Candidatus Electrothrix aestuarii: Q3M24_22010
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Entry
Q3M24_22010 CDS
T10293
Name
(GenBank) hydantoinase B/oxoprolinase family protein
KO
K01469
5-oxoprolinase (ATP-hydrolysing) [EC:
3.5.2.9
]
Organism
eaj Candidatus Electrothrix aestuarii
Pathway
eaj00480
Glutathione metabolism
eaj01100
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:
eaj00001
]
09100 Metabolism
09106 Metabolism of other amino acids
00480 Glutathione metabolism
Q3M24_22010
Enzymes [BR:
eaj01000
]
3. Hydrolases
3.5 Acting on carbon-nitrogen bonds, other than peptide bonds
3.5.2 In cyclic amides
3.5.2.9 5-oxoprolinase (ATP-hydrolysing)
Q3M24_22010
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Paralog
Gene cluster
GFIT
Motif
Pfam:
Hydantoinase_B
Hydantoinase_A
Hydant_A_N
Hydant_A_C
Motif
Other DBs
NCBI-ProteinID:
XCN72922
UniProt:
A0AAU8LUH5
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Position
4790323..4794069
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AA seq
1248 aa
AA seq
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MPATGQFRFSIDRGGTFTDVYAEVPGKPGFRTIKLLSEDPANYPDAPREGIRRILAEFGI
PLQNGLLDSSRIEWIRMGTTVATNALLERKGARTALITTRGFGDILQIGYQDRPDLFDLR
IVKPDLLYEEVIEVEERLLLVKDDREAARQESLGHPLLTGSTGERFAVLAAPDIEALQPR
LQAILDQGISSVAVVFAHAYSCPQHEEQVGGLARRLGFAQVSLSSQVMPAVRLVSRGDTT
LVDAYLTPHIRAYLDSFRSGFAGGLADNKLLFMQSDGGLAQADNFTGSRAVLSGPAGGVI
GYGRGVWNPATKEPVIGFDMGGTSTDVSRFAGEPELTFANCTAGVRIHAPQLDIRTVAAG
GGSRLFFDNGMFRVGPESAGAHPGPICYRKGGSLTVTDANLVLGRLQPEYFPCIFGPDED
QPLDKEAACNAFAELTTEINASYQEQGHAPLSVQEVALGFVRVADEVMVRPIREISVMRG
FDIREHVLAVFGGAGAQHACSVARILGIRKVVVHRFSGILSACGMGMADTTVDRRQPAAA
ELGSKSLQTMRDELARLRAATEQELLDQGIPRERISSQCFLNLRYAGTDTALMIEEPEHG
DYGAAFQAAYQREFGFTLRDRAVLIDDCRVRSAGQAGRVEKQPIAQAEEPPKQQARVRVW
FTEGERDTPLYRMDTLLAGHAIPGPAILIQDTATIVVEPDCTARISSYGDVEIEVGRRQQ
EAVSTVLDPVRLSVFANLFMSIAEQMGRMLQKTAVSTNIRERLDFSCALFDTAGQLVANA
PHVPVHLGAMSEAVQEQIRRCPDLQPGDVLVSNHPAAGGSHLPDITVITPVFAQDTEKII
FWVASRGHHADIGGISPGSMPPHSRLLSEEGAAIESFRLVQGGVFQEEGISKLLLKSTGP
GCSGTRRLADNISDLRAQVAANQKGIDLILGMVKDYSLEAVQAYMGHVQDAAEAAVRRAL
CQLSLSQGMTEQDTVEAVDYLDDGSPIRLRLSIDRKDGSAVFDFSGTGPELWGNLNAPKA
VTRSALLYSLRCLVEKDIPLNHGCLLPVRLIIPPGSLLDPSPEAGVVGGNVLTSQRVVDV
ALKAFGVAAASQGCMNNLCFGNEDFGYYETIGGGAGAGPSWHGQSGVHTHMTNTRITDPE
ILERRYPVLVREFSLRRGSGGTGTFRGGDGLIRELEFLEPLQVSILSERRVFAPYGLNGG
GDGMRGENIFIRSNGRRLNLGGKNTIQAEAGDRLRICTPGGGGWGENE
NT seq
3747 nt
NT seq
+upstream
nt +downstream
nt
atgccagcaacaggacaattccgcttctccatagaccggggcggcaccttcaccgatgtc
tacgccgaggtaccgggcaaacccggcttccgcaccatcaagctgctctccgaagacccg
gccaattacccggatgcgccccgcgagggtatccgccgcattctggccgagttcggtatt
cccctgcaaaacggcctattggacagctcccgcatcgagtggattcgcatgggcaccacg
gttgccaccaatgccctgctggagcgcaaaggtgcccgcaccgccctgatcaccaccagg
ggcttcggcgatattctccagatcggctatcaggatcggcccgacctctttgatctcagg
atcgtcaagcccgacctcttatacgaggaggtcattgaggtggaggaacgcctgctgctc
gtcaaggatgaccgtgaagcagcccggcaggagagcttagggcatcccttgctcaccggc
agcacgggcgagcgttttgccgtgctggctgccccggatattgaggccctgcaaccccgc
ttgcaggccatcctggaccagggcatcagctcagtggccgtggtctttgcccatgcctac
agttgcccgcaacacgaggagcaggtcggcggactggcccgccggctgggctttgcgcaa
gtctccctctcctctcaggtcatgcccgcagtcaggctggtttcgcgcggagacaccacc
