Dolichospermum flos-aquae: HGD76_03300
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Entry
HGD76_03300 CDS
T06652
Symbol
ureC
Name
(GenBank) urease subunit alpha
KO
K01428
urease subunit alpha [EC:
3.5.1.5
]
Organism
dfs
Dolichospermum flos-aquae
Pathway
dfs00220
Arginine biosynthesis
dfs00230
Purine metabolism
dfs01100
Metabolic pathways
dfs01120
Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:
dfs00001
]
09100 Metabolism
09104 Nucleotide metabolism
00230 Purine metabolism
HGD76_03300 (ureC)
09105 Amino acid metabolism
00220 Arginine biosynthesis
HGD76_03300 (ureC)
09111 Xenobiotics biodegradation and metabolism
00791 Atrazine degradation
HGD76_03300 (ureC)
Enzymes [BR:
dfs01000
]
3. Hydrolases
3.5 Acting on carbon-nitrogen bonds, other than peptide bonds
3.5.1 In linear amides
3.5.1.5 urease
HGD76_03300 (ureC)
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Gene cluster
GFIT
Motif
Pfam:
Amidohydro_1
Urease_alpha
Amidohydro_3
Motif
Other DBs
NCBI-ProteinID:
QJB43393
UniProt:
A0A6H2BW38
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All DBs
Position
617097..618803
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AA seq
568 aa
AA seq
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MPYKMNRQAYADTFGPTVGDRIRLADTELFIEVEKDFTTYGDEVKFGGGKVIRDGMGQSP
ISNHDGAVDLVITNALILDWWGIVKADIGIKDGKIYKIGKAGNPYIQDNIDIIIGPGTEA
LAGEGMILTAGGIDTHIHFICPQQIEVAIASGITTMIGGGTGPATGTNATTCTPGPWNMY
RMLQAADAFPVNLGFVGKGNTSQPQGLIEQIEAGAMGLKLHEDWGTNPATIDTCLTVADE
YDVQVAIHTDTLNEAGFVEDTIAAFKHRAIHTYHTEGAGGGHAPDIIKVCGQSNVLPSST
NPTRPYTVNTLDEHLDMLMVCHHLDAAIPEDVSFAESRIRRETIAAEDILHDLGAFSMIA
SDSQAMGRVGEVIIRTWQTAHKMKVQRGSLAGDSHADNLRAKRYVAKYTINPAITHGISE
YVGSVEAGKLADLCLWKPAFFGVKPEIVIKGGMIAWSQMGDANASIPTPQPVYMRPMFGS
FAGARNATSLTFVSQAALSREIPQQLELRKLAIAVSGTRQITKRDMKLNDALPHIEVDPE
TYEVRADGELLTCEPATVLPMAQRYFLF
NT seq
1707 nt
NT seq
+upstream
nt +downstream
nt
atgccctacaaaatgaaccgccaagcctacgccgataccttcggaccaacagtaggagac
agaattagattagccgacaccgaactatttatagaagtagaaaaagacttcacaacttac
ggtgatgaagtgaaatttggtgggggaaaagtcattagagatgggatgggacaatcccca
atttctaatcatgatggtgcagtagatttagttattactaatgctttaattctcgattgg
tggggaattgtcaaagcagatattggcattaaagacggcaaaatttataaaattggtaaa
gccggaaatccctatattcaagacaatatagatattattattggaccgggaacagaagct
ttagccggtgaaggaatgattctcactgcggggggaatagatacccacatccattttatc
tgtccccaacaaattgaagtcgctattgcttccggtattaccaccatgattggtggtggg
acaggcccagctacgggaacaaatgccacaacttgtacccctggtccctggaatatgtac
cgaatgttgcaagctgctgacgcattccctgtcaatttaggatttgtgggcaaaggtaac
accagtcaaccccaaggactgatagaacaaatcgaagccggggcaatggggttaaaactc
catgaagattggggaacaaatccagccacaattgatacttgcttgaccgttgctgatgaa
tatgatgtgcaagtagcaattcacactgatactttaaacgaagccggctttgtggaagat
acaattgccgcttttaaacatcgtgctattcacacttatcacacagaaggtgctggaggt
ggtcatgcaccagacattattaaagtttgcggacaaagtaacgttttaccatcttccact
aatcctacccgtccttacaccgtcaacactctagatgaacatttggatatgttgatggta
tgtcatcatttagatgcagctattcctgaagatgtatcttttgctgaatcccgtatccgt
cgagaaactattgctgcggaagatattctgcacgatttaggcgcgtttagtatgattgct
tctgactcccaagcaatggggcgtgtcggtgaagtaataattagaacttggcagacagca
cataaaatgaaggtgcaacggggaagccttgctggtgatagtcatgccgataatttacga
gctaaacgttacgttgctaaatatacaatcaatccggcaattactcatggtatttctgaa
tatgtgggatcagtagaagcgggtaaattagccgatttgtgtttgtggaaacctgctttt
tttggtgtcaaaccggaaattgtcattaaaggcggcatgattgcttggtcacagatgggt
gatgctaatgctagtattcccacaccccaacctgtatatatgcgcccgatgtttggcagt
tttgctggtgctagaaatgcaacatcattaacttttgtgtctcaagctgctttgtccaga
gaaattcctcaacaattagaattaagaaaattagcgatcgcagtttcaggaactcgtcaa
attactaagcgagatatgaaattaaatgatgctttacctcatattgaagtagatccagaa
acctacgaagttcgcgcagatggtgaattattaacttgtgaaccagcaaccgttttacca
atggcacaaagatactttctcttttag
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