STRINGSTRING
B4FLC0_MAIZE B4FLC0_MAIZE B4FMV3_MAIZE B4FMV3_MAIZE Pco086635(414) Pco086635(414) B4FVD5_MAIZE B4FVD5_MAIZE B4FVD6_MAIZE B4FVD6_MAIZE B4FZS8_MAIZE B4FZS8_MAIZE Pco086632 Pco086632 B6SK76_MAIZE B6SK76_MAIZE B6SQV1_MAIZE B6SQV1_MAIZE B6T2T0_MAIZE B6T2T0_MAIZE C0PEG0_MAIZE C0PEG0_MAIZE Vpp3 Vpp3 K7TLG8_MAIZE K7TLG8_MAIZE K7UCC7_MAIZE K7UCC7_MAIZE VATA_MAIZE VATA_MAIZE atpH atpH VATL_MAIZE VATL_MAIZE A0A1D6LAD4 A0A1D6LAD4 A0A1D6E5T9 A0A1D6E5T9 A0A1D6F2B0 A0A1D6F2B0 A0A1D6F758 A0A1D6F758 A0A1D6FIR4 A0A1D6FIR4 A0A1D6FYA0 A0A1D6FYA0 A0A1D6G131 A0A1D6G131 A0A1D6G843 A0A1D6G843 A0A1D6G8S1 A0A1D6G8S1 A0A1D6GSX5 A0A1D6GSX5 A0A1D6GSX9 A0A1D6GSX9 A0A1D6H1R5 A0A1D6H1R5 A0A1D6H1R6 A0A1D6H1R6 A0A1D6HC29 A0A1D6HC29 A0A1D6HR52 A0A1D6HR52 A0A1D6IEH3 A0A1D6IEH3 A0A1D6IMS3 A0A1D6IMS3 A0A1D6JW69 A0A1D6JW69 A0A1D6K1V7 A0A1D6K1V7 A0A1D6KUN9 A0A1D6KUN9 A0A1D6LI10 A0A1D6LI10 A0A1D6M2V4 A0A1D6M2V4 A0A1D6M6N9 A0A1D6M6N9 A0A1D6M6P1 A0A1D6M6P1 A0A1D6MFD2 A0A1D6MFD2 A0A1D6ML88 A0A1D6ML88 A0A1D6MS64 A0A1D6MS64 A0A1D6MYY4 A0A1D6MYY4 A0A1D6N620 A0A1D6N620 A0A1D6N7R7 A0A1D6N7R7 A0A1D6NDQ3 A0A1D6NDQ3 A0A1D6NV24 A0A1D6NV24 A0A1D6P1Z9 A0A1D6P1Z9 A0A1D6PER2 A0A1D6PER2 Pco133385b Pco133385b Pco119646(297) Pco119646(297)
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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
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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:
B4FLC0_MAIZEV-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. (130 aa)
B4FMV3_MAIZEV-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. (110 aa)
Pco086635(414)V-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. (377 aa)
B4FVD5_MAIZEV-type proton ATPase subunit E3. (230 aa)
B4FVD6_MAIZEV-type proton ATPase subunit D. (269 aa)
B4FZS8_MAIZEVacuolar ATP synthase 21 kDa proteolipid subunit; Belongs to the V-ATPase proteolipid subunit family. (176 aa)
Pco086632V-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. (377 aa)
B6SK76_MAIZEV-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. (165 aa)
B6SQV1_MAIZEV-type proton ATPase subunit e1. (69 aa)
B6T2T0_MAIZEVacuolar ATP synthase subunit E. (230 aa)
C0PEG0_MAIZEV-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. (452 aa)
Vpp3Vacuolar proton pump3. (621 aa)
K7TLG8_MAIZEV-type proton ATPase subunit D. (266 aa)
K7UCC7_MAIZESquamosa promoter-binding protein-like (SBP domain) transcription factor family protein. (1112 aa)
VATA_MAIZEV-type proton ATPase catalytic subunit A; Catalytic subunit of the peripheral V1 complex of vacuolar ATPase. V-ATPase vacuolar ATPase is responsible for acidifying a variety of intracellular compartments in eukaryotic cells. (561 aa)
atpHATP synthase subunit c, chloroplastic; F(1)F(0) ATP synthase produces ATP from ADP in the presence of a proton or sodium gradient. 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 central stalk subunits to proton translocation. (81 aa)
VATL_MAIZEV-type proton ATPase 16 kDa 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. (109 aa)
A0A1D6LAD4Squamosa promoter-binding-like protein 1. (972 aa)
A0A1D6E5T9V-type proton ATPase subunit c4. (98 aa)
A0A1D6F2B0Squamosa promoter-binding-like protein 14. (630 aa)
A0A1D6F758Ribosomal_S4e domain-containing protein. (159 aa)
A0A1D6FIR4V-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. (186 aa)
A0A1D6FYA0V-type proton ATPase subunit d2. (257 aa)
A0A1D6G131Putative replication protein. (631 aa)
A0A1D6G843V-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. (201 aa)
A0A1D6G8S1V-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. (818 aa)
A0A1D6GSX5Squamosa promoter-binding-like protein 14. (347 aa)
A0A1D6GSX9Squamosa promoter-binding-like protein 8. (345 aa)
A0A1D6H1R5V-type proton ATPase catalytic subunit A. (503 aa)
A0A1D6H1R6V-type proton ATPase catalytic subunit A. (120 aa)
A0A1D6HC29V-type proton ATPase subunit E3. (100 aa)
A0A1D6HR52Transducin/WD40 repeat-like superfamily protein. (259 aa)
A0A1D6IEH3V-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. (464 aa)
A0A1D6IMS3HAD superfamily subfamily IIIB acid phosphatase. (257 aa)
A0A1D6JW69V-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. (822 aa)
A0A1D6K1V7HAD superfamily subfamily IIIB acid phosphatase. (256 aa)
A0A1D6KUN9Uncharacterized protein. (35 aa)
A0A1D6LI10V-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. (139 aa)
A0A1D6M2V4Squamosa promoter-binding-like protein 14. (504 aa)
A0A1D6M6N9V-type proton ATPase subunit E2. (231 aa)
A0A1D6M6P1Acetyltransferase NSI. (267 aa)
A0A1D6MFD2V-type proton ATPase subunit E. (950 aa)
A0A1D6ML88V-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. (173 aa)
A0A1D6MS64V-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. (114 aa)
A0A1D6MYY4V-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. (172 aa)
A0A1D6N620Phosphoinositide dependent protein kinase3. (363 aa)
A0A1D6N7R7V-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. (235 aa)
A0A1D6NDQ3Squamosa promoter-binding-like protein 14. (565 aa)
A0A1D6NV24Squamosa promoter-binding-like protein 14. (547 aa)
A0A1D6P1Z9V-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. (145 aa)
A0A1D6PER2V-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. (820 aa)
Pco133385bV-type proton ATPase subunit E3. (230 aa)
Pco119646(297)Vacuolar ATP synthase subunit D 1. (269 aa)
Your Current Organism:
Zea mays
NCBI taxonomy Id: 4577
Other names: Z. mays, Zea mays L., Zea mays var. japonica, maize
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