5_PHYRM H3GRS5_PHYRM H3GQP5_PHYRM H3GQP5_PHYRM H3GQ20_PHYRM H3GQ20_PHYRM H3GPV6_PHYRM H3GPV6_PHYRM H3GPV5_PHYRM H3GPV5_PHYRM H3G953_PHYRM H3G953_PHYRM H3G954_PHYRM H3G954_PHYRM H3G9K5_PHYRM H3G9K5_PHYRM
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
Others
textmining
co-expression
protein homology
Your Input:
H3GA96_PHYRMUncharacterized protein. (213 aa)
H3GAA1_PHYRMNADH dehydrogenase [ubiquinone] flavoprotein 1, mitochondrial; Core subunit of the mitochondrial membrane respiratory chain NADH dehydrogenase (Complex I) that is believed to belong to the minimal assembly required for catalysis. Complex I functions in the transfer of electrons from NADH to the respiratory chain. (448 aa)
H3GAT6_PHYRMVacuolar proton pump subunit B; Non-catalytic subunit of the peripheral V1 complex of vacuolar ATPase; Belongs to the ATPase alpha/beta chains family. (508 aa)
H3GB02_PHYRMUncharacterized protein. (618 aa)
H3GC34_PHYRMUncharacterized protein. (461 aa)
H3GEV0_PHYRMENTH domain-containing protein. (816 aa)
H3GFL7_PHYRMEpimerase domain-containing protein. (344 aa)
H3GFZ5_PHYRMV-type proton ATPase subunit C; Subunit of the peripheral V1 complex of vacuolar ATPase. Subunit C is necessary for the assembly of the catalytic sector of the enzyme and is likely to have a specific function in its catalytic activity. V-ATPase is responsible for acidifying a variety of intracellular compartments in eukaryotic cells. (417 aa)
H3GG45_PHYRMUncharacterized protein. (456 aa)
H3GGM1_PHYRMSuccinate dehydrogenase [ubiquinone] cytochrome b small subunit. (162 aa)
H3GGN2_PHYRMUncharacterized protein. (193 aa)
H3GH39_PHYRMDUF2012 domain-containing protein. (201 aa)
H3GH41_PHYRMUncharacterized protein. (116 aa)
H3G8T8_PHYRMUncharacterized protein. (281 aa)
H3G8P0_PHYRMUncharacterized protein. (205 aa)
H3G8L4_PHYRMUncharacterized protein. (115 aa)
H3G8K0_PHYRMBrix domain-containing protein. (323 aa)
H3G8F0_PHYRMUncharacterized protein. (76 aa)
H3G7Y6_PHYRMUncharacterized protein. (84 aa)
H3G7X6_PHYRMUncharacterized protein. (192 aa)
H3G7S9_PHYRMSuccinate dehydrogenase [ubiquinone] iron-sulfur subunit, mitochondrial; Iron-sulfur protein (IP) 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). (232 aa)
H3G7P4_PHYRM2Fe-2S ferredoxin-type domain-containing protein. (107 aa)
H3G7K5_PHYRMUncharacterized protein; Belongs to the V-ATPase proteolipid subunit family. (174 aa)
H3G7E5_PHYRMRECA_2 domain-containing protein. (459 aa)
H3G7D8_PHYRMCytochrome c domain-containing protein. (228 aa)
H3G7C5_PHYRMJmjC domain-containing protein. (367 aa)
H3G793_PHYRMOxidored_q6 domain-containing protein; Belongs to the complex I 20 kDa subunit family. (154 aa)
H3G6Z2_PHYRMUncharacterized protein. (173 aa)
H3G6U8_PHYRMFAD_binding_2 domain-containing protein. (505 aa)
H3G6K1_PHYRMUncharacterized protein. (69 aa)
H3G5I4_PHYRMUCR_hinge domain-containing protein. (59 aa)
H3G5C6_PHYRMPlasma membrane ATPase; Belongs to the cation transport ATPase (P-type) (TC 3.A.3) family. Type IIIA subfamily. (1068 aa)
H3G4Y7_PHYRMPlasma membrane ATPase; Belongs to the cation transport ATPase (P-type) (TC 3.A.3) family. Type IIIA subfamily. (849 aa)
H3HEC2_PHYRMUncharacterized protein. (77 aa)
H3HEB7_PHYRMUncharacterized protein. (133 aa)
H3HDI1_PHYRMUncharacterized protein. (189 aa)
H3HCS6_PHYRMUncharacterized protein. (729 aa)
H3HCM4_PHYRMUncharacterized protein; Belongs to the cytochrome c oxidase subunit 6A family. (108 aa)
H3HBZ7_PHYRM2Fe-2S ferredoxin-type domain-containing protein. (750 aa)
H3HBY0_PHYRMUncharacterized protein. (319 aa)
H3HBU1_PHYRMUncharacterized protein. (169 aa)
H3HBL6_PHYRMUncharacterized protein. (119 aa)
H3GH69_PHYRMUncharacterized protein. (162 aa)
H3GHN9_PHYRMUncharacterized protein. (470 aa)
H3GHU6_PHYRMUncharacterized protein. (620 aa)
H3GIG2_PHYRMUncharacterized protein. (271 aa)
H3GII1_PHYRMCytochrome b-c1 complex subunit Rieske, mitochondrial; Component of the ubiquinol-cytochrome c reductase complex (complex III or cytochrome b-c1 complex), which is a respiratory chain that generates an electrochemical potential coupled to ATP synthesis. (216 aa)
H3GIQ9_PHYRMSuccinate 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). (646 aa)
H3GK30_PHYRMTr-type G domain-containing protein. (912 aa)
H3GMQ0_PHYRMUncharacterized protein. (524 aa)
H3GMQ7_PHYRMUncharacterized protein. (103 aa)