ttggtggatgcctatctcaccccgcatatccgcgcctatctggacagctttcgctccgga
ttcgctggcggattggcggataacaagctcctgtttatgcagtccgacggcggtctggcc
caggctgacaactttaccgggtcacgggccgtgctctccgggcctgcgggcggggtgata
ggctatggccggggtgtctggaatccagcaacaaaggagccggtcatcggttttgacatg
ggcggcacgtccacggatgtgtcccgctttgccggagaacccgagctgacctttgccaac
tgcactgccggggtgcgtatccatgccccgcagctggatatccgcaccgtggcagcaggc
ggtggctcgcgtctcttctttgacaacgggatgttccgggtcgggccggagtcggcaggt
gcccatcccggcccgatctgttaccgcaagggcggctctctgaccgtgaccgatgccaac
ctggtgctcggtcgtctgcaaccggaatacttcccctgcatcttcggccctgacgaggat
cagcccctggataaggaagcggcctgcaatgcctttgccgagctgaccacagaaatcaac
gcctcgtatcaggagcagggacatgcccctctttccgtgcaggaagtagccctgggcttt
gtccgggtggcggatgaggtcatggtgcgtcctatccgggagatttcagtgatgcgggga
ttcgatatccgcgagcatgtcctggccgtgttcgggggagccggggcccaacatgcctgt
tccgtggcccgcatcctggggattcgtaaagtggtggtgcatcgtttttccggcatcctc
tcggcctgcggcatgggcatggccgataccacggtggatcgacggcaacccgctgctgcc
gagttagggtcgaagtccttgcagactatgcgggacgagcttgcccgcctccgggccgct
accgaacaggagctgttggatcaggggattccccgagaacggatcagcagccaatgcttc
cttaatctgcgctatgcaggcacggacaccgccctgatgattgaggaaccggaacacggt
gattatggcgcagccttccaagccgcctatcagcgggaattcggttttaccctccgggat
cgtgcggtgctgattgatgattgcagggtgcgttccgccgggcaggcaggcagggtggag
aagcagcccatcgcccaagctgaagaacctcccaagcagcaggctcgggtgcgggtatgg
tttacagagggagagcgggacacgcctctgtatagaatggataccctgctggccggacat
gcaattcccggtccggccatcctgattcaggataccgccaccattgtggtggagccggat
tgtacggcccgtatcagcagctacggggatgtggagattgaggtgggccgcaggcagcag
gaggccgtcagtacggtacttgatccggtgcggctctcggtctttgccaatctgttcatg
tccattgccgaacagatgggccggatgctgcaaaagacagcggtgtccaccaatatccgg
gaacggctggatttctcctgcgccctgttcgataccgcagggcagctggtcgccaatgcc
cctcatgtcccggtgcatctcggtgccatgagcgaggccgtacaggagcagatccggcgg
tgcccggacctgcaacccggtgacgtgctggtcagtaatcatccggcagccgggggcagt
catctgccggacatcacggtcatcaccccggtctttgcccaggatacggaaaagatcatc
ttctgggtagcaagccgggggcaccatgccgatataggcggcatctcgcccggttccatg
ccgccccattcccgtctcctgagcgaggaaggggcagctatagagtcgttccgcctagta
caaggcggggtctttcaggaagaaggtatctcgaaactcctgctcaagagtacagggccg
ggatgcagcggcacccgcaggttggccgataatatctctgatctgcgagcccaggttgcg
gccaatcaaaagggcattgatctgattctgggcatggtgaaagattatagcctggaagca
gtgcaagcctatatggggcatgttcaggatgcagctgaagcggcggtgcgtagggcattg
tgccaactttccctgagccaaggcatgactgaacaggatacggtggaggcagtggattat
ctggatgacggcagcccgatccgccttcgcctgagcatcgaccgaaaggacggttctgct
gtctttgatttcagcggcaccggcccggagctttggggcaatctgaatgcaccaaaggcc
gtgacccgctctgccctcctctacagcctgcgttgtctggtggaaaaggatatcccgctc
aaccacggctgcctgctcccggtccgcctgatcatccctcccggctccctgcttgatcca
tcccccgaggccggagtggtgggcggcaatgtgctcacctctcagcgggtggtggatgtg
gcgctcaaagcctttggcgtggcagcggcttctcagggttgtatgaacaacctctgcttc
ggcaatgaagacttcggctattacgaaaccatcggcggcggggccggggccggaccaagc
tggcacggtcaatccggcgttcacacccacatgaccaatacccggatcacggatccagag
attctggaacgacgctacccggtgctggtgcgggagttttccctgcgtcggggttccggg
ggaacaggaacattccggggaggcgatggattaattcgggaactggagttcctggaaccc
ttgcaggtctccatcctctcggaacgcagggtctttgcgccctacgggctgaacggcggc
ggggatggaatgcggggcgagaatatctttatccgcagcaacggtaggaggttgaatctc
ggcgggaagaatacgattcaggccgaggccggggatcggttgcggatatgtacgcccggc
gggggtgggtggggagaaaatgaatga
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