Sphingomonas suaedae: FPZ54_13620
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Entry
FPZ54_13620 CDS
T07976
Name
(GenBank) alkaline phosphatase
KO
K01113
alkaline phosphatase D [EC:
3.1.3.1
]
Organism
ssua
Sphingomonas suaedae
Pathway
ssua00790
Folate biosynthesis
ssua01100
Metabolic pathways
ssua01240
Biosynthesis of cofactors
ssua02020
Two-component system
Module
ssua_M00126
Tetrahydrofolate biosynthesis, GTP => THF
Brite
KEGG Orthology (KO) [BR:
ssua00001
]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00790 Folate biosynthesis
FPZ54_13620
09130 Environmental Information Processing
09132 Signal transduction
02020 Two-component system
FPZ54_13620
Enzymes [BR:
ssua01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.3 Phosphoric-monoester hydrolases
3.1.3.1 alkaline phosphatase
FPZ54_13620
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GFIT
Motif
Pfam:
PhoD
PhoD_N
DUF4269
Motif
Other DBs
NCBI-ProteinID:
QDX26940
UniProt:
A0A518RHL5
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Position
2879479..2881041
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AA seq
520 aa
AA seq
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MLQQNRRNLVKSALAMTLLGGGVPQGLARPVFTRYPFTLGIAAGDPAQDGFVIWTRLAPD
PQTPGGGMPPADVAIRWEVSEDPDFRKVARAGTALAEARLAHSVHVEVEGLLPRRPYWYR
FLVHGAGTSPIGMARTAPGRGMPVDQVRLVMAGCQNFEMGYYTAFARLAQEPNVDAVYHY
GDYLYEMGIQKAASPRKHLTGELYTLDDYRRRYAQYKADPDLQAAHAAAAFILSFDDHEI
DDNWAAKFDKDGSPAEVFAIRKAAALQAWYEHMPVRRALMPGSNGVRMYRRLDYGSLVRV
HVLDTRSYRSDQACERPGLSRAEIERCYPVDRPDRTILGAAQERWLDEGLSNQARWNFLA
QQVMVMPHDSRRDGATSPVASADNWNGYSYARQRLVDSIRRKGLTNVVIGSGDAHQNYVG
VVPLEIEDLEGPAIATEFLATSISSGGTGGLRLPDEQDGLFHNPHMKLLNNQRGYHLFTI
SPDRWQTEIKVIDQVDRPNGNLSTLAAFLTHPGRPGAEAV
NT seq
1563 nt
NT seq
+upstream
nt +downstream
nt
atgctgcagcaaaatcgtcgcaacctcgtgaaatccgctctcgcgatgacgttgctgggc
ggtggagttccacaaggtctcgcgcgtccagttttcacgcggtatcccttcacgctcggc
attgctgcgggcgatccggcgcaggatgggttcgtcatctggacgcggctggcgcctgat
cctcagacccccggtggcggcatgcctccagcggatgtggccatacggtgggaagtgtcg
gaggatccggacttccggaaagtggcgcgggccggtactgcgcttgccgaagcacgcctg
gcgcactctgtgcacgttgaggttgaggggcttctgccgcgccgtccttattggtaccgg
ttcctggtgcacggcgcgggcacgagccccattggcatggcacgcaccgcgccgggacgg
ggcatgccggtggaccaggttcggctggtcatggcgggctgccagaacttcgagatgggc
tactacaccgccttcgcgcgtctcgcgcaggagccaaatgtcgatgccgtctatcactat
ggcgactatctgtacgagatggggatccaaaaggccgccagtccgcggaaacacctgacc
ggcgaattgtacacgctggacgattatcgtcggcgctacgcccagtacaaggcggacccc
gatctccaggcggcgcatgcggccgcggcattcatcttgtcgttcgacgatcacgagatc
gacgacaattgggcagccaagttcgacaaggatggcagcccggccgaagtgttcgccatc
cgcaaggccgccgcgctccaagcctggtacgagcatatgcctgtccgtcgggcgttgatg
cccggttcgaacggcgtacgaatgtaccgtcgcctcgattatggatcgctcgtccgcgtg
cacgtcctcgacactcgatcctatcggagcgatcaggcatgtgagcggccgggcctcagt
cgcgcggagatcgagcgctgctaccctgtcgatcgaccagatcggaccatattgggcgcc
gcgcaggagcgctggctggacgaagggttgtctaaccaagcgcgctggaacttcctggcg
cagcaagtgatggtgatgccacatgattcgcgccgagatggcgcgacatctcctgtcgcc
agtgccgacaattggaacggctattcctacgcccgccagcggctggtggattccattcgc
cggaaggggctgacgaacgtcgtgatcggcagcggcgatgcgcaccagaactatgtcggc
gtggtgccgttagaaatcgaggatctagaaggtccggcgattgcaacggaatttctcgcc
acctcgatcagttcgggcggtacgggtggcttgcgtcttcccgacgagcaggacgggctt
tttcacaacccccatatgaagctcctcaacaatcagcgcggctatcacctgttcacgata
tcgccagatcgttggcagacggagatcaaggtgatcgaccaagttgatcgacccaatggc
aacctgagcacgctggcagcattcctgacgcatccggggcggcccggtgccgaagcggtg
taa
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