Arvicola amphibius (Eurasian water vole): 119822772
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Entry
119822772 CDS
T08327
Symbol
Adsl
Name
(RefSeq) adenylosuccinate lyase
KO
K01756
adenylosuccinate lyase [EC:
4.3.2.2
]
Organism
aamp
Arvicola amphibius (Eurasian water vole)
Pathway
aamp00230
Purine metabolism
aamp00250
Alanine, aspartate and glutamate metabolism
aamp01100
Metabolic pathways
aamp01232
Nucleotide metabolism
aamp01240
Biosynthesis of cofactors
Module
aamp_M00048
De novo purine biosynthesis, PRPP + glutamine => IMP
aamp_M00049
Adenine ribonucleotide biosynthesis, IMP => ADP,ATP
Brite
KEGG Orthology (KO) [BR:
aamp00001
]
09100 Metabolism
09104 Nucleotide metabolism
00230 Purine metabolism
119822772 (Adsl)
09105 Amino acid metabolism
00250 Alanine, aspartate and glutamate metabolism
119822772 (Adsl)
Enzymes [BR:
aamp01000
]
4. Lyases
4.3 Carbon-nitrogen lyases
4.3.2 Amidine-lyases
4.3.2.2 adenylosuccinate lyase
119822772 (Adsl)
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Gene cluster
GFIT
Motif
Pfam:
Lyase_1
ADSL_C
AtzG-like
HTH_Tnp_Tc5
DUF1331
Motif
Other DBs
NCBI-GeneID:
119822772
NCBI-ProteinID:
XP_038198226
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Position
9:complement(36793165..36812496)
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AA seq
484 aa
AA seq
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MAAAGDPGGPESYRSPLASRYASHEMCFLFSDRYKFQTWRQLWLWLAEAEQTLGLPITDE
QIQEMKSNLSNIDFQMAAEEEKRLRHDVMAHVHTFGHCCPKAAGIIHLGATSCYVGDNTD
LIILRNAFDLLLPKLARVISRLADFAKEHAALPTLGFTHFQPAQLTTVGKRCCLWIQDLC
VDLQNLKRVRDELRFRGVKGTTGTQASFLQLFEGDHQKVEKLDKMVTEKAGFKRAFIITG
QTYTRKVDIEVLSVLASLGASVHKICTDIRLLANLKEMEEPFEKQQIGSSAMPYKRNPMR
SERCCSLARHLMALVMDPLQTASVQWFERTLDDSANRRLCLAEAFLTADTVLNTLQNISE
GLVVYPKVIERRIRQELPFMATENIIMAMVKAGGSRQDCHEKIRVLSQQAAAVVKQEGGD
NDLIERIRADAYFNPIHSQLEHLLDPSSFTGRAPQQVHRFLEEEVHPLLKPYGSVMEVKA
ELSL
NT seq
1455 nt
NT seq
+upstream
nt +downstream
nt
atggctgcagccggggaccctggcggtcctgaaagctaccgttctccgttggcgtcccgc
tatgccagccacgagatgtgcttcttgttcagcgacaggtacaagttccagacgtggcgg
cagctgtggctgtggctggcggaggctgagcagaccctgggtttgcctatcaccgatgag
cagatccaggagatgaagtcaaacctgagcaacattgacttccagatggcagccgaggaa
gagaagcgcctgcggcacgacgtgatggctcatgtgcacacattcggccactgctgtccc
aaagctgccggcatcattcacctcggtgccacctcctgttacgtcggagacaatacagac
ctcattattctgagaaatgcatttgacctgcttttgccaaagcttgctagagtgatctcg
aggcttgctgattttgccaaggaacacgctgctctgcccaccttgggtttcacacatttt
cagcctgctcagctgaccacagttgggaaacgctgctgcctttggatccaagatctctgt
gtggacctccagaacttgaagcgtgtccgtgatgagctccgcttccggggagtgaagggc
actactggcacccaggccagcttcctgcagctcttcgagggggaccaccagaaggtggag
aagctggataagatggtgacagagaaggcagggtttaagagagctttcatcatcacagga
cagacctatacacgaaaagtggacattgaagtgctgtctgtgctggccagcttaggggcg
tcagtgcacaagatttgcactgacattcgtctcctggcaaacctgaaggagatggaggag
ccctttgagaaacagcagattggctcaagtgcaatgccatacaagcggaaccccatgcgc
tctgaacgctgctgcagcctggcccgtcacctaatggcccttgtcatggacccactacag
acagcttctgtgcagtggtttgagcgcacactggatgacagtgccaacagacggctctgt
ttggcggaagcgtttctcactgcagatactgtgttaaataccctgcagaacatttctgaa
ggactggtggtgtaccccaaagtaattgaacggcgcattcggcaagagctgcctttcatg
gctacagagaacatcatcatggcaatggtcaaagctgggggcagccgacaggactgccac
gagaagatcagagtgctctcccagcaggcagctgctgtggttaagcaggaagggggcgac
aatgacctcatagagcgcattcgggcagatgcctacttcaaccccatccactcccagttg
gagcatctgttggacccctcttctttcactggccgagcaccccagcaggtccacaggttt
ctagaagaggaggtgcatcccctgctaaaaccctatgggagtgtgatggaggtgaaagca
gagctaagtctgtag
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