Stella vacuolata: STVA_50730
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Entry
STVA_50730 CDS
T06335
Name
(GenBank) glutamine synthetase
KO
K01915
glutamine synthetase [EC:
6.3.1.2
]
Organism
svc
Stella vacuolata
Pathway
svc00220
Arginine biosynthesis
svc00250
Alanine, aspartate and glutamate metabolism
svc00630
Glyoxylate and dicarboxylate metabolism
svc00910
Nitrogen metabolism
svc01100
Metabolic pathways
svc01110
Biosynthesis of secondary metabolites
svc01120
Microbial metabolism in diverse environments
svc01230
Biosynthesis of amino acids
svc02020
Two-component system
Brite
KEGG Orthology (KO) [BR:
svc00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00630 Glyoxylate and dicarboxylate metabolism
STVA_50730
09102 Energy metabolism
00910 Nitrogen metabolism
STVA_50730
09105 Amino acid metabolism
00250 Alanine, aspartate and glutamate metabolism
STVA_50730
00220 Arginine biosynthesis
STVA_50730
09130 Environmental Information Processing
09132 Signal transduction
02020 Two-component system
STVA_50730
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
svc04147
]
STVA_50730
Enzymes [BR:
svc01000
]
6. Ligases
6.3 Forming carbon-nitrogen bonds
6.3.1 Acid-D-ammonia (or amine) ligases (amide synthases)
6.3.1.2 glutamine synthetase
STVA_50730
Exosome [BR:
svc04147
]
Exosomal proteins
Exosomal proteins of other body fluids (saliva and urine)
STVA_50730
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Gene cluster
GFIT
Motif
Pfam:
Gln-synt_C
Gln-synt_N_2
Motif
Other DBs
NCBI-ProteinID:
BBK45053
LinkDB
All DBs
Position
complement(5379754..5381121)
Genome browser
AA seq
455 aa
AA seq
DB search
MQPRDVRTAADAKAIVEARGLTHVKVGVFDADGVMRGKYMSRAKFLSALEGGFGFCDVVL
GWDSNDQLYDNTTYTGWHTAYPDAPVRIIPDSCREIPFEAPGLLFLAEFAAPADTVCPRG
TLRRVLDRAAAMGYRVKAAVEYEFFVFDETPDSVREKGYRNLKPITPGNFGYSVLRNTVW
SDFYNELLDTCERMDMPIEGLHTETGPGVLEAALTVDDALAAADKAALFKTFAKAVAQRR
KLMATFMAKWSPDYPGQSGHIHVSLIDSDGKSVFHDPSAEGSMSTAMRHFVGGQQALLPQ
VLGMVAPTVNSYTRLIPGFWAPTSATWGIENRTTALRVIPGSAKSQRVEYRIAAADGNPY
LALAAAIGSGLWGIEQQLEPTPVVKGNAYAQEPPAHLALPTTLGEAARNLKGSAAARSLF
GDAFVDHFAATREWEEREARRAITDWQLARYFEII
NT seq
1368 nt
NT seq
+upstream
nt +downstream
nt
atgcagcctagggacgttcgcaccgccgccgatgccaaggcgatcgtggaggcgcggggg
ctgacccacgtcaaggtcggcgtgttcgacgccgacggcgtgatgcgcggcaagtacatg
tcgcgggccaagttcctgtcggcgctggaaggcggcttcggcttctgcgacgtggtgctg
ggctgggattccaacgaccagctctacgacaacaccacctacaccggctggcacaccgcc
tatccagatgcgccggtgcggatcatcccggacagctgccgcgagatcccgttcgaggcg
ccgggcctgctgttcctggcggagttcgcagcaccggccgacacggtctgcccgcgcggc
accctgcgccgggtcctcgaccgcgccgcggccatgggctaccgggtcaaggcggccgtc
gagtacgagttcttcgtgttcgacgagacgccggattcggtgcgcgagaagggctatcgc
aacctgaagccgatcacccccggcaatttcggctattcggtcctgcgcaacaccgtctgg
tcggacttctacaacgagctgctcgacacctgcgagcgcatggacatgccgatcgagggc
ctgcacaccgagaccgggccgggcgtgctggaggcggcgctgaccgtcgacgacgccctg
gccgcggccgacaaggccgccctcttcaagaccttcgccaaggcggtggcgcagcgccgc
aagctgatggcgaccttcatggccaagtggtcgcccgactatccgggccagtccggtcac
atccacgtctcgctgatcgatagcgacggcaagtcggtcttccacgacccgtccgccgaa
gggtcgatgtcgaccgccatgcgccatttcgtcggtggccagcaggcgttgctgccgcag
gtgctgggcatggtggcgccgacggtcaactcctacacgcgcctcataccgggcttctgg
gcgccgaccagcgccacctggggcatcgagaaccggaccacggccctgcgcgtcatcccc
ggcagcgccaagtcgcagcgggtcgagtaccggatcgcggccgccgacgggaacccgtac
ctggccctggcggcggcgatcggcagcgggctgtggggcatcgagcagcagctggagccg
acgccggtggtcaagggcaatgcctacgcccaggagccgccggcgcatctggccctgccg
acgacgctgggcgaggcggcgcggaacctgaaaggctcggctgccgcgcgcagcctgttc
ggcgatgccttcgtcgaccatttcgccgccacccgcgagtgggaggagcgcgaggcccgt
cgcgccatcaccgactggcagctcgcccgctacttcgagatcatctga
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