STRINGSTRING
G2XZ48_BOTF4 G2XZ48_BOTF4 G2XX65_BOTF4 G2XX65_BOTF4 G2XWH9_BOTF4 G2XWH9_BOTF4 G2XW44_BOTF4 G2XW44_BOTF4 G2XV37_BOTF4 G2XV37_BOTF4 G2XUY1_BOTF4 G2XUY1_BOTF4 G2XSU7_BOTF4 G2XSU7_BOTF4 G2XRR6_BOTF4 G2XRR6_BOTF4 G2XRR5_BOTF4 G2XRR5_BOTF4 G2XRL4_BOTF4 G2XRL4_BOTF4 G2YY37_BOTF4 G2YY37_BOTF4 G2YY12_BOTF4 G2YY12_BOTF4 G2Y7B3_BOTF4 G2Y7B3_BOTF4 G2YXH5_BOTF4 G2YXH5_BOTF4 G2YX91_BOTF4 G2YX91_BOTF4 G2YX89_BOTF4 G2YX89_BOTF4 G2YW43_BOTF4 G2YW43_BOTF4 G2YVH2_BOTF4 G2YVH2_BOTF4 G2YVG7_BOTF4 G2YVG7_BOTF4 G2YUY1_BOTF4 G2YUY1_BOTF4 G2YSL9_BOTF4 G2YSL9_BOTF4 G2YQP5_BOTF4 G2YQP5_BOTF4 G2YPH2_BOTF4 G2YPH2_BOTF4 G2YPF5_BOTF4 G2YPF5_BOTF4 G2YPF4_BOTF4 G2YPF4_BOTF4 G2YP44_BOTF4 G2YP44_BOTF4 G2YNY8_BOTF4 G2YNY8_BOTF4 G2YMZ5_BOTF4 G2YMZ5_BOTF4 G2XP04_BOTF4 G2XP04_BOTF4 G2XP44_BOTF4 G2XP44_BOTF4 G2XPY2_BOTF4 G2XPY2_BOTF4 G2XQK7_BOTF4 G2XQK7_BOTF4 G2XRD6_BOTF4 G2XRD6_BOTF4 G2YYQ8_BOTF4 G2YYQ8_BOTF4 G2YY48_BOTF4 G2YY48_BOTF4 G2YXI6_BOTF4 G2YXI6_BOTF4 G2YMZ4_BOTF4 G2YMZ4_BOTF4 G2Y7I0_BOTF4 G2Y7I0_BOTF4 G2Y7X3_BOTF4 G2Y7X3_BOTF4 G2Y7Y8_BOTF4 G2Y7Y8_BOTF4 G2Y8U7_BOTF4 G2Y8U7_BOTF4 G2YB54_BOTF4 G2YB54_BOTF4 G2YBH3_BOTF4 G2YBH3_BOTF4 G2YBQ5_BOTF4 G2YBQ5_BOTF4 G2YC77_BOTF4 G2YC77_BOTF4 G2YCW7_BOTF4 G2YCW7_BOTF4 G2YD74_BOTF4 G2YD74_BOTF4 G2YD81_BOTF4 G2YD81_BOTF4 G2YDQ1_BOTF4 G2YDQ1_BOTF4 G2YDQ3_BOTF4 G2YDQ3_BOTF4 G2YE99_BOTF4 G2YE99_BOTF4 G2YG19_BOTF4 G2YG19_BOTF4 G2YHA7_BOTF4 G2YHA7_BOTF4 G2YHP6_BOTF4 G2YHP6_BOTF4 G2YHP7_BOTF4 G2YHP7_BOTF4 G2YI10_BOTF4 G2YI10_BOTF4 G2YJL2_BOTF4 G2YJL2_BOTF4 G2YJN1_BOTF4 G2YJN1_BOTF4 G2YJS7_BOTF4 G2YJS7_BOTF4 G2YJY3_BOTF4 G2YJY3_BOTF4 G2YKW3_BOTF4 G2YKW3_BOTF4 G2YLZ6_BOTF4 G2YLZ6_BOTF4 G2YM13_BOTF4 G2YM13_BOTF4 G2YME2_BOTF4 G2YME2_BOTF4 G2Y7B2_BOTF4 G2Y7B2_BOTF4 G2Y6Z3_BOTF4 G2Y6Z3_BOTF4 G2Y5Y6_BOTF4 G2Y5Y6_BOTF4 G2Y5G5_BOTF4 G2Y5G5_BOTF4 G2Y3D3_BOTF4 G2Y3D3_BOTF4 G2XZN2_BOTF4 G2XZN2_BOTF4 G2XZI9_BOTF4 G2XZI9_BOTF4
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:
G2XZ48_BOTF4Similar to ferric-chelate reductase. (634 aa)
G2XX65_BOTF4Uncharacterized protein. (735 aa)
G2XWH9_BOTF4Similar to transport protein Sec61 subunit alpha. (476 aa)
G2XW44_BOTF4Similar to ferric reductase transmembrane component 7. (934 aa)
G2XV37_BOTF4V-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. (119 aa)
G2XUY1_BOTF4V-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. (160 aa)
G2XSU7_BOTF4Protein transport protein Sec61 subunit beta; Necessary for protein translocation in the endoplasmic reticulum. (110 aa)
G2XRR6_BOTF4Similar to V-type proton ATPase subunit e. (77 aa)
G2XRR5_BOTF4Similar to 6-phosphogluconate dehydrogenase. (305 aa)
G2XRL4_BOTF4Similar to ferric reductase transmembrane component. (650 aa)
G2YY37_BOTF4Similar to transport protein Sec61 subunit gamma. (70 aa)
G2YY12_BOTF4Similar to ras-related protein rab-5a. (221 aa)
G2Y7B3_BOTF4Tubulin alpha chain; Tubulin is the major constituent of microtubules. It binds two moles of GTP, one at an exchangeable site on the beta chain and one at a non-exchangeable site on the alpha chain. (456 aa)
G2YXH5_BOTF4Uncharacterized protein. (377 aa)
G2YX91_BOTF4PHD-type domain-containing protein. (568 aa)
G2YX89_BOTF4Similar to ATP-dependent rRNA helicase rrp3; Belongs to the DEAD box helicase family. (486 aa)
G2YW43_BOTF4Similar to F-box domain-containing protein. (605 aa)
G2YVH2_BOTF4Uncharacterized protein. (1017 aa)
G2YVG7_BOTF4Uncharacterized protein. (344 aa)
G2YUY1_BOTF4Uncharacterized protein. (793 aa)
G2YSL9_BOTF4Vacuolar protein sorting-associated protein 27; Component of the ESCRT-0 complex which is the sorting receptor for ubiquitinated cargo proteins at the multivesicular body (MVB) and recruits ESCRT-I to the MVB outer membrane. (707 aa)
G2YQP5_BOTF4Similar to dynein light intermediate chain. (521 aa)
G2YPH2_BOTF4V-type proton ATPase subunit; Vacuolar ATPase is responsible for acidifying a variety of intracellular compartments in eukaryotic cells. The active enzyme consists of a catalytic V1 domain attached to an integral membrane V0 proton pore complex. This subunit is a non-integral membrane component of the membrane pore domain and is required for proper assembly of the V0 sector. Might be involved in the regulated assembly of V1 subunits onto the membrane sector or alternatively may prevent the passage of protons through V0 pores; Belongs to the V-ATPase V0D/AC39 subunit family. (365 aa)
G2YPF5_BOTF4V-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. (428 aa)
G2YPF4_BOTF4V-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. (371 aa)
G2YP44_BOTF4Similar to mitochondrial import inner membrane translocase subunit tim9. (90 aa)
G2YNY8_BOTF4Similar to cytochrome b-245 heavy chain subunit beta. (581 aa)
G2YMZ5_BOTF4Protein kinase domain-containing protein. (477 aa)
G2XP04_BOTF4Phosphatidylinositol 3-kinase VPS34. (966 aa)
G2XP44_BOTF4FAD-binding FR-type domain-containing protein. (396 aa)
G2XPY2_BOTF4Similar to vacuolar sorting-associated protein. (238 aa)
G2XQK7_BOTF4BofuT4_P069520.1 protein. (240 aa)
G2XRD6_BOTF4Similar to ferric reductase like transmembrane component. (574 aa)
G2YYQ8_BOTF4Uncharacterized protein. (266 aa)
G2YY48_BOTF4BcRAC, Rac-like GTPase. (199 aa)
G2YXI6_BOTF4Similar to NADPH oxydase. (553 aa)
G2YMZ4_BOTF4Uncharacterized protein. (381 aa)
G2Y7I0_BOTF4Similar to cytoplasmic dynein 1 intermediate chain 2. (704 aa)
G2Y7X3_BOTF4PH domain-containing protein. (1594 aa)
G2Y7Y8_BOTF4Similar to transport protein sec22; Belongs to the synaptobrevin family. (215 aa)
G2Y8U7_BOTF4Similar to 1-phosphatidylinositol-3-phosphate 5-kinase FAB1. (2535 aa)
G2YB54_BOTF4V-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. (395 aa)
G2YBH3_BOTF4V-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. (479 aa)
G2YBQ5_BOTF4Uncharacterized protein. (429 aa)
G2YC77_BOTF4Similar to vacuolar sorting receptor (Mrl1). (338 aa)
G2YCW7_BOTF4Similar to ferric-chelate reductase. (613 aa)
G2YD74_BOTF4Similar to ferric-chelate reductase. (650 aa)
G2YD81_BOTF4Vacuolar proton pump subunit B; Non-catalytic subunit of the peripheral V1 complex of vacuolar ATPase; Belongs to the ATPase alpha/beta chains family. (517 aa)
G2YDQ1_BOTF4Uncharacterized protein. (443 aa)
G2YDQ3_BOTF4ATP-synt_ab domain-containing protein. (265 aa)
G2YE99_BOTF4FreB, similar to ferric-chelate reductase. (613 aa)
G2YG19_BOTF4Tr-type G domain-containing protein. (1145 aa)
G2YHA7_BOTF4Uncharacterized protein. (790 aa)
G2YHP6_BOTF4Uncharacterized protein. (170 aa)
G2YHP7_BOTF4Similar to inner centromere protein mis6. (383 aa)
G2YI10_BOTF4Uncharacterized protein. (540 aa)
G2YJL2_BOTF4Similar to gi|11359636|pir||T49761 related to ferric reductase. (690 aa)
G2YJN1_BOTF4Similar to ras-related protein rab-7a. (205 aa)
G2YJS7_BOTF4V-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. (162 aa)
G2YJY3_BOTF4Coronin; Belongs to the WD repeat coronin family. (612 aa)
G2YKW3_BOTF4Similar to ferric reductase like transmembrane component. (651 aa)
G2YLZ6_BOTF4Similar to cytoplasmic dynein 1 heavy chain 1. (4345 aa)
G2YM13_BOTF4Similar to vacuolar ATP synthase 21 kDa proteolipid subunit; Belongs to the V-ATPase proteolipid subunit family. (198 aa)
G2YME2_BOTF4Similar to vacuolar ATP synthase subunit d. (261 aa)
G2Y7B2_BOTF4Uncharacterized protein. (97 aa)
G2Y6Z3_BOTF4Tubulin alpha chain; Tubulin is the major constituent of microtubules. It binds two moles of GTP, one at an exchangeable site on the beta chain and one at a non-exchangeable site on the alpha chain. (450 aa)
G2Y5Y6_BOTF4Uncharacterized protein. (849 aa)
G2Y5G5_BOTF4Similar to vacuolar ATP synthase subunit E (V-ATPase E subunit) (Vacuolar proton pump E subunit). (199 aa)
G2Y3D3_BOTF4V-type proton ATPase subunit F; Subunit of the peripheral V1 complex of vacuolar ATPase essential for assembly or catalytic function. V-ATPase is responsible for acidifying a variety of intracellular compartments in eukaryotic cells. (124 aa)
G2XZN2_BOTF4Similar to calnexin. (588 aa)
G2XZI9_BOTF4Tubulin beta chain; Tubulin is the major constituent of microtubules. It binds two moles of GTP, one at an exchangeable site on the beta chain and one at a non-exchangeable site on the alpha chain. (447 aa)
Your Current Organism:
Botrytis cinerea T4
NCBI taxonomy Id: 999810
Other names: B. cinerea T4, Botryotinia fuckeliana T4
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