Saccharomycodes ludwigii: SCDLUD_000821
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Entry
SCDLUD_000821 CDS
T08289
Name
(RefSeq) hypothetical protein
KO
K01756
adenylosuccinate lyase [EC:
4.3.2.2
]
Organism
slud
Saccharomycodes ludwigii
Pathway
slud00230
Purine metabolism
slud00250
Alanine, aspartate and glutamate metabolism
slud01100
Metabolic pathways
slud01110
Biosynthesis of secondary metabolites
slud01232
Nucleotide metabolism
slud01240
Biosynthesis of cofactors
Module
slud_M00048
De novo purine biosynthesis, PRPP + glutamine => IMP
slud_M00049
Adenine ribonucleotide biosynthesis, IMP => ADP,ATP
Brite
KEGG Orthology (KO) [BR:
slud00001
]
09100 Metabolism
09104 Nucleotide metabolism
00230 Purine metabolism
SCDLUD_000821
09105 Amino acid metabolism
00250 Alanine, aspartate and glutamate metabolism
SCDLUD_000821
Enzymes [BR:
slud01000
]
4. Lyases
4.3 Carbon-nitrogen lyases
4.3.2 Amidine-lyases
4.3.2.2 adenylosuccinate lyase
SCDLUD_000821
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Gene cluster
GFIT
Motif
Pfam:
Lyase_1
ADSL_C
DUF1331
Motif
Other DBs
NCBI-GeneID:
70106143
NCBI-ProteinID:
XP_045937131
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Position
I:complement(1932806..1934257)
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AA seq
483 aa
AA seq
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MSSQNDKYATPLSSRYASDEMSAVFSLRNRFSTWRKLWLNLAIAEKELGLTVITDKAIEQ
MRAHLEITDEEIVAASKQEAIVRHDVMAHVHVFGQTCPEAAGIIHLGATSCFVTDNADLI
FLRDAYDIVIPKLVNVINRLSEFAIKYKDLPVLGWTHFQPAQLTTLGKRATLWIQELLWD
LRNFVRARNDIGLRGAKGTTGTQASFLSLFHGNQEKVVGLDKRVTELLGFDIVYPVTGQT
YSRKIDIDVLAPLASFAATAHKMATDIRLLANLKEVEEPFEKSQIGSSAMAYKRNPMRCE
RVCSLARHLGSLFSDAVQTASVQWFERTLDDSAIRRISLPSAFLTTDILLTTLLNISSGL
VVYPKVIERRIKSELPFMATENIIMAMVEKGVSRQEVHEAIRVLSHQAAAVVKEEGGDND
LIERIKNDQFFKPIWGELNSLLDPSTFVGRAPQQVENFVSHDVAKALEPFKSQINDTQVK
LNV
NT seq
1452 nt
NT seq
+upstream
nt +downstream
nt
atgtcatctcaaaacgacaaatacgctactccattgtcttctcgttacgcttcagacgaa
atgtctgctgtcttcagtttaagaaataggttttctacctggagaaaattatggttaaac
ttggctattgcagaaaaggaattgggtttaactgtgattactgataaagctatagaacaa
atgcgtgctcatttggaaatcaccgatgaggaaattgttgctgcatccaagcaagaagct
atcgtcagacacgacgttatggctcatgtccatgtttttggtcaaacatgtcccgaagcc
gctggtattattcatttgggtgctacttcttgttttgtcacagataatgccgatttaata
tttttaagagacgcttatgacattgttatacccaaattagttaatgtcattaacagactt
agtgaatttgctattaaatacaaagatttaccagttttaggttggacccattttcaacca
gctcaattgactactttaggtaagagagccactttatggattcaagagttattgtgggac
ttaaggaactttgttagagctagaaatgatattggtttacgtggtgctaagggcacaacc
ggtacccaagcttcctttttgtctctattccatgggaaccaagaaaaggttgtcggtttg
gataaaagagttactgaattattggggttcgatattgtctaccctgtgaccggccaaacc
tattccagaaagattgatattgatgttttggctccattagcttcttttgcagctacagct
cataaaatggctactgatattagattattagccaatttgaaagaagttgaagaacctttt
gaaaaatcacaaataggttctagtgctatggcttataaaagaaatccaatgcgttgtgaa
cgtgtgtgctccttagccaggcatttaggttccttgtttagcgatgctgttcaaactgct
tctgttcaatggtttgaaagaactttagatgactctgccatccgtagaatatctttacca
agtgcctttttaaccactgacattttgctaactactttgttaaacatttcttctgggcta
gtcgtatatcccaaagttattgaaagaaggattaagagcgaattaccatttatggccaca
gaaaacattattatggctatggttgaaaaaggtgtttccagacaagaggttcatgaggct
atccgtgtcttatctcatcaggccgccgctgtagttaaggaagaaggtggcgataatgat
ttgattgaacgtatcaagaacgatcagttttttaagccaatttggggcgaattgaactct
ttattggatccctccacttttgttggtagagctccacaacaagttgaaaactttgtttct
catgatgtcgctaaagcattagaaccatttaaaagtcaaattaatgacactcaagttaag
ttgaatgtatga
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