STRINGSTRING
hemL hemL hemB hemB hemH hemH cobC cobC cobD cobD btuR btuR hemA hemA cobT cobT cobS cobS cobU cobU cbiP cbiP cbiO cbiO cboQ cboQ cbiN cbiN cbiM cbiM cbiL cbiL cbiK cbiK cbiJ cbiJ cbiH cbiH cbiG cbiG cbiF cbiF cbiT cbiT cbiE cbiE cbiD cbiD cbiC cbiC cibB cibB cbiA cbiA pduX pduX hemF hemF hemY hemY hemX hemX hemD hemD hemC hemC hemG hemG hemN hemN hemE hemE
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:
hemLGlutamate-1-semialdehyde 2,1-aminomutase. (SW:GSA_SALTY). (426 aa)
hemBSimilar to E. coli 5-aminolevulinate dehydratase = porphobilinogen synthase (AAC73472.1); Blastp hit to AAC73472.1 (335 aa), 93% identity in aa 12 - 335; Belongs to the ALAD family. (324 aa)
hemHFerrochelatase; Catalyzes the ferrous insertion into protoporphyrin IX. (320 aa)
cobCAlpha ribazole-5'-P phosphatase in cobalamin synthesis; Catalyzes the conversion of adenosylcobalamin 5'-phosphate to adenosylcobalamin (vitamin B12); involved in the assembly of the nucleotide loop of cobalamin. Also catalyzes the hydrolysis of the phospho group from alpha-ribazole 5'-phosphate to form alpha-ribazole. (202 aa)
cobDPutative aminotransferase in cobalamin synthesis; Decarboxylates L-threonine-O-3-phosphate to yield (R)-1- amino-2-propanol O-2-phosphate, the precursor for the linkage between the nucleotide loop and the corrin ring in cobalamin. (364 aa)
btuRcob(I)alamin and cobinamide adenolsyltransferase; Required for both de novo synthesis of the corrin ring for the assimilation of exogenous corrinoids. Participates in the adenosylation of a variety of incomplete and complete corrinoids; Belongs to the Cob(I)alamin adenosyltransferase family. (196 aa)
hemAGlutamyl tRNA reductase; Catalyzes the NADPH-dependent reduction of glutamyl-tRNA(Glu) to glutamate 1-semialdehyde (GSA). (418 aa)
cobTNicotinate-nucleotide dimethylbenzimidazole-P phophoribosyl transferase; Catalyzes the synthesis of alpha-ribazole-5'-phosphate from nicotinate mononucleotide (NAMN) and 5,6-dimethylbenzimidazole (DMB) (Ref.7,. Able to use a variety of other nucleotide bases as substrate to create alternative lower ligands for cobamide. Belongs to the CobT family. (356 aa)
cobSCobalamin 5'-phosphate synthase; Joins adenosylcobinamide-GDP and alpha-ribazole to generate adenosylcobalamin (Ado-cobalamin). Also synthesizes adenosylcobalamin 5'-phosphate from adenosylcobinamide-GDP and alpha-ribazole 5'- phosphate; Belongs to the CobS family. (247 aa)
cobUCobinamide kinase; Catalyzes ATP-dependent phosphorylation of adenosylcobinamide and addition of GMP to adenosylcobinamide phosphate. Belongs to the CobU/CobP family. (181 aa)
cbiPSynthesis of vitamin B12 adenosyl cobalamide precursor; Catalyzes amidations at positions B, D, E, and G on adenosylcobyrinic A,C-diamide. NH(2) groups are provided by glutamine, and one molecule of ATP is hydrogenolyzed for each amidation. (506 aa)
cbiOSynthesis of vitamin B12 adenosyl cobalamide precursor; Part of the energy-coupling factor (ECF) transporter complex CbiMNOQ involved in cobalt import. The complex confers cobalt uptake upon expression in E.coli; can also transport nickel with a very low affinity. Presumably responsible for energy coupling to the transport system; Belongs to the ABC transporter superfamily. Cobalt importer (TC 3.A.1.18.1) family. (271 aa)
cboQSynthesis of vitamin B12 adenosyl cobalamide precursor; Part of the energy-coupling factor (ECF) transporter complex CbiMNOQ involved in cobalt import. The complex confers cobalt uptake upon expression in E.coli; can also transport nickel with a very low affinity; Belongs to the CbiQ family. (225 aa)
cbiNSynthesis of vitamin B12 adenosyl cobalamide precursor; Part of the energy-coupling factor (ECF) transporter complex CbiMNOQ involved in cobalt import. The complex confers cobalt uptake upon expression in E.coli; can also transport nickel with a very low affinity; Belongs to the CbiN family. (93 aa)
cbiMSynthesis of vitamin B12 adenosyl cobalamide precursor; Part of the energy-coupling factor (ECF) transporter complex CbiMNOQ involved in cobalt import. The complex confers cobalt uptake upon expression in E.coli; can also transport nickel with a very low affinity. (245 aa)
cbiLSynthesis of vitamin B12 adenosyl cobalamide precursor; Methylates cobalt-precorrin-2 at the C-20 position to produce cobalt-precorrin-3A in the anaerobic cobalamin biosynthesis pathway. (237 aa)
cbiKSynthesis of vitamin B12 adenosyl cobalamide precursor; Catalyzes the insertion of Co(2+) into sirohydrochlorin as part of the anaerobic pathway to cobalamin biosynthesis; Belongs to the CbiK family. (264 aa)
