Bradyrhizobium elkanii: BE61_49350
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Entry
BE61_49350 CDS
T07520
Name
(GenBank) D-hydantoinase
KO
K01464
dihydropyrimidinase [EC:
3.5.2.2
]
Organism
bel
Bradyrhizobium elkanii
Pathway
bel00240
Pyrimidine metabolism
bel00410
beta-Alanine metabolism
bel00770
Pantothenate and CoA biosynthesis
bel01100
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:
bel00001
]
09100 Metabolism
09104 Nucleotide metabolism
00240 Pyrimidine metabolism
BE61_49350
09106 Metabolism of other amino acids
00410 beta-Alanine metabolism
BE61_49350
09108 Metabolism of cofactors and vitamins
00770 Pantothenate and CoA biosynthesis
BE61_49350
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
bel04147
]
BE61_49350
Enzymes [BR:
bel01000
]
3. Hydrolases
3.5 Acting on carbon-nitrogen bonds, other than peptide bonds
3.5.2 In cyclic amides
3.5.2.2 dihydropyrimidinase
BE61_49350
Exosome [BR:
bel04147
]
Exosomal proteins
Exosomal proteins of other body fluids (saliva and urine)
BE61_49350
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GFIT
Motif
Pfam:
Amidohydro_1
Amidohydro_3
Urease_alpha
Motif
Other DBs
NCBI-ProteinID:
BBB99488
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Position
5024791..5026203
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AA seq
470 aa
AA seq
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MSFDTIIRGGTVVTAADTFACDVGIRDGKITALGHDLGDAATIIDATDRLVLPGGIDSHV
HFAQPSGDGIVMADGFASGTRSAAFGGNTTVLPFCLQEKGQTLREALKHYHSLAEGECHV
DVAFHLILTDPTEHVLGQELPALVEDGYTSLKVFMTYEGLALSDRELLETMSVARETGAM
LMVHAENFDAIRFLTDRLERAGNTAPRFHATSRPIPVEREATHRAISLSELVDVPIMIVH
VSNREAMDEIRRAQQRGLRVMGETCPQYLMLTEKDLDQLNMEGAKYVCSPPPRDVASQQA
CWEGLQQKVFSVFSSDHCPFRYDDPQGKLAPKGRTSFRWVPNGIPGVATRLPILFSEGVV
KGRIDLNSFVAFSATNHARIYGLYPRKGTIAVGSDADIALWDPKRKVTIRHELIHDGADY
TPYEGLEVTGWPVLTMVRGKVVVDNGMLVGGKDHGTYLPRAKPPKAATIP
NT seq
1413 nt
NT seq
+upstream
nt +downstream
nt
atgtccttcgacaccatcatccgcggcggcaccgtggtgaccgctgccgacaccttcgcc
tgcgacgtcggtatccgcgacggcaagatcacggcgctcggccatgatctcggcgatgcg
gccacaatcatcgatgccaccgaccgcctggtgctgccgggcggcatcgacagccacgtc
cacttcgcccagccgtccggcgacggcatcgtgatggccgatggctttgccagcggcacc
cgctcggcggcgttcggcggcaacaccacggtgctgccgttctgcctgcaggagaagggc
cagacgctgcgcgaggcgctgaagcattaccattcgctggccgaaggcgagtgccatgtc
gacgtcgccttccatctcatcctcaccgatccgaccgagcatgtgctgggccaggagctg
ccggcgctggtcgaggacggctacacctcgctgaaggtcttcatgacctatgaggggctc
gcgctgtcggaccgcgagctgctggagaccatgtcggtcgcgcgcgagaccggcgccatg
ctgatggtgcatgcggagaatttcgacgccatccgcttcctgaccgaccggctggagcgc
gccggcaacaccgcgccgcgcttccacgcgacgtcacggccgatcccggtcgagcgcgag
gccacccatcgcgcgatctcgctgtccgagctcgtcgacgtgccgatcatgatcgtgcat
gtctcgaaccgcgaggcgatggacgaaatccggcgtgcgcagcagaggggcttgcgggtc
atgggcgagacctgtccgcagtacctgatgctgaccgaaaaggatctcgatcagctcaac
atggaaggcgcaaaatacgtctgctcgccgccgccgcgcgacgtcgccagccagcaggcc
tgctgggaaggtctgcagcagaaggtgttctcggtgttctcgtcggaccattgtccgttc
cgttacgacgacccgcaaggcaagcttgcgccgaaggggcgcaccagcttccgctgggtg
ccgaacggaatcccgggtgtggcgacgcgcctgccgatcctgttctccgaaggcgtggtg
aaggggcggatcgacctcaacagctttgtcgccttcagcgccaccaaccacgccaggatc
tacggcctctatccgcgcaagggcacgatcgcggtcggctcggatgccgacatcgcgctg
tgggacccgaagcgcaaggtgacgatccgtcacgagctgatccacgacggcgcggactac
acgccctatgaagggctcgaggtcacgggctggccggtgctgaccatggtgcgcggcaag
gtcgtggtcgataacgggatgctcgtcggcggcaaggatcacggcacttatctgccgcgc
gccaagccgccgaaggccgcgaccattccgtaa
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