Xylella fastidiosa 9a5c: XF_1116
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Entry
XF_1116 CDS
T00033
Name
(GenBank) bifunctional diaminopimelate decarboxylase/aspartate kinase
KO
K12526
bifunctional diaminopimelate decarboxylase / aspartate kinase [EC:
4.1.1.20
2.7.2.4
]
Organism
xfa
Xylella fastidiosa 9a5c
Pathway
xfa00260
Glycine, serine and threonine metabolism
xfa00261
Monobactam biosynthesis
xfa00270
Cysteine and methionine metabolism
xfa00300
Lysine biosynthesis
xfa00470
D-Amino acid metabolism
xfa01100
Metabolic pathways
xfa01110
Biosynthesis of secondary metabolites
xfa01120
Microbial metabolism in diverse environments
xfa01230
Biosynthesis of amino acids
Module
xfa_M00016
Lysine biosynthesis, succinyl-DAP pathway, aspartate => lysine
xfa_M00018
Threonine biosynthesis, aspartate => homoserine => threonine
Brite
KEGG Orthology (KO) [BR:
xfa00001
]
09100 Metabolism
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
XF_1116
00270 Cysteine and methionine metabolism
XF_1116
00300 Lysine biosynthesis
XF_1116
09106 Metabolism of other amino acids
00470 D-Amino acid metabolism
XF_1116
09110 Biosynthesis of other secondary metabolites
00261 Monobactam biosynthesis
XF_1116
Enzymes [BR:
xfa01000
]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.2 Phosphotransferases with a carboxy group as acceptor
2.7.2.4 aspartate kinase
XF_1116
4. Lyases
4.1 Carbon-carbon lyases
4.1.1 Carboxy-lyases
4.1.1.20 diaminopimelate decarboxylase
XF_1116
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Gene cluster
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Motif
Pfam:
AA_kinase
Orn_Arg_deC_N
Orn_DAP_Arg_deC
ACT_9
ACT
Motif
Other DBs
NCBI-ProteinID:
AAF83926
UniProt:
Q9PEB2
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Position
1073106..1075712
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AA seq
868 aa
AA seq
DB search
MSASPTAERWIVLKFGGTSVSRRHRWDTIAMVVRKRLEEHGTRVLIVVSALSGVTNELTA
IAQGVVDSAQRVAALEQRHRDFLAELGLDAQAVLGTRFTVLWDLLQDARAVTRSLDWQAE
LLGQGELLSSTLGAAYLGASGVDIGWMDARDWLTALPPQPNQSEWSQRLSVSCQWKSDVE
WRTRFDAQRAQVLITQGFISRHQDGGTAILGRGGSDTSAAYFGALLGAACVEIWTDVPGM
FSANPKEVPDARLLTRLDYYEAQEIATTGAKVLHPRSIKPCRDTGVPMLILDTERPDVLG
TRIDAEVEPVLGVKAISRRDGIVLVSMEGIGMWQQVGFLADVFTLFKKHGLSVDLIGSAE
TNVTVSLDPSENLVNTDVLTALSTDLSQVCKVKIIVPCAAITLVGRGMRSLLHKLSEVWA
TFGKERVHMISQSSNDLNLTFVIDETDADGLLAVLHFKLIESGAMPVQERAVFGSPWREI
IGHVRTRVMPWWHSARMRLLAMRDEEGIGPCYVYHLPTVRERARQLNAVAAVDQRYYAIK
ANPHPAILRTLIEEGFGLECVSLGELRHVFAVVPHLVPSRVLFTPSFASRVEYEQAFLLG
VNVTLDNVEALRLWPEVFRDRTLWLRIDLGYGDGHHEKVTTGGKTSKFGLSVTRIDEFID
VAKTLNIIVTGLHAHLGSGVERGDHWSRMYDELAGFASRIGSVSTLDIGGGLPIPYRPDD
EPFDVEAWGVSLAEVKALHPKLQLVIEPGRFLVAEAGVLLTRVTQVIEKDGIRRVGLEAG
MHTLIRPALYDAWHDVENLSRLDEIPHVLCDVVGPICESSDVFGRCRHLPAATASGDLML
IADAGAYGFSMASTYNLRGLPAEVVLDA
NT seq
2607 nt
NT seq
+upstream
nt +downstream
nt
atgtccgcttcccctacagccgagcgctggatcgttctaaaatttggtggtacgtccgta
tcgcgtcgtcatcgctgggacaccattgcgatggtggtgagaaaacgccttgaagagcat
ggaacacgtgtgctgatcgtggtttcggcgctgtctggtgtgacgaatgaactgacggcg
attgctcaaggtgtcgttgacagtgcccagcgcgtcgctgccttggagcagcgtcatcgc
gattttttggctgagcttgggttagatgcgcaagcagtgctcggcacgcgtttcaccgtg
ttgtgggatcttctgcaagatgcgcgtgcggtgacgcggtcactggactggcaggctgag
ttgttagggcaaggtgaactgttgtcttccacactcggtgcggcctacttgggtgcttcg
ggtgttgacatcggttggatggatgcgcgtgactggctgaccgctttaccaccacagccc
aaccagagtgaatggtcgcaacgtctttctgtctcctgtcaatggaagtctgatgtggag
tggcgtacacgtttcgatgcccaacgtgctcaggtattgatcactcaagggtttatctca
cgtcatcaagatggtggtaccgccatcctgggacgtggtggttcggacacgtcagcagcg
tattttggtgcgctacttggtgcggcgtgtgttgagatctggactgatgtaccagggatg
ttcagtgcgaacccgaaggaggtccctgatgcgcgtttgctgacgcgcctggattactac
gaggcacaggagatcgccacaactggcgcgaaggtgttgcatccgcgttcgatcaaacca
tgccgtgatactggcgtgccgatgctgattctggatactgagcggcccgatgtattgggg
acccgtattgatgctgaagttgagccggtgcttggggtcaaggcgattagccgtcgtgat
ggcatcgtattagtgtcgatggaagggatcggcatgtggcagcaggtgggttttcttgct
gacgtatttacattgttcaagaaacacggattgtcggtggacctcatcggatcggcagaa
accaatgtcaccgtgtccttggacccctccgagaacctggttaacaccgacgtactgact
gcattgtcaaccgatttatcacaggtctgcaaagtcaaaattattgtgccttgcgctgcg
atcactttggtcgggcgtggcatgcgttccctgctgcataaactctctgaggtatgggct
acgttcggtaaagaacgtgtccacatgatctcgcagtcttccaatgatcttaatctcacc
tttgtgattgatgagacggatgcggacggattattggcggtgctgcatttcaaattgatc
gaaagcggcgcaatgcctgtccaagagcgtgccgtgtttggttcgccttggcgcgagatc
atcggacacgtacgtacgcgggtcatgccttggtggcacagtgcccgcatgcgtttactg
gccatgagagatgaagagggcattggtccttgctacgtctaccatttgccgacagtgcgc
gaacgtgcgcggcaattgaatgcagtggctgccgtggatcagcgctactacgccatcaag
gccaacccgcatccggccattctccgtaccctgattgaagaaggctttggactggagtgc
gtgtcgttgggtgaattgcgtcacgtgtttgcagtagtgccacacctggttccgtcgcgt
gtgttattcactccaagtttcgcctcacgtgtggagtacgagcaggcattcttactaggt
gtcaatgtgaccttagacaatgtcgaggccttgcgcttatggccggaggtattccgtgac
cggacgttatggttacgtatcgatctgggttacggcgatggacatcacgagaaggtcacc
accggtggtaagacatctaaatttggcctttcggtcacgcggattgatgaatttatcgat
gttgccaagacactgaacataatcgtgaccggcctgcatgcccatcttgggagtggcgtg
gagagaggcgaccattggtcccgcatgtacgatgaactggctggttttgcctcccgcatc
gggagtgtgtctaccctggatatcggcggcggtttaccgatcccgtaccggcctgatgat
gaaccatttgacgtggaggcatggggagtcagtttggctgaagtcaaagccttgcatccc
aaattgcaattggtgatcgagccgggccgcttcctggtggccgaggcgggggtactcctg
acccgggtcacccaggtgattgagaaagatggtatccgtcgggttggcctggaggctgga
atgcataccctgattcgcccagccctttacgatgcctggcacgacgtggagaacctcagc
cgcttagatgagataccacatgtactgtgcgatgtcgtgggtcctatttgcgagtcatcc
gatgtgtttggccgttgccgtcaccttccagccgccaccgcctccggtgatttgatgctg
attgcagatgctggcgcctatggtttctcgatggccagcacctacaatctgcgcggcctg
ccggccgaggtcgtgcttgatgcttga
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