Gracilinema caldarium: Spica_0174
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Entry
Spica_0174 CDS
T01573
Name
(GenBank) Anthranilate synthase
KO
K01657
anthranilate synthase component I [EC:
4.1.3.27
]
Organism
scd
Gracilinema caldarium
Pathway
scd00400
Phenylalanine, tyrosine and tryptophan biosynthesis
scd01100
Metabolic pathways
scd01110
Biosynthesis of secondary metabolites
scd01230
Biosynthesis of amino acids
scd02024
Quorum sensing
Brite
KEGG Orthology (KO) [BR:
scd00001
]
09100 Metabolism
09105 Amino acid metabolism
00400 Phenylalanine, tyrosine and tryptophan biosynthesis
Spica_0174
09110 Biosynthesis of other secondary metabolites
00405 Phenazine biosynthesis
Spica_0174
09140 Cellular Processes
09145 Cellular community - prokaryotes
02024 Quorum sensing
Spica_0174
Enzymes [BR:
scd01000
]
4. Lyases
4.1 Carbon-carbon lyases
4.1.3 Oxo-acid-lyases
4.1.3.27 anthranilate synthase
Spica_0174
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Motif
Pfam:
Chorismate_bind
Anth_synt_I_N
Motif
Other DBs
NCBI-ProteinID:
AEJ18342
UniProt:
F8EWV6
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Position
195515..196930
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AA seq
471 aa
AA seq
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MADIRDDGVVVSLPGERFTPFTAAKKLGAVAILESASFKKGRERYSIIQLDEAFRIRQKN
DGVYWELNGKESPWPDSSVHDILDVLYGLALQNRNTAPDLPVPGAGIGFLGYDFVRRCDT
VRLAIKPDSIGIPEAEFIIGHLYLVIDHYTDIMHLVGLNYAEHHIDLEKRVAEIKRRLDD
LDFTYLEKSADPAPFEVVSDEVLEEQIFKEGVRAIHERIVAGDLLQAVLSRRLTGHSSLS
ALEGYRRLRSTSPSPYLFYIDFGTYQLLGASPESLVRLRNGTASIRPIAGTRRRGRTAEE
DRQLEQELLEDPKERAEHLMLVDLARNDLGRVCKPGSVTVSRNMEIEHFSHVMHIVSEVE
GIPDEGVTGPRVLRAAFPAGTVSGAPKLKAIEIVSSLERFDRSFYAGAVGYFDVHGGFDT
CITIRSSLVKDGQWHLQSGAGIVYASTPDREWEETNEKLAALRTAISGGTR
NT seq
1416 nt
NT seq
+upstream
nt +downstream
nt
atggcagacatacgggatgatggggtagttgtttcactgcccggggagcggttcaccccc
tttacggcagccaagaagctgggtgctgtcgccatattggaatcggcgtcttttaaaaag
ggaagagaacgttattcgattatccagcttgatgaagctttcaggattcgtcaaaagaac
gacggtgtgtactgggagttgaacggtaaagaaagcccctggcctgatagttcggtccat
gacattctggatgtactgtatggtcttgcattacagaaccggaatactgcccccgatctt
cccgtcccaggagcgggtattggctttcttgggtacgattttgtccgccgctgtgatacg
gtgcggcttgcgataaagcccgactccatcggaattcccgaagctgagtttattataggc
catctgtacctcgttatcgatcactatacggatatcatgcatcttgtggggcttaattat
gcagagcatcatattgatctcgaaaagcgggttgcagaaattaagcgccgtctcgatgat
ctggattttacctatctggaaaagtctgctgatcctgcacccttcgaagtagtaagtgat
gaagtactggaagaacagatctttaaagagggggtacgcgccattcacgaacggattgtt
gcaggggaccttttgcaggcggtcctttcccgccgtcttacagggcacagcagcctttct
gccctggaagggtaccgccggctccgttctaccagtccatccccgtatcttttttatatt
gattttggcacctatcagctcctcggggcatctccggaaagtctggttcgtctgagaaac
gggacagcatctattcggcctattgcgggaacccgccggcggggaaggaccgccgaagag
gaccggcagttagagcaggaactcttggaggatcctaaggaacgggcagagcatctgatg
ctcgtggatcttgcccggaatgacctgggaagggtgtgcaagcctggttcggttacggtc
agccgaaacatggaaattgaacacttcagtcatgtgatgcatatcgtttccgaggtagag
ggcatccccgatgaaggcgtaaccggtccccgggttttgcgtgccgcctttccggcagga
accgtaagcggtgctcccaagcttaaggccatagaaattgtgtcgtccctggaacggttt
gaccggagtttttacgccggtgcagtgggctactttgatgtccatggcggttttgatacc
tgtatcaccattcgatcttccctggtgaaagatggccagtggcatctgcaatccggggct
gggattgtttatgcatccacaccggaccgagagtgggaagaaactaacgaaaaattggcc
gccctgcggacggccatatcaggaggaacgcgatga
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