Qipengyuania spongiae: L1F33_12175
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Entry
L1F33_12175 CDS
T08950
Name
(GenBank) amidotransferase 1, exosortase A system-associated
KO
K01953
asparagine synthase (glutamine-hydrolysing) [EC:
6.3.5.4
]
Organism
qsp
Qipengyuania spongiae
Pathway
qsp00250
Alanine, aspartate and glutamate metabolism
qsp01100
Metabolic pathways
qsp01110
Biosynthesis of secondary metabolites
qsp01230
Biosynthesis of amino acids
Brite
KEGG Orthology (KO) [BR:
qsp00001
]
09100 Metabolism
09105 Amino acid metabolism
00250 Alanine, aspartate and glutamate metabolism
L1F33_12175
09180 Brite Hierarchies
09181 Protein families: metabolism
01002 Peptidases and inhibitors [BR:
qsp01002
]
L1F33_12175
Enzymes [BR:
qsp01000
]
6. Ligases
6.3 Forming carbon-nitrogen bonds
6.3.5 Carbon-nitrogen ligases with glutamine as amido-N-donor
6.3.5.4 asparagine synthase (glutamine-hydrolysing)
L1F33_12175
Peptidases and inhibitors [BR:
qsp01002
]
Cysteine peptidases
Family C44
L1F33_12175
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Asn_synthase
GATase_7
GATase_6
DUF3700
NAD_synthase
QueC
DUF7411
Motif
Other DBs
NCBI-ProteinID:
UVI38982
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Position
complement(2450045..2451943)
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AA seq
632 aa
AA seq
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MCGIAGLFHCGTPKPVDPERVRTMCDALAHRGPDGSGVWTEHGVGLGHRRLSIIDLEGSP
QPMHSANGRAVIVFNGEIYNYRELRRELEREGARFRTEGDTETILAAWQRWGTGCLDRLD
GMFAFALYDRDRRSLFLARDRFGVKPLFTAMLSDGSLAFASELKGLLAHPLMRRQVDPLA
IEDYMAWGYVPDHRAIISGVEKLPAGHFRLLEHGRDPAPPRQWWEISFTERARGREADLS
VELLHHMRAGVASRMVADVPLGAFLSGGVDSSSVVALMAEADRAPVTTCSIGFDVAEADE
TAHARAVAAHFGTDHHERVVSPDRMADLDRLVEIFDEPFADASALPTLQVCALAREHVTV
ALSGDGADEAFAGYRRQMFHHREEQLRGVIPPLLREPVFGALGRVWPKADWAPRAFRAKS
TFQSLAEGGAAGYARAVSVLAPEQRDRLFGEGFKRIRGVYRAEQEWIRTMDGAPARSGLD
AAQYADLKFWMPGDILTKIDRTSMAVGLEAREPLLDYRLVEFAATLPHRQRVRGRQGKVL
LKRTMERYLPDDILYRPKQGFSVPLAQWFRGTLADEARRIVRSERLLQSGWFDQTVLADL
AEKHISGRSDNARVLWQLLMLEKSLTRLDLAR
NT seq
1899 nt
NT seq
+upstream
nt +downstream
nt
atgtgcgggatagcgggacttttccattgcggcacgcccaagccggtcgatccggagcgg
gtgcggacgatgtgcgacgcgctcgcccatcgcggaccggacggttcgggcgtctggacc
gagcatggggtcggcctcggtcataggcgcctttcgatcatcgacctcgaaggctccccg
cagccgatgcattcggcgaacggacgggcggtcatcgtcttcaacggcgagatctacaat
taccgcgagttgcggcgcgaactggaacgggaaggcgcgcgcttccggacggagggtgat
accgaaaccattctcgccgcttggcagcgctggggcacgggctgcctcgacaggctggac
gggatgttcgccttcgcactctacgaccgcgaccggcgcagtctcttcctcgcgcgcgac
cggttcggcgtgaaaccgctcttcaccgcgatgctgagcgatggcagcctcgctttcgca
tccgaactcaagggtttgctcgcccatcctctcatgcggcggcaggtcgatccgctagcg
atcgaggattacatggcctgggggtacgtccccgatcaccgcgcgatcatctccggggtg
gagaagctgcccgcggggcatttccgcctgctcgagcacggacgcgatcccgctccgccg
cggcagtggtgggaaatttcctttaccgaacgggcccgggggcgcgaagccgacctttcg
gtcgaactgcttcaccacatgcgcgccggggtcgccagccggatggtggccgacgtgccg
ctcggcgcgtttctttcgggcggagtcgattcttccagcgttgtcgcgctgatggccgaa
gcggatcgtgccccggtgacaacctgttcgatcggcttcgacgtggcggaggcggacgaa
accgcccatgcccgtgcggtcgctgcacattttgggaccgatcatcacgagcgcgttgtc
tcgcccgatcggatggccgatctcgaccgtctggtagagatattcgacgagcccttcgcc
gatgcctccgccctcccgaccttgcaggtctgcgcgctggcaagggagcacgttaccgtc
gcgctgtcgggggacggggcggatgaggcattcgccggttatcgccgtcaaatgtttcac
caccgcgaggaacaactgcgcggggtgatcccgccattgcttcgcgaaccggtattcgga
gcgcttggcagagtgtggcccaaagccgattgggccccccgcgcgttccgcgccaagtcc
accttccagtcgctggccgaagggggcgcggcgggatacgcacgcgccgtctcggtcctt
gcgccggagcagcgcgaccggctgttcggcgaggggttcaagcgcattcggggtgtttac
cgggcggagcaggagtggatcaggacaatggatggggcgccggcacgcagcggtctggac
gccgcgcaatatgccgatctcaagttctggatgcccggcgacatcctcaccaagatcgac
cggacaagcatggcggtgggcctcgaagcgcgcgaaccgctgctcgactaccgcctcgtc
gaatttgccgcgaccttgccccaccgccagcgggtgcgcgggcggcagggcaaagttttg
ctcaagcggacgatggaacgctatcttcctgatgatatcctttaccggccgaagcagggt
ttctcggttccgctagcacaatggtttcgcggcactcttgccgatgaagcaaggcggatc
gtccgctccgaacgactgctgcaatcgggctggttcgaccagacggttctggccgatctg
gccgagaagcatatttccggccggtcggacaatgcgagggtgttgtggcagcttctgatg
ctcgaaaaatccttaacgcgcttggacttagcgcggtga
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