Salmonella enterica subsp. enterica serovar Dublin: SeD_A2545
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Entry
SeD_A2545 CDS
T00757
Name
(GenBank) L-serine ammonia-lyase
KO
K01752
L-serine dehydratase [EC:
4.3.1.17
]
Organism
sed
Salmonella enterica subsp. enterica serovar Dublin
Pathway
sed00260
Glycine, serine and threonine metabolism
sed00270
Cysteine and methionine metabolism
sed01100
Metabolic pathways
sed01110
Biosynthesis of secondary metabolites
sed01200
Carbon metabolism
sed01230
Biosynthesis of amino acids
Brite
KEGG Orthology (KO) [BR:
sed00001
]
09100 Metabolism
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
SeD_A2545
00270 Cysteine and methionine metabolism
SeD_A2545
Enzymes [BR:
sed01000
]
4. Lyases
4.3 Carbon-nitrogen lyases
4.3.1 Ammonia-lyases
4.3.1.17 L-serine ammonia-lyase
SeD_A2545
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Motif
Pfam:
SDH_alpha
SDH_beta
MmgE_PrpD_N
Motif
Other DBs
NCBI-ProteinID:
ACH75780
UniProt:
A0A6C6ZYJ9
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Position
complement(2423205..2424638)
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AA seq
477 aa
AA seq
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MPTVRGCYLLLNANDTERIDITMESCLDIFKIVIGPSSSRTVGPMRAACHFISLLREQET
LPLIREIEIELYGALSLSRKCHNVDTALYLGLLGCQPENVDLRSHMAVIKRAENENKIEL
PLSDAGGITIKVKIIANHQAHPGHPYAMTFRARDDYFTVYEETWFSTGAGQVRKHGEPLT
PSLPLRTVSPFEFSHAAQLLALCRRNGLSVAALMMKNELCRHSPQTLQNYLAQIWDVMQQ
AVYRGLHTEGVLPGPYQVPRRACALHKTLQANRSASDFLTALNWVNAFAIAVSEENASGG
QIVTAPTNGACGIIPAALCWYDKFVTPLEPGALTRFFLTAAAIAILFKQNASILGSEVGC
QGEVGVACSMTAAGLAELMGASVEQTLSAAEIAMEHHLGLTCDPLGGQVQIPCIERNAIS
AVKAINAATMAMSRVSEPCISLDEIIAAMYETGKDMSAKYRETYHGSLGKIQPRKRG
NT seq
1434 nt
NT seq
+upstream
nt +downstream
nt
atgccaactgtgcgaggatgttatttattactgaacgcgaatgacactgaaaggattgat
ataacgatggagagttgccttgatatattcaaaatagtaataggtccatccagctcacgt
accgtagggccgatgcgcgccgcctgtcactttatttcattgctcagagaacaagagacg
ttaccgctaattcgggaaattgaaatcgagctgtatggcgcgttatcgttaagccgcaag
tgccacaatgtggataccgccctgtatcttgggctgctgggttgccagccggagaatgtc
gatctccgttcgcatatggcggtgattaagcgtgcggaaaatgaaaacaaaatcgaactc
ccgctctctgacgcgggcggaatcacgataaaagtcaagattatagctaatcaccaggcg
catccaggccatccttatgccatgacgtttcgcgccagggatgattattttacggtgtat
gaagagacctggttttctaccggcgccgggcaggttcgtaaacatggcgagccgctgacg
ccatcgcttcctttgcgtacagtgtcgccctttgaatttagtcatgccgcgcagttgctg
gcgctgtgtcggcgtaacggcctgtccgtggcggcgctgatgatgaaaaatgagctgtgc
cgccactcgccacagacgttgcagaattatctggcgcaaatatgggacgtgatgcagcag
gcggtttatcgcggcctgcatactgagggggtattacccggtccctatcaggtaccgcgg
cgcgcctgtgcgttacataagacgttacaggctaaccgctccgccagcgattttttaacc
gcgctgaactgggtcaatgccttcgcgattgcggtaagcgaagaaaatgccagcggcgga
cagattgttaccgcgccaaccaatggcgcgtgcggcatcattccggcagcgctctgctgg
tatgataaatttgtcacgccgctggagcccggtgctctgacccgtttcttcctgaccgcc
gccgctatcgcgatattgtttaaacaaaacgcctctattctgggatctgaagttggctgt
cagggggaagtcggcgtggcgtgctcaatgacggcggcgggcctggctgaactgatgggc
gcatccgtggagcaaacgctgagcgccgctgaaattgccatggaacatcatctgggattg
acctgcgatccgctgggcgggcaggtacaaattccctgcatagagagaaacgccatctct
gccgtgaaagcgataaacgcggcgacgatggcgatgagtcgcgtaagcgaaccctgtatt
tcgctcgatgagatcattgctgcgatgtacgagaccggtaaagacatgagcgctaaatac
cgtgaaacgtatcatggttcgctggggaaaattcagccgcgcaagagagggtaa
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