Gloeobacter kilaueensis: GKIL_3530
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Entry
GKIL_3530 CDS
T02885
Symbol
hyuB
Name
(GenBank) 5-oxoprolinase
KO
K01474
N-methylhydantoinase B [EC:
3.5.2.14
]
Organism
glj
Gloeobacter kilaueensis
Pathway
glj00330
Arginine and proline metabolism
glj01100
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:
glj00001
]
09100 Metabolism
09105 Amino acid metabolism
00330 Arginine and proline metabolism
GKIL_3530 (hyuB)
Enzymes [BR:
glj01000
]
3. Hydrolases
3.5 Acting on carbon-nitrogen bonds, other than peptide bonds
3.5.2 In cyclic amides
3.5.2.14 N-methylhydantoinase (ATP-hydrolysing)
GKIL_3530 (hyuB)
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Gene cluster
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Motif
Pfam:
Hydantoinase_B
Motif
Other DBs
NCBI-ProteinID:
AGY59776
UniProt:
U5QLG4
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Position
3707024..3708556
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AA seq
510 aa
AA seq
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MDAIELEVTVHALAGITEEMMARLIRAAYSSNIKERRDCSTALFDAQGRNIAQAAAIPVH
LGALAAAVAAVRSMGPAAGEIWLLNDPFAGGSHLPDWTLVTVVAHPERPGDILGFAVSRA
HHSDVGGMRPGSMPADSTEIFQEGLILPPVRIGTEDGLEAHLLRLILANVRQPEQRLGDL
RAQVAAGALGAVRLVQLAVERGDEKLMAAIDAVIAYTERRLRSRIAQIPDGTYRAVDFLE
GPEAEIRLELTATVSGEKLRLDFSGTADQVTGNLNAPIAVTRSAVAFALRALLDPELPTN
DGALAPVELIVPAGSLLAAQPPAAVVAGNVETSQRIADLVMLALADAAGPGLAQGQGTMN
NLILGNAHFSYYETIGGGQGASSRGNGLDGVHVGMSNTLNTPIEALELEFPLTVRRYELR
EHSGGGGIHRGGLGIVRELVVGEPCTLSLLSDRRRHAPHGAAGGGDGLVGENFLNGEPIP
AKTSRPLRPGDRIRVETPGGGGWGVATSRP
NT seq
1533 nt
NT seq
+upstream
nt +downstream
nt
gtggatgcaatcgaactggaagtgacagtccacgccctggcggggatcaccgaggagatg
atggccaggctcatccgggcggcttactcctcgaatattaaagagcggcgcgactgctcg
acggccctttttgatgcccagggccgcaatatcgcccaggcagcggcgattcctgtgcat
ctgggagcgctggcggcggcggtggcggcggtgcgctctatggggccggcagcgggggag
atctggctattgaatgacccgtttgcgggcggctcgcacctgccggactggacactggtg
acggttgttgcccatccggagcggcccggcgacatcctgggctttgccgtctcgcgggcg
caccacagcgacgtgggcgggatgcgccccggttcgatgcccgccgattcgaccgagatc
tttcaagaaggactgatcttgccgccggtgcgcatcgggaccgaagacggactggaggcg
cacctgttgcggctgattctggccaacgtgcgccaaccggagcagcggctgggcgatctg
cgcgcccaggtggcggcgggggctctgggggcggtgcggctggtgcaactggctgtggag
cggggagacgaaaagctgatggcggccatcgacgcggtgatcgcctataccgagcggcgc
ttgcgcagccgcatcgcccaaattccggacggcacttaccgggcggtggactttttagaa
ggcccagaagcagagattcgcctggaactcacggccaccgtgagcggcgagaagctgcgc
ctcgactttagcggcacagccgatcaagtaacgggcaacctcaacgccccgatcgccgtt
acccgatcggcggtggcctttgccctgcgcgccctgctcgatccggaactgcccaccaac
gacggagccctcgccccggtggagttaatcgtaccggcgggcagtctgctggcagcccaa
ccaccggcggcggtggtggcaggcaacgtcgagaccagccagcggatcgccgatctggtg
atgctcgccctcgccgatgccgccggtcctggccttgcccagggccaggggacgatgaac
aacctcatcctcggcaacgcccacttcagctactacgagacgatcggcggcggccagggt
gcaagtagcagaggcaacggcctcgatggtgttcacgtcggcatgagcaacaccctcaat
acgccgatcgaggcgctggaattagaatttcccctcaccgtccggcgctacgaactgcgc
gagcactccggcggcggtgggattcatcgcggtggcctggggatcgtccgcgagctggtg
gtgggcgaaccctgcacgctctcgctgctgagcgaccggcggcggcacgctccacacggg
gccgccggggggggcgacggcctggtgggcgaaaattttttaaacggcgaacccatcccc
gccaagacttcccgcccgttgcgcccaggggaccgaatcagggtcgagacgccggggggc
ggcggctggggggtggctacttctcgaccatga
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