H3GPI8_PHYRMUncharacterized protein. (275 aa)
H3GN26_PHYRMUncharacterized protein. (842 aa)
H3HBK6_PHYRMUncharacterized protein. (226 aa)
H3HBH6_PHYRMUncharacterized protein. (442 aa)
H3HBE8_PHYRMAcyl carrier protein; Carrier of the growing fatty acid chain in fatty acid biosynthesis. (117 aa)
H3HBE7_PHYRMUncharacterized protein. (116 aa)
H3H9W7_PHYRMUncharacterized protein. (187 aa)
H3H988_PHYRMDUF2012 domain-containing protein. (171 aa)
H3H6J6_PHYRMUncharacterized protein. (416 aa)
H3H4A6_PHYRMV-type proton ATPase subunit; Subunit of the integral membrane V0 complex of vacuolar ATPase. Vacuolar ATPase is responsible for acidifying a variety of intracellular compartments in eukaryotic cells, thus providing most of the energy required for transport processes in the vacuolar system. Belongs to the V-ATPase V0D/AC39 subunit family. (393 aa)
H3H3N0_PHYRMUncharacterized protein. (135 aa)
H3H3M7_PHYRMUncharacterized protein. (274 aa)
H3GMX3_PHYRMUncharacterized protein; Belongs to the complex I LYR family. (128 aa)
H3H2B6_PHYRMUncharacterized protein. (205 aa)
H3H1S5_PHYRMUncharacterized protein. (168 aa)
H3H1H2_PHYRMV-type proton ATPase subunit G; Catalytic subunit of the peripheral V1 complex of vacuolar ATPase (V-ATPase). V-ATPase is responsible for acidifying a variety of intracellular compartments in eukaryotic cells. (113 aa)
H3H198_PHYRMUncharacterized protein. (182 aa)
H3H0X0_PHYRMzf-CHCC domain-containing protein. (119 aa)
H3GYT2_PHYRMUncharacterized protein. (557 aa)
H3GYG9_PHYRMV-type proton ATPase subunit H; Subunit of the peripheral V1 complex of vacuolar ATPase. Subunit H activates ATPase activity of the enzyme and couples ATPase activity to proton flow. Vacuolar ATPase is responsible for acidifying a variety of intracellular compartments in eukaryotic cells, thus providing most of the energy required for transport processes in the vacuolar system. (453 aa)
H3GXC6_PHYRMNADH dehydrogenase [ubiquinone] 1 alpha subcomplex subunit 12; Accessory subunit of the mitochondrial membrane respiratory chain NADH dehydrogenase (Complex I), that is believed not to be involved in catalysis. Complex I functions in the transfer of electrons from NADH to the respiratory chain. The immediate electron acceptor for the enzyme is believed to be ubiquinone. (225 aa)
H3GV84_PHYRMUncharacterized protein. (129 aa)
H3GV33_PHYRMPyr_redox_2 domain-containing protein. (483 aa)
H3GV30_PHYRMPyr_redox_2 domain-containing protein. (480 aa)
H3GUI9_PHYRMV-type proton ATPase subunit a; Essential component of the vacuolar proton pump (V-ATPase), a multimeric enzyme that catalyzes the translocation of protons across the membranes. Required for assembly and activity of the V-ATPase. (869 aa)
H3GUC7_PHYRMUncharacterized protein. (141 aa)
H3GU26_PHYRMOxidored_q6 domain-containing protein; Belongs to the complex I 20 kDa subunit family. (568 aa)
H3GT05_PHYRMUncharacterized protein. (680 aa)
H3GSS3_PHYRMUncharacterized protein; Belongs to the peptidase M16 family. (526 aa)
H3GSC9_PHYRMTr-type G domain-containing protein. (1059 aa)
H3GSA2_PHYRMUncharacterized protein. (476 aa)
H3GS20_PHYRMUncharacterized protein. (367 aa)
H3GRS5_PHYRMUncharacterized protein. (112 aa)
H3GQP5_PHYRMATP-synt_ab domain-containing protein. (671 aa)
H3GQ20_PHYRMUncharacterized protein. (1730 aa)
H3GPV6_PHYRMUncharacterized protein. (400 aa)
H3GPV5_PHYRMUncharacterized protein. (416 aa)
H3G953_PHYRMV-type proton ATPase proteolipid subunit; Proton-conducting pore forming subunit of the membrane integral V0 complex of vacuolar ATPase. V-ATPase is responsible for acidifying a variety of intracellular compartments in eukaryotic cells. (171 aa)
H3G954_PHYRMV-type proton ATPase proteolipid subunit; Proton-conducting pore forming subunit of the membrane integral V0 complex of vacuolar ATPase. V-ATPase is responsible for acidifying a variety of intracellular compartments in eukaryotic cells. (171 aa)
H3G9K5_PHYRMATP synthase subunit beta; Produces ATP from ADP in the presence of a proton gradient across the membrane. (486 aa)
Your Current Organism:
Phytophthora ramorum
NCBI taxonomy Id: 164328
Other names: BBA 9/95, CBS 101553, CPHST BL 55G, Ex-type CPHST BL 55G, P. ramorum, Phytophthora sp. ex Parrotia persica, Sudden oak death agent, WPC P10103, ramorum blight, sudden oak death
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