Rubrobacter xylanophilus: Rxyl_0992
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Entry
Rxyl_0992 CDS
T00368
Name
(GenBank) Adenylosuccinate lyase
KO
K01756
adenylosuccinate lyase [EC:
4.3.2.2
]
Organism
rxy
Rubrobacter xylanophilus
Pathway
rxy00230
Purine metabolism
rxy00250
Alanine, aspartate and glutamate metabolism
rxy01100
Metabolic pathways
rxy01110
Biosynthesis of secondary metabolites
rxy01232
Nucleotide metabolism
rxy01240
Biosynthesis of cofactors
Module
rxy_M00048
De novo purine biosynthesis, PRPP + glutamine => IMP
rxy_M00049
Adenine ribonucleotide biosynthesis, IMP => ADP,ATP
Brite
KEGG Orthology (KO) [BR:
rxy00001
]
09100 Metabolism
09104 Nucleotide metabolism
00230 Purine metabolism
Rxyl_0992
09105 Amino acid metabolism
00250 Alanine, aspartate and glutamate metabolism
Rxyl_0992
Enzymes [BR:
rxy01000
]
4. Lyases
4.3 Carbon-nitrogen lyases
4.3.2 Amidine-lyases
4.3.2.2 adenylosuccinate lyase
Rxyl_0992
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GFIT
Motif
Pfam:
Lyase_1
ADSL_C
Motif
Other DBs
NCBI-ProteinID:
ABG03958
UniProt:
Q1AXC0
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Position
1028479..1029786
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AA seq
435 aa
AA seq
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MIERYTLPEIGRVWTEEAKYGAWLEVELAVCRARARLGEIPGEEVRELCERAGFDAGRIR
EIEAETNHDVIAFVSAVQERVASPVARHLHFGLTSSDVLDTAGALRLRRALDLIREQARE
LARLLCRMALEHRGTVMVGRTHGVHAEPTVFGHKLAVWAFEMERNLTRLDRARETAAVGK
ISGAVGTYASVSPEVERLVCEELGLAAEPASTQIVQRDRHAEVLAALAVLASTLEKIALE
IRGAQRTEVRELSEPFGRGQKGSSAMPHKRNPILCERLCGMARLMRGYAQVGLENNALWQ
ERDISHSSAERVVLPDATILAYYMLRTTRRVLEGLEVDEGRMRENLNLGGGIVFSGRVLL
ALVEAGMDRDDAYAVVQRAAMRAWEGEGGFRELLQEEEEVRGRLGEGLEGLFDPAYHLRN
LDAVFDRVKELEARL
NT seq
1308 nt
NT seq
+upstream
nt +downstream
nt
gtgatcgaacgctacaccctcccggagatcggccgcgtctggacggaggaggcgaagtac
ggcgcctggctggaggtggagctcgccgtctgccgggcccgcgccaggctcggcgagatc
ccgggggaggaggtgcgcgagctctgcgagagggcgggcttcgacgcgggccgcatccgc
gagatagaggccgagacgaaccacgacgtgatcgccttcgtctccgccgtgcaggagcgg
gtggcgagcccggtcgcccgccacctccacttcgggctgacgagctccgacgtgctggac
accgcgggtgccctgcggctgcggcgggcgctcgacctgatccgggagcaggcgcgcgag
ctcgcgcgcctgctgtgccggatggccctcgagcaccgcgggacggtcatggtcggccgg
acccacggggtgcacgccgagcccacggtgttcgggcacaagctggcggtgtgggccttc
gagatggagcgcaacctcacgaggctggaccgggcgcgcgagacggcggcggtcggcaaa
atctccggggcggtcggcacctacgccagcgtgtctcccgaggtggagaggctcgtctgc
gaggagctggggctcgcggccgagcccgcctccacccagatcgtccagcgcgaccggcac
gccgaggtgctcgccgcgctcgccgtgctcgcctcgacgctggagaagatcgcgctggag
ataaggggcgcccagcgcaccgaggtgcgggagctctccgagcccttcgggcgcggccag
aagggctcctcggcgatgccccacaagagaaaccccatcctctgcgagcgcctgtgcggc
atggcgcgcctcatgcgcggctacgcccaggtgggccttgagaacaacgcgctctggcag
gagcgcgacatctcccactcctccgccgagagggtggtgctcccggacgccaccatcctc
gcctactacatgctccgcaccacccgacgggtgctggaggggctggaggtggacgagggg
aggatgcgcgagaacctgaacctgggcggcggcatcgtcttctccggccgggtgctgctg
gcgctggtggaggccgggatggaccgggacgacgcctacgccgtcgtgcagcgggccgcg
atgcgcgcctgggagggtgagggcggcttcagggagctgctgcaggaggaagaggaggtc
agaggcaggctcggggaggggctggagggtctcttcgaccccgcctaccacctcaggaac
ctggacgccgtcttcgaccgcgtgaaggagctggaggcgaggctgtaa
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