cbiJSynthesis of vitamin B12 adenosyl cobalamide precursor; Catalyzes the reduction of the macrocycle of cobalt- precorrin-6A to cobalt-precorrin-6B. (263 aa)
cbiHSynthesis of vitamin B12 adenosyl cobalamide precursor; Methyltransferase that likely catalyzes the ring contraction and methylation of C-17 in cobalt-factor III to form cobalt-factor IV. May also convert cobalt-precorrin-3 to cobalt-precorrin-4. (241 aa)
cbiGSynthesis of vitamin B12 adenosyl cobalamide precursor; Catalyzes the hydrolysis of the ring A acetate delta-lactone of cobalt-precorrin-5A resulting in the loss of the C-20 carbon and its attached methyl group in the form of acetaldehyde. (351 aa)
cbiFSynthesis of vitamin B12 adenosyl cobalamide precursor; Catalyzes the methylation of C-11 in cobalt-precorrin-4 to form cobalt-precorrin-5A. (257 aa)
cbiTSynthesis of vitamin B12 adenosyl cobalamide precursor; Catalyzes the methylation of C-15 in cobalt-precorrin-6B followed by the decarboxylation of C-12 to form cobalt-precorrin-7. (192 aa)
cbiESynthesis of vitamin B12 adenosyl cobalamide precursor; Catalyzes the methylation of C-5 in cobalt-precorrin-7 to form cobalt-precorrin-8. (201 aa)
cbiDSynthesis of vitamin B12 adenosyl cobalamide precursor; Catalyzes the methylation of C-1 in cobalt-precorrin-5B to form cobalt-precorrin-6A. (379 aa)
cbiCSynthesis of vitamin B12 adenosyl cobalamide precursor; Catalyzes the conversion of cobalt-precorrin-8 to cobyrinate; Belongs to the CobH/CbiC family. (210 aa)
cibBSynthesis of vitamin B12 adenosyl cobalamide precursor; Converts cobyric acid to cobinamide by the addition of aminopropanol on the F carboxylic group. However, the true cosubstrate could be (R)-1-amino-2-propanol O-2-phosphate, leading to cobinamide phosphate. (319 aa)
cbiASynthesis of vitamin B12 adenosyl cobalamide precursor; Catalyzes the ATP-dependent amidation of the two carboxylate groups at positions a and c of cobyrinate, using either L-glutamine or ammonia as the nitrogen source. Is able to use other nucleotide triphosphates as substrate, such as GTP or UTP, although less efficiently than ATP; Belongs to the CobB/CbiA family. (459 aa)
pduXPropanediol utilization protein; L-threonine kinase that catalyzes the conversion of L- threonine to L-threonine-O-3-phosphate. Involved in the de novo synthesis of adenosylcobalamin (coenzyme B12) and the assimilation of cobyric acid. Uses ATP; the activity with CTP, GTP or UTP is 6, 11, and 3% of the activity with ATP, respectively. (300 aa)
hemFCoproporphyrinogen III oxidase; Involved in the heme biosynthesis. Catalyzes the aerobic oxidative decarboxylation of propionate groups of rings A and B of coproporphyrinogen-III to yield the vinyl groups in protoporphyrinogen- IX. (299 aa)
hemYSimilar to E. coli a late step of protoheme IX synthesis (AAC76805.1); Blastp hit to AAC76805.1 (398 aa), 95% identity in aa 1 - 398. (399 aa)
hemXSimilar to E. coli uroporphyrinogen III methylase (AAC76806.1); Blastp hit to AAC76806.1 (393 aa), 87% identity in aa 1 - 393. (389 aa)
hemDUroporphyrinogen III synthase; Catalyzes cyclization of the linear tetrapyrrole, hydroxymethylbilane, to the macrocyclic uroporphyrinogen III. Belongs to the uroporphyrinogen-III synthase family. (246 aa)
hemCPorphobilinogen deaminase; Tetrapolymerization of the monopyrrole PBG into the hydroxymethylbilane pre-uroporphyrinogen in several discrete steps. Belongs to the HMBS family. (318 aa)
hemGProtoporphyrin oxidase; Catalyzes the 6-electron oxidation of protoporphyrinogen-IX to form protoporphyrin-IX using menaquinone as electron acceptor. (181 aa)
hemNO2-independent coproporphyrinogen III oxidase; Involved in the heme biosynthesis. Catalyzes the anaerobic oxidative decarboxylation of propionate groups of rings A and B of coproporphyrinogen III to yield the vinyl groups in protoporphyrinogen IX. (457 aa)
hemEUroporphyrinogen decarboxylase; Catalyzes the decarboxylation of four acetate groups of uroporphyrinogen-III to yield coproporphyrinogen-III. (354 aa)
Your Current Organism:
Salmonella enterica Typhimurium
NCBI taxonomy Id: 99287
Other names: S. enterica subsp. enterica serovar Typhimurium str. LT2, Salmonella enterica subsp. enterica serovar Typhimurium LT2, Salmonella enterica subsp. enterica serovar Typhimurium str. LT2, Salmonella enterica subsp. enterica serovar Typhimurium strain LT2, Salmonella enterica subsp. enterica serovar Typhimurium strain LT2-LTL2, Salmonella typhimurium LT2
Server load: low (24%) [HD]