Mustela lutreola (European mink): 131823870
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Entry
131823870 CDS
T09578
Symbol
PTPN23
Name
(RefSeq) tyrosine-protein phosphatase non-receptor type 23
KO
K18040
tyrosine-protein phosphatase non-receptor type 23 [EC:
3.1.3.48
]
Organism
mlk
Mustela lutreola (European mink)
Brite
KEGG Orthology (KO) [BR:
mlk00001
]
09180 Brite Hierarchies
09181 Protein families: metabolism
01009 Protein phosphatases and associated proteins [BR:
mlk01009
]
131823870 (PTPN23)
09183 Protein families: signaling and cellular processes
03037 Cilium and associated proteins [BR:
mlk03037
]
131823870 (PTPN23)
Enzymes [BR:
mlk01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.3 Phosphoric-monoester hydrolases
3.1.3.48 protein-tyrosine-phosphatase
131823870 (PTPN23)
Protein phosphatases and associated proteins [BR:
mlk01009
]
Protein tyrosine phosphatases (PTPs)
Class I PTPs (Classical)
Non-receptor PTPs
131823870 (PTPN23)
Cilium and associated proteins [BR:
mlk03037
]
Primary cilia and associated proteins
Other primary cilia associated proteins
131823870 (PTPN23)
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
BRO1
Y_phosphatase
ALIX_LYPXL_bnd
PTP-SAK
Y_phosphatase3
Tc-R-P
ORF6C
DSPc
DUF6852
PTP-NADK
PTPlike_phytase
LysC
Motif
Other DBs
NCBI-GeneID:
131823870
NCBI-ProteinID:
XP_059016730
LinkDB
All DBs
Position
2:17515561..17540683
Genome browser
AA seq
1639 aa
AA seq
DB search
MEAVPRMPMIWLDLKEAGDFLFQPAVKKFVLKNYGENPEAYNEELKKLELLRQNAVRVPR
DFEGCSVLRKYLGQLHYLQSRVPMGSGQEAAVPVTWTEIFSGKSVAHEDIKYEQACILYN
LGALHSMLGAMDKRVSEEGMKVSCTHFQCAAGAFAYLREHFPQAYSVDMSRQILSLNVNL
MLGQAQECLLEKSMLDNRKSFLVARISAQVVDYYKEACRALENPDTASLLGRIQKDWKKL
VQMKIYYFAAVAHLHMGKQAEEQQKFGERVAYFQSALDKLNEAIKLAKGQPDTVQDALRF
AMDVIGGKYNSAKKDNDFIYHEAVPALDTLQPVKGAPLVKPLPVNPTDPAVTGPDIFAKL
VPMAAHEASSLYSEEKAKLLREMMAKIEDKNEVLDQFMDSMQLDPETVDNLDAYNHIPPQ
LMEKCAALSVRPDTVRNLVQSMQALSGVFTDVEASLKDIRELLEEDELLEQKLQEALGQA
GASPAGSKAELSEVRRDWAKYMEVHEKASFTNSELHRAMNLHVGNLRLLSGPLDQVRