Citrobacter freundii CFNIH1: CFNIH1_11980
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Entry
CFNIH1_11980 CDS
T03077
Name
(GenBank) alkaline phosphatase
KO
K01077
alkaline phosphatase [EC:
3.1.3.1
]
Organism
cfd
Citrobacter freundii CFNIH1
Pathway
cfd00730
Thiamine metabolism
cfd00790
Folate biosynthesis
cfd01100
Metabolic pathways
cfd01240
Biosynthesis of cofactors
cfd02020
Two-component system
Module
cfd_M00126
Tetrahydrofolate biosynthesis, GTP => THF
Brite
KEGG Orthology (KO) [BR:
cfd00001
]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00730 Thiamine metabolism
CFNIH1_11980
00790 Folate biosynthesis
CFNIH1_11980
09130 Environmental Information Processing
09132 Signal transduction
02020 Two-component system
CFNIH1_11980
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
cfd04147
]
CFNIH1_11980
00537 Glycosylphosphatidylinositol (GPI)-anchored proteins [BR:
cfd00537
]
CFNIH1_11980
Enzymes [BR:
cfd01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.3 Phosphoric-monoester hydrolases
3.1.3.1 alkaline phosphatase
CFNIH1_11980
Exosome [BR:
cfd04147
]
Exosomal proteins
Exosomal proteins of other body fluids (saliva and urine)
CFNIH1_11980
Glycosylphosphatidylinositol (GPI)-anchored proteins [BR:
cfd00537
]
Enzymes
CFNIH1_11980
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Alk_phosphatase
Metalloenzyme
Sulfatase
Motif
Other DBs
NCBI-ProteinID:
AHY12203
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All DBs
Position
2492523..2493938
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AA seq
471 aa
AA seq
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MKQSALAIALLPLLFTPIINAETSTVAVMDNRAAQGDITTPGGARRLSADQTAALRESLN
DKPAKNIILLIGDGMGDSEITAARNYAEGAGGFFKGIDALPLTGQYTHYALDKKTGKPDY
VTDSAASATAWTTGVKTYNGALGVDIHEKDHATILEMAKAAGLATGNVSTAELQDATPAA
LVAHVTSRKCYGPDVTREKCPTNALEKGGKGSITEQLLNARADVTLGGGAKTFAETAAAG
EWQGKTLREQALARGYQMVSDAATLAAITEANQDKPLLGLFSDGNMPVRWEGPKASYHGN
LDKPAVTCTPNPKRDDTVPTLAQMTDKAIELLSKNEKGFFLQVEGASIDKQDHAANPCGQ
IGETVDLDEAVQRALAFAKQDGNTLVVVTADHAHASQIVAPDTKAPGLTQALNTKDGAVM
VISYGNSEEESQEHTGSQLRIAAYGPHAANVVGLTDQTDLFYTMKAALGLK
NT seq
1416 nt
NT seq
+upstream
nt +downstream
nt
gtgaaacaaagcgcactcgctattgccctgttacctttgctgtttaccccgattattaat
gcagaaacatctaccgtagcggttatggataatcgtgccgctcagggtgatatcaccacg
ccaggcggcgcccgccgattgtcagccgatcaaacggcggctttacgcgaatctctgaac
gataaacctgccaaaaatatcattttacttattggcgatgggatgggcgattctgaaata
acggcagcgcgaaattatgccgaaggcgcgggcggtttttttaaaggtattgatgcttta
ccgttgaccggacaatacacgcactatgcgttagataagaaaacgggcaagccggattat
gtgacggactcagcggcctcagcgacggcgtggaccaccggggttaaaacttacaatggc
gcgctgggcgttgatatacatgaaaaagatcacgcaacaattttggaaatggcaaaagcg
gcaggtctggcgacgggcaacgtttctaccgctgaattgcaggatgcaaccccagcggca
ctggttgctcatgtgacttcacgtaagtgctatggccctgacgtgacccgtgaaaaatgc
ccaaccaatgccctggaaaaaggcggcaaagggtcaattacagaacaattgctgaatgcc
cgggctgacgtcacgttgggcggtggggcaaaaacgtttgccgaaaccgctgcggcaggg
gagtggcagggtaaaacgttgcgtgaacaagccctggcgcgcggttatcagatggtaagt
gatgccgcgacgctggctgcgattaccgaagctaaccaggataagccgttgctgggcttg
ttctccgacggcaacatgccggtacgctgggaaggtccgaaagcgtcctatcatgggaat
ctggataaaccagcggtgacctgtacgccaaatccaaagcgtgatgacaccgtaccgacg
ctggcgcagatgacggataaagcgattgaactgttaagcaaaaatgagaaaggtttcttc
ctgcaagttgaaggggcatccatcgataaacaggatcacgccgccaacccgtgcggacag
attggtgaaacggttgatctggacgaagcggtacagcgcgcgcttgcctttgcgaagcaa
gacggcaacaccctggtggtggtaaccgctgaccacgcgcatgccagccagattgtcgcg
cctgatactaaagcgcctggtctgactcaggcactgaacaccaaagatggcgcggtgatg
gtcatcagctacggcaattctgaagaggaatctcaggagcacaccggtagccagttgcgc
atcgccgcttatggcccacatgcggcgaatgtggtcggtctgaccgatcaaactgatctg
ttttacaccatgaaagcggcgttagggctgaagtaa
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