KEGG   Ailuropoda melanoleuca (giant panda): 100466381
Entry
100466381         CDS       T01329                                 
Symbol
PTPN23
Name
(RefSeq) tyrosine-protein phosphatase non-receptor type 23 isoform X1
  KO
K18040  tyrosine-protein phosphatase non-receptor type 23 [EC:3.1.3.48]
Organism
aml  Ailuropoda melanoleuca (giant panda)
Brite
KEGG Orthology (KO) [BR:aml00001]
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01009 Protein phosphatases and associated proteins [BR:aml01009]
    100466381 (PTPN23)
  09183 Protein families: signaling and cellular processes
   03037 Cilium and associated proteins [BR:aml03037]
    100466381 (PTPN23)
Enzymes [BR:aml01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.3  Phosphoric-monoester hydrolases
    3.1.3.48  protein-tyrosine-phosphatase
     100466381 (PTPN23)
Protein phosphatases and associated proteins [BR:aml01009]
 Protein tyrosine phosphatases (PTPs)
  Class I PTPs (Classical)
   Non-receptor PTPs
    100466381 (PTPN23)
Cilium and associated proteins [BR:aml03037]
 Primary cilia and associated proteins
  Other primary cilia associated proteins
   100466381 (PTPN23)
SSDB
Motif
Pfam: BRO1 Y_phosphatase ALIX_LYPXL_bnd PTP-SAK Y_phosphatase3 Tc-R-P ORF6C PTPlike_phytase DSPc DUF6852 PTP-NADK
Other DBs
NCBI-GeneID: 100466381
NCBI-ProteinID: XP_011221308
Ensembl: ENSAMEG00000012896
LinkDB
Position
4:16387184..16413026
AA seq 1638 aa
MEAVPRMPMIWLDLKEAGDFLFQPAVKKFVLKNYGENPEAYNEELKKLELLRQNAVRVPR
DFEGCSVLRKYLGQLHYLQSRVPMGSGQEAAVPVTWTEIFSGKSVAHEDIKYEQACILYN
LGALHSMLGAMDKRVSEEGMKVSCTHFQCAAGAFAYLREHFPHAYSVDMSRQILTLNVNL
MLGQAQECLLEKSMLDNRKSFLVARISAQVVDYYKEACRALENPDTASLLGRIQKDWKKL
VQMKIYYFAAVAHLHMGKQAEEQQKFGERVAYFQSALDKLNEAIKLAKGQPDTVQDALRF
AMDVIGGKYNSAKKDNDFIYHEAVPALDTLQPVKGAPLVKPLPVNPTDPAVTGPDIFAKL
VPMAAHEASSLYSEEKAKLLREMMVKIEDKNEVLDQFMDSMQLDPETVDNLDAYSHIPPQ
LMEKCAALSVRPDTVRNLVQSMQVLSGVFTDVEASLKDIRELLEDDELLEQKLQEALGQA
GGSLAGSKAELAEVRRDWAKYMEVHEKASFTNSELHRAMNLHVGNLRLLSGPLDQVRAAL
PTPALTPEDKAVLQNLKRILAKVQEMRDQRVSLEQQLRELIQKDDITASLVTTDHSEMKK
LFEEQLKKYDQLRVYLEQNLAAQDNVLRALTEANVQYAAVRRVLSELDQKWNSTLQTLVA
SYEAYEDLMKKSQEGKDFYADLESKVAALLERAQSTCQAREAARQQLLDRELKKKPPPRP
TAPKPLLPRREEGEAVEPGDLPEELRSLPPDMVAGTRPPDTYLGAAAPLHFPPSPFPSSV
GPGPHYLSGPLPPGTYSGPTQVLQPRAPQAPGHPAMAMAPGPALYSAPAYTPELGLVPQS
SPQHGVVSSPYGGVGPPPPVAGLPSAPPPQFSGPEMAMALRPATTTVDSVQAPISSHTAP
RPNPSPAPPQPCFPVPPPQPQLLPTPYTYPMGGAKPPLAAAPAQHHFPPGIPPGFPAPRV
GPQPPGVAFGPQPPQQPLALQHPNLFPPQAPGRVPSQPPYPFAPQPGVLGQPAPTLHTPL
YPGPSQDPLPPHSGALPFPTPGPPQSPHPTLAYGPAPSPRPLGPQAAPLSIRGPSPASQP
TPNPHLVPSPAPSPGPGPVPPRPPAAEPPPCVRRGTAAADLLSSSPESQHGGTQPPGGGQ
PLLQPTKVDAAEGRRPQALRLIEQDPYEHPERLQQLQRELEAFRGQLGDAAALDAVWREL
QDAQEHDARGRSIAIARCYSLKNRHQDVMPYDSNRVVLRSGKDDYINASRVEGLSPYCPP
