KEGG   Ailuropoda melanoleuca (giant panda): 100478038Help
Entry
100478038         CDS       T01329                                 

Gene name
DUSP10
Definition
(RefSeq) dual specificity phosphatase 10
  KO
K20216  dual specificity phosphatase 10 [EC:3.1.3.16 3.1.3.48]
Organism
aml  Ailuropoda melanoleuca (giant panda)
Pathway
aml04010  MAPK signaling pathway
Brite
KEGG Orthology (KO) [BR:aml00001]
 09130 Environmental Information Processing
  09132 Signal transduction
   04010 MAPK signaling pathway
    100478038 (DUSP10)
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01009 Protein phosphatases and associated proteins [BR:aml01009]
    100478038 (DUSP10)
Enzymes [BR:aml01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.3  Phosphoric-monoester hydrolases
    3.1.3.16  protein-serine/threonine phosphatase
     100478038 (DUSP10)
    3.1.3.48  protein-tyrosine-phosphatase
     100478038 (DUSP10)
Protein phosphatases and associated proteins [BR:aml01009]
 Protein tyrosine phosphatases (PTPs)
  Class I PTPs (Dual specificity phosphatases)
   MAPK phosphatases
    100478038 (DUSP10)
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif
Pfam: DSPc Rhodanese PTPlike_phytase Y_phosphatase Init_tRNA_PT
Motif
Other DBs
NCBI-GeneID: 100478038
NCBI-ProteinID: XP_002914228
Ensembl: ENSAMEG00000006928
UniProt: D2GYL7
Position
Un
AA seq 482 aa AA seqDB search
MPPSPLDDRVVVALSRPVRPQDLNLCLDSSYLGSAAPGSNGHPPVIATTVVSLKAANLTY
MPSSSGSARSLNCGCSSASCCTVATYDKDSQAQTQAIAAGTATTTIGTSPACPANQMVNS
NENAGPLSPSGGVGSPVAGTPKQLASIKIIYPNDLAKKMTKCSKSHLPSQGPVIIDCRPF
MEYNKSHIQGAVHINCADKISRRRLQQGKITVLDLISCREGKDSFKRIFSKEIIVYDENT
NEPSRVMPSQPLHIVLESLKREGKEPLVLKGGLSSFKQNHENLCDNSLQLQECREAGGGA
SAASSVLPQSIPTTPDIENAELTPILPFLFLGNEQDAQDLDTMQRLNIGYVINVTTHLPL
YHYEKGLFNYKRLPATDSNKQNLRQYFEEAFEFIEEAHQCGKGLLIHCQAGVSRSATIVI
AYLMKHTRMTMTDAYKFVKGKRPIISPNLNFMGQLLEFEEDLNNGVTPRILTPKLMGVET
VV
NT seq 1449 nt NT seq  +upstreamnt  +downstreamnt
atgcctccgtctcctttagacgacagggtagtagtggcactgtctaggcccgtccgacct
caggatctcaacctttgtttagactctagctaccttggctctgccgccccaggcagtaac
ggccaccctcctgtcattgccaccaccgtcgtatccctcaaggctgcgaatctgacgtat
atgccctcatccagcggctctgcccgctccctgaattgtggatgcagcagcgccagctgc
tgtactgtggcaacctacgacaaggacagtcaggcccaaacccaagccatcgccgctggc
accgccaccaccaccatcggaacctctcccgcctgccctgccaaccagatggtcaacagc
aatgagaacgcaggccctttaagtccatcaggtggggtgggcagccctgtggcagggacc
cccaagcagctagccagcatcaaaataatctaccccaatgacttggcgaagaagatgacc
aaatgcagcaagagtcacctgccgagccagggccccgtcatcattgactgcaggcccttc
atggagtacaacaaaagtcacatccaaggagctgtccacattaactgtgccgataagatc
agccggcggagactgcagcagggcaagatcactgtcttagacttgatttcctgtagggaa
ggcaaggactctttcaagaggatcttttccaaagaaattatagtttatgatgagaatacc
aatgagccgagccgagtgatgccctcccagccacttcacatagtcctcgagtccctgaag
agagaaggcaaagaacctctggtgttgaaaggtggacttagcagttttaagcagaaccat
gaaaacctctgtgacaactccctccagctccaagagtgccgcgaggcggggggcggcgcg
tctgcggcctcgagcgtgctacctcagtccatccccaccacccctgacatcgagaatgca
gagctgacgcccatcttgcccttcctgttcctcggcaacgagcaggacgctcaggacctg
gacacgatgcagcggctgaacatcggctacgtcatcaacgtcaccactcacctgcccctc
taccactatgagaaaggcctgttcaactacaagaggctgccagcgaccgacagcaacaag
cagaacctgaggcagtactttgaagaggcttttgaattcatcgaggaagctcaccagtgt
gggaaggggcttctcatccattgccaagccggggtgtcccgttctgccaccatcgtcatc
gcttacttgatgaagcacactcggatgaccatgactgatgcttataaatttgtcaaaggc
aaacgaccaattatttccccaaaccttaacttcatggggcaattactggagtttgaggaa
gacctgaacaacggtgtgacaccgcgaatccttacaccaaagctgatgggcgtggaaacg
gtcgtctga

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