KEGG   Idiomarina piscisalsi: CEW91_02985
Entry
CEW91_02985       CDS       T04931                                 
Name
(GenBank) alkaline phosphatase
  KO
K01077  alkaline phosphatase [EC:3.1.3.1]
Organism
ipi  Idiomarina piscisalsi
Pathway
ipi00730  Thiamine metabolism
ipi00790  Folate biosynthesis
ipi01100  Metabolic pathways
ipi01240  Biosynthesis of cofactors
ipi02020  Two-component system
Module
ipi_M00126  Tetrahydrofolate biosynthesis, GTP => THF
Brite
KEGG Orthology (KO) [BR:ipi00001]
 09100 Metabolism
  09108 Metabolism of cofactors and vitamins
   00730 Thiamine metabolism
    CEW91_02985
   00790 Folate biosynthesis
    CEW91_02985
 09130 Environmental Information Processing
  09132 Signal transduction
   02020 Two-component system
    CEW91_02985
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:ipi04147]
    CEW91_02985
   00537 Glycosylphosphatidylinositol (GPI)-anchored proteins [BR:ipi00537]
    CEW91_02985
Enzymes [BR:ipi01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.3  Phosphoric-monoester hydrolases
    3.1.3.1  alkaline phosphatase
     CEW91_02985
Exosome [BR:ipi04147]
 Exosomal proteins
  Exosomal proteins of other body fluids (saliva and urine)
   CEW91_02985
Glycosylphosphatidylinositol (GPI)-anchored proteins [BR:ipi00537]
 Enzymes
  CEW91_02985
SSDB
Motif
Pfam: Alk_phosphatase Sulfatase Metalloenzyme Iso_dh
Other DBs
NCBI-ProteinID: ASG65178
LinkDB
Position
629122..630429
AA seq 435 aa
MKKTLTAAAIGLAMSASGAVAEEQKPNIIYVIGDGMGFEFISAYRYAMSDLDTKEIAETQ
FDHYLTGAATTYPEDDTWVTDSAAGATALATGEKSYNGAIGVDNDKTSLKTVMEYAKNSG
YMTGSVSTSQINHATPASFFSHHPSRYEYNQIADLMAQQYIEDEASYDVVLGGGQQYFIR
DDKNWVELLEQHGLKVVQDMQMLDQVEQAPVMGLFAPKGLPHAIDEGKGSLAQMTSNALR
LLSGDDKPFALMIEGSQIDWCGHANDIACAVHEMDSLNKALTVVADFMQDNPNTLLVMTA
DHSTGGLTLGRDGEYAWYSDRVMAIESSIATMRSELLNMDAEKWPEYVADKVNFELTQDY
IDELALASEQEGEEREDALHDALVYITGDITGTGWTGSGHTAVDVPVFAKGPYSEDFRGY
MNNTDIGKRLIEIVK
NT seq 1308 nt   +upstreamnt  +downstreamnt
atgaaaaaaacactaacggccgcagctatcgggcttgcaatgagtgcatcaggcgcagta
gccgaagagcagaagcccaatattatttatgtgattggcgacggcatgggcttcgagttt
atcagtgcttaccgctatgccatgtcagacttagacaccaaagagattgcagaaacgcag
tttgatcactatctcaccggagccgcaacgacctatcctgaagacgatacctgggtaacc
gattcggctgcgggcgctacggcattagcgacaggcgaaaagtcgtataatggtgctatc
ggcgtggataacgataaaacgtccttaaaaacggtcatggaatacgctaaaaatagtggt
tatatgacaggctctgtgtcgacctcacaaattaaccatgcgacaccggcgtcatttttc
tctcatcatccctcgcgctatgaatacaatcaaattgctgacttaatggcgcaacagtac
atagaagacgaagcgtcttatgacgtcgtgctcggcggcggtcagcagtattttattcgc
gacgacaagaactgggtcgaactgctcgagcaacatggcctgaaggtggttcaggacatg
caaatgttagatcaagtggagcaggcgccggtcatgggcttgttcgcaccaaaaggtctg
ccgcatgcaattgatgaaggcaaaggctcgttggctcaaatgaccagcaatgcgttgcgt
ttattgtcaggtgacgacaagccgttcgcgctgatgattgaaggcagccaaattgactgg
tgtggtcatgctaacgatattgcctgtgctgtgcatgagatggactcgctcaataaagca
ctaacggttgtcgctgattttatgcaagacaaccccaatacgttgctggtgatgaccgct
gaccactcgactggagggttaacccttggacgtgacggcgagtacgcatggtattcagat
agagtcatggccattgaaagctccattgcgacaatgcgtagtgaactgttgaacatggac
gcggagaaatggcccgagtatgtggctgacaaagtgaacttcgagctgactcaggactat
atcgacgagctggcgcttgcatctgagcaggaaggtgaagagcgtgaagacgcactgcac
gatgctttggtgtatattactggtgatattaccggtacgggctggacgggcagtggccac
accgcagtagacgtcccggtttttgctaaaggaccttactctgaagatttccgtgggtat
atgaacaatacggatattggtaagcggcttattgagattgtgaagtaa

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