LVATQAPLPGTAADFWLMVHEQKVSVIVMLVSEAEMEKQKVARYFPTERGQPMVHGALSL
ALSSVRATETHVERVLSLQFRDQSLKRSLVHLHFPTWPELGLPDSPGNLLRFIQEVHAHY
LHQRPLHTPVVVHCSSGVGRTGAFALLYAAVQEVEAGNGIPELPQLVRRMRQQRKHMLQE
KLHLRFCHEAVVRHVEQVLQRHGVPPPGRPSAGTSVSQKNHLPQDSQDLVLGGDVPISSI
QATIAKLSIRPPGGLDSPVASLPGPVEPPGLPPASLPESVQLPSSSPPPLSSPQPEAPQP
EEEQPVPEAPSLGPPSSSLELLASLTPEAFSLDNSLRGKQRMSKQNFLQAHNGQGLRAAR
PTDDPLSLLDPLWTLNKT
NT seq 4917 nt   +upstreamnt  +downstreamnt
atggaggccgtgccccgcatgcccatgatctggctggacctgaaggaggccggtgacttc
ctcttccagcctgccgtgaagaagtttgtcctaaagaattacggagagaacccagaagcc
tacaatgaggaactgaagaagctggagttgctcagacagaatgctgtccgtgtcccacgg
gactttgagggctgcagtgtcctgcgcaagtacctaggccagctccactacctgcagagt
cgggttcccatgggctcgggccaggaggccgccgttcctgtcacctggaccgagatcttc
tctggcaagtctgtggcccatgaggacatcaagtatgagcaggcctgcattctctacaac
ctcggggctctgcactccatgttgggggccatggacaagcgggtgtctgaggagggcatg
aaggtctcctgtactcatttccagtgtgcagcaggcgccttcgcctacctgcgcgagcac
ttccctcatgcctacagcgtggacatgagtcgccagatcctcactctcaacgtcaacctc
atgctgggccaggctcaggagtgccttctggagaagtcaatgttggacaacaggaagagc
tttctggtggcccgcatcagtgcacaggtggtggattactacaaggaggcatgccgggcc
ttggagaaccccgacaccgcctcactgctgggccggatccagaaggactggaagaagctc
gtgcagatgaagatctactactttgcagccgtggctcatctgcacatggggaagcaggct
gaggagcagcagaagttcggtgagcgggtcgcgtacttccagagtgccctggacaagctc
aatgaagccatcaagttggccaagggccagcctgacacggtgcaggacgcactgcgcttt
gctatggatgtcattggaggaaagtacaattctgccaaaaaggacaatgacttcatctac
cacgaggctgtcccagcactggacacccttcagcctgtaaaaggcgcccccttggtgaag
cccttaccagtgaaccccacagaccccgctgttacaggccctgacatctttgccaaactg
gtacccatggctgctcatgaagcctcgtcgttatacagtgaggagaaggccaagctgctt
cgggagatgatggtcaagattgaggacaagaatgaggtcctggatcagttcatggattca
atgcagctggaccctgagaccgtggacaaccttgatgcgtacagccacatcccaccccag
ctcatggagaagtgtgcagctctcagtgtccggcccgacaccgtcaggaaccttgtccag
tccatgcaagtgctgtcaggtgtgttcacggatgtggaggcctccctgaaggacatcagg
gagctgctggaggatgacgagctgcttgagcagaagttgcaggaggcgctgggccaggct
gggggcagcctggcgggctccaaggcagagctggccgaggtgaggcgagactgggctaag
tacatggaagtccacgagaaggcctccttcaccaacagcgagctgcatcgggccatgaat
ctgcacgtgggcaacctgcgcctgctcagtgggccgctggaccaggtccgggctgccctg
cccacgccagccctcaccccagaggacaaggccgtgctgcagaacctgaagcgcatcctg
gccaaggtgcaggagatgcgggaccagcgcgtgtccctggagcagcagctgcgggagctc
atccagaaggatgatatcacggcctcgctggtgactacggaccactctgagatgaagaag
ctgtttgaggagcagctgaagaagtatgaccagctgagagtgtacctggagcagaacctg
gcagcccaggacaacgttctccgggcactgaccgaggccaacgtgcagtacgcagccgtg
cgccgggtgctcagtgaactggaccagaagtggaactccacactccagaccctggtggcc
tcctacgaagcctatgaggacctgatgaagaagtcccaggagggcaaggacttctatgcg
gacctggaaagcaaggtggctgctctcttggaacgggcgcagtccacctgccaggcccgc
gaggccgcccgccagcagctcctggacagggaactgaagaagaagccgcccccgcggccc
acggccccaaagccgctgctgccccggagggaggaaggggaggcagtggagccaggagac
ctgcccgaggagctgcgcagcctgccccctgacatggtggccggtacacggccacccgac
acctacttgggagctgcggcaccactccactttcctcccagtcccttccccagctccgtg
ggcccaggaccccactatctctcaggtcccttacctcctggtacctactcgggtcccact
caggtgttgcagcccagggccccccaggccccaggccaccctgcaatggccatggcccct
ggacctgccctctactcagcccctgcctacacaccagagctaggcctcgtgccccaatct
tccccacagcacggtgtggtaagcagtccctatgggggggtagggccccccccaccagtt
gcaggtctgccctcagccccacctccccagttctcgggccctgagatggccatggcgctt
cggccagccactaccacagtagatagtgtccaggcccccatctccagccataccgcacca
cggccaaaccccagccctgctcctccccagccatgcttcccggtgcccccaccacagcca
cagctactgcccacgccctacacctaccctatgggaggggccaagccacccctcgcagct
gcccctgcccagcaccactttcctcctgggattcccccgggttttccagcccccagggtt
gggccccagcccccaggagtggcgtttgggccccagcccccccagcagccccttgcactc
cagcatccgaacctcttcccaccccaggctccggggcgggttccctcccaacccccttac
cccttcgcccctcagcctggcgttctgggacagccagcaccaaccctgcacacccctctc
tacccgggcccctctcaggaccctctgcccccccattcaggggctctgcccttccccacc
cctgggccgcctcagtctcctcatcccaccctggcatacggtcctgccccttcccccagg
cctctgggcccccaggcagctcctctctccattcgaggcccctcacctgctagccagccc
acccccaacccccacctggtgccttcacctgccccatcaccagggcccggcccagtgccg
cctcggccccctgctgcagagccgcccccatgtgtgcgccggggcacggcggctgcagac
ctgctgtcctccagtccagagagtcagcacggaggcacccagccccccgggggcgggcag
cccctgctgcagcctacgaaggtggacgcggctgagggccgccggccacaagccctgcgg
ttgatcgagcaggacccctacgagcaccccgagaggctgcagcagttgcagcgggagctg
gaggccttccgaggccagctgggggatgcagcagcactggacgctgtgtggcgagagctg
caggacgctcaggagcatgacgcccgcggccggtccattgccattgcccgctgctactct
ctgaagaaccggcaccaggatgtcatgccgtacgacagtaaccgtgtggtgctgcgctcg
ggcaaggacgactacatcaacgccagccgcgtggaggggctttcgccctactgcccgccc
ttggtggccacccaggcgccgctgcctggcacggccgcggacttctggctcatggtgcac
gagcagaaggtgtcggtcatcgtcatgctggtgtcagaggccgagatggagaagcaaaag
gtggcgcgctatttccccaccgagagaggccagcccatggtgcacggcgccctgagcctg
gcgctgagcagcgtccgggccaccgagacccacgtggagcgggtgctgagtctgcagttc
cgggaccagagcctcaagcgctcgctcgtgcacctccacttccccacttggcctgagtta
ggcctgccagacagccccggcaacctgctgcgcttcatccaggaggtgcacgcgcactac
ttgcaccagcggcccctgcacacgcccgtcgtcgtgcactgcagctctggggtgggccgc
acgggagccttcgcgctgctgtacgccgccgtgcaggaggtggaggctgggaacgggatc
cccgagctgcctcagctggtgcggcgcatgcgacagcagaggaagcacatgctgcaggag
aaactgcacctcaggttctgccacgaggcggtggtgagacacgtggagcaggtcctgcag
cgccatggcgtgcctcctccaggtagaccgtcggcaggcacaagcgtcagtcagaagaat
caccttcctcaggactcccaggacctggtcctcggcggggacgtgcctatcagctccatc
caggccaccatcgccaagctcagcatccgccctcccgggggcctggattccccggtcgcc
agcctcccaggccccgtagagcccccggggctgccaccagccagcctcccggagtccgtt
cagctcccatcctcctccccaccccccctctcttcaccccagcccgaggccccccagcct
gaggaggaacagccagtacctgaggcccccagcctggggcccccatcctcctccctggag
ctgctggcctccctaactcctgaggccttctctctggacaactccttgcgaggaaagcag
cggatgagcaagcagaactttctgcaggcccataatgggcagggtctgcgggctgcccgt
cccaccgatgacccactcagccttctggatccgctctggacactcaacaaaacctga

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