KEGG   Python bivittatus (Burmese python): 103054965Help
Entry
103054965         CDS       T03091                                 

Gene name
ALPI
Definition
alkaline phosphatase, intestinal
Orthology
K01077  
alkaline phosphatase [EC:3.1.3.1]
Organism
pbi  Python bivittatus (Burmese python)
Pathway
Folate biosynthesis
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:pbi00001]
 Metabolism
  Metabolism of cofactors and vitamins
   00790 Folate biosynthesis
    103054965 (ALPI)
Enzymes [BR:pbi01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.3  Phosphoric-monoester hydrolases
    3.1.3.1  alkaline phosphatase
     103054965 (ALPI)
Exosome [BR:pbi04147]
 Exosomal proteins
  Exosomal proteins of other body fluids (saliva and urine)
   103054965 (ALPI)
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
Position
Un
AA seq 534 aa AA seqDB search
MLIFILLXGLSNLLSWGLKNKLSVGANPFLPPVFQVEEEKPSFWNQRAQKAIQKAIRLPF
RQYQAKNLIIFLGDGMGIPTITATRILKGQMQNPPLPETPLSMDMFPYVALSKTYNVDRQ
VPDSAGTATAYLCGVKGNFQTIGVSAAARYNQCNTTAGNEVISVLKRAQMAGKSVGIVTT
TRVQHASPAGNYAHVVNRNWYSDAAMPKPALAGGCKDIAVQLIENVDLTVVLGGGRKYMT
PKGTPDPEYPTSSAANGTRNDNRNLIEEWLKAFPGRKYVWNRAELLKAVTDPTVERLMGL
FEPGDMKYELNRDNSTDPSLAEMTEVAINLLSSNPKGFYLFVEGGKIDLGHHEGIAKRAL
TEAIEFDKAIQRAGELTQEDDTLTVVTADHSHVFSFGGYTLRGTSIYGLAPEKAADGKSY
TSIVYGNGPGFQVSKEGRPNVNIEESENNTYHQQAAVPLVSETHGGEDVAIMAKGPMAHL
FHGVQEQSYIAHVMAYAAGLEPYTPKKLSGGNSAAAPKSSIAGLLLVPLLLWIC
NT seq 1605 nt NT seq  +upstreamnt  +downstreamnt
atgcttatattcattttattgtagggtttatctaacttactgtcttgggggctgaaaaat
aaactcagtgttggtgctaatccctttctccctcctgtcttccaagtggaagaggagaaa
ccatcgttctggaatcaacgggcacaaaaggccattcagaaagccatccgtctgccattc
cgccaataccaggccaagaacctcatcatctttctgggagatgggatgggcattcccacc
atcaccgctacccgcatcctgaaggggcagatgcaaaacccgccacttcctgaaacacct
ctaagcatggacatgtttccgtatgtggctctctccaagacctacaacgtggaccgacaa
gtgcccgacagcgcgggaaccgccactgcctacctctgtggggtgaagggcaactttcaa
accattggcgtgagtgccgctgcccggtataatcagtgcaatacaacagcgggcaacgaa
gtcatttctgtcctgaagcgggctcagatggctggaaagtcggtggggattgtgaccacc
acgcgagtccagcatgcctccccggccggcaactatgcccacgttgtgaaccgaaactgg
tatagcgatgctgccatgcctaaaccagcgctcgcaggcggctgcaaggatatcgcggtg
cagctcattgaaaacgtggacctcacggtggtcctgggtgggggcaggaaatatatgact
cctaagggcaccccagaccctgagtaccccaccagcagtgcagccaacgggacccgtaac
gataacagaaaccttattgaggaatggctgaaagcttttccaggcaggaagtacgtctgg
aaccgagccgagctattgaaagctgtcactgacccgacggtggagcgcctcatgggcctc
tttgaaccaggagacatgaagtacgagctgaaccgggacaacagcactgacccatctctg
gccgagatgaccgaagtggccatcaacttgctcagttccaaccccaaaggcttctatctc
tttgttgaaggaggcaagattgacttagggcatcacgaaggtattgctaagcgagccctg
acggaggcgattgagtttgataaagccatccagcgagccggggagttgactcaggaagat
gacactctgactgttgtgaccgctgaccactcccacgtcttcagcttcggaggctacact
ctccgggggacctccatttatgggttggcacctgaaaaggcagcggatggcaagtcatac
acctctattgtttatggcaacgggccaggcttccaggtctccaaagaaggccgaccgaac
gtaaacatagaagaaagtgagaacaacacgtaccaccagcaggctgccgtgccccttgtc
tcagagacccatgggggtgaggacgtggccatcatggccaagggacctatggcccacctc
ttccacggggtgcaggaacaatcgtacatcgctcacgtcatggcctacgccgccggcttg
gagccctacacgccgaagaagttgtccggtggcaactctgcagctgcgcccaagtccagc
attgcgggtctcctcctggttcctctgctcctgtggatctgctag

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