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Aflv_2768 Aflv_2768 ctaF ctaF Aflv_1863 Aflv_1863 Aflv_1797 Aflv_1797 fliI fliI Aflv_1657 Aflv_1657 Aflv_1573 Aflv_1573 fruA fruA alsT-2 alsT-2 alsT alsT Aflv_1360 Aflv_1360 ctaD ctaD nrgA nrgA Aflv_1218 Aflv_1218 Aflv_1141 Aflv_1141 pstBB pstBB pstA pstA Aflv_0576 Aflv_0576 Aflv_0433 Aflv_0433 czcD czcD Aflv_0324 Aflv_0324 Aflv_0306 Aflv_0306 qoxC qoxC qoxB qoxB qoxA qoxA ctaD-2 ctaD-2 ctaC ctaC crcB crcB crcB-2 crcB-2 mrpG mrpG mrpA mrpA Aflv_1987 Aflv_1987 Aflv_2108 Aflv_2108 Aflv_2181 Aflv_2181 Aflv_2182 Aflv_2182 cbiN cbiN cbiM cbiM Aflv_2383 Aflv_2383 Aflv_2540 Aflv_2540 nuoL nuoL atpC atpC atpD atpD atpG atpG atpA atpA atpH atpH atpF atpF atpE atpE atpB atpB mntP mntP ctaE ctaE
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:
Aflv_2768K+ transport system, NAD-binding component. (318 aa)
ctaFCytochrome caa3 oxidase (subunit IV). (110 aa)
Aflv_1863Predicted membrane protein. (154 aa)
Aflv_1797Cation transport ATPase. (889 aa)
fliIFlagellar biosynthesis/type III secretory pathway ATPase FliI. (437 aa)
Aflv_1657Sulfate permease. (489 aa)
Aflv_1573ABC-type multidrug transport system, ATPase component. (290 aa)
fruAPhosphotransferase system (PTS) fructose-specific enzyme II, ABC subunits. (620 aa)
alsT-2Na+/alanine symporter. (477 aa)
alsTNa+/alanine symporter. (474 aa)
Aflv_1360Cytochrome c oxidase (b(o/a)3-type) chain II. (157 aa)
ctaDCytochrome c oxidase (b(o/a)3-type) chain I; Belongs to the heme-copper respiratory oxidase family. (549 aa)
nrgAAmmonia permease. (439 aa)
Aflv_1218Cation transport ATPase. (803 aa)
Aflv_1141Predicted sulfate permease MFS superfamily. (581 aa)
pstBBABC-type phosphate transport system, ATPase component; Part of the ABC transporter complex PstSACB involved in phosphate import. Responsible for energy coupling to the transport system; Belongs to the ABC transporter superfamily. Phosphate importer (TC 3.A.1.7) family. (269 aa)
pstAABC-type phosphate transport system, permease component. (293 aa)
Aflv_0576High-affinity Fe2+ permease. (305 aa)
Aflv_0433Maltose permease, MFS type. (383 aa)
czcDCo/Zn/Cd efflux system component. (324 aa)
Aflv_0324Ca2+/H+ antiporter; Ca(+)/H(+) antiporter that extrudes calcium in exchange for external protons. (349 aa)
Aflv_0306Fe2+ transport system protein B; Probable transporter of a GTP-driven Fe(2+) uptake system. Belongs to the TRAFAC class TrmE-Era-EngA-EngB-Septin-like GTPase superfamily. FeoB GTPase (TC 9.A.8) family. (667 aa)
qoxCCytochrome aa3 quinol oxidase subunit III. (201 aa)
qoxBCytochrome aa3 quinol oxidase subunit I; Belongs to the heme-copper respiratory oxidase family. (665 aa)
qoxACytochrome aa3 quinol oxidase subunit II; Catalyzes quinol oxidation with the concomitant reduction of oxygen to water. Subunit II transfers the electrons from a quinol to the binuclear center of the catalytic subunit I. (324 aa)
ctaD-2Cytochrome caa3 oxidase (subunit I); 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. (622 aa)
ctaCCytochrome caa3 oxidase (subunit II); Subunits I and II form the functional core of the enzyme complex. Electrons originating in cytochrome c are transferred via heme a and Cu(A) to the binuclear center formed by heme a3 and Cu(B). (354 aa)
crcBIntegral membrane protein possibly involved in chromosome condensation; Important for reducing fluoride concentration in the cell, thus reducing its toxicity; Belongs to the CrcB (TC 9.B.71) family. (110 aa)
crcB-2Integral membrane protein possibly involved in chromosome condensation; Important for reducing fluoride concentration in the cell, thus reducing its toxicity; Belongs to the CrcB (TC 9.B.71) family. (128 aa)
mrpGMultisubunit Na+/H+ antiporter, G subunit. (119 aa)
mrpAMultisubunit Na+/H+ antiporter, A subunit. (821 aa)
Aflv_1987ABC-type multidrug transport system, ATPase component. (239 aa)
Aflv_2108Mg/Co/Ni transporter MgtE (contains CBS domain); Acts as a magnesium transporter. (491 aa)
Aflv_2181ABC-type cobalt transport system, ATPase component. (265 aa)
Aflv_2182ABC-type cobalt transport system, permease component. (240 aa)
cbiNABC-type cobalt transport system, periplasmic component; Part of the energy-coupling factor (ECF) transporter complex CbiMNOQ involved in cobalt import; Belongs to the CbiN family. (89 aa)
cbiMABC-type cobalt transport system, permease component; Part of the energy-coupling factor (ECF) transporter complex CbiMNOQ involved in cobalt import. (250 aa)
Aflv_2383Potassium channel protein. (292 aa)
Aflv_2540Uncharacterized membrane protein. (318 aa)
nuoLNADH dehydrogenase subunit L. (618 aa)
atpCF0F1-type ATP synthase, epsilon subunit; Produces ATP from ADP in the presence of a proton gradient across the membrane. (134 aa)
atpDF0F1-type ATP synthase, beta subunit; Produces ATP from ADP in the presence of a proton gradient across the membrane. The catalytic sites are hosted primarily by the beta subunits; Belongs to the ATPase alpha/beta chains family. (473 aa)
atpGF0F1-type ATP synthase, gamma subunit; Produces ATP from ADP in the presence of a proton gradient across the membrane. The gamma chain is believed to be important in regulating ATPase activity and the flow of protons through the CF(0) complex. (290 aa)
atpAF0F1-type ATP synthase, alpha subunit; Produces ATP from ADP in the presence of a proton gradient across the membrane. The alpha chain is a regulatory subunit. Belongs to the ATPase alpha/beta chains family. (507 aa)
atpHF0F1-type ATP synthase, delta subunit; 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; Belongs to the ATPase delta chain family. (178 aa)
atpFF0F1-type ATP synthase, subunit b; Component of the F(0) channel, it forms part of the peripheral stalk, linking F(1) to F(0); Belongs to the ATPase B chain family. (179 aa)
atpEF0F1-type ATP synthase, subunit c; 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. (70 aa)
atpBF0F1-type ATP synthase, subunit a; Key component of the proton channel; it plays a direct role in the translocation of protons across the membrane. (236 aa)
mntPUncharacterized conserved membrane protein; Probably functions as a manganese efflux pump. Belongs to the MntP (TC 9.B.29) family. (181 aa)
ctaECytochrome caa3 oxidase (subunit III). (206 aa)
Your Current Organism:
Anoxybacillus flavithermus
NCBI taxonomy Id: 491915
Other names: A. flavithermus WK1, Anoxybacillus flavithermus WK1, Anoxybacillus flavithermus str. WK1, Anoxybacillus flavithermus strain WK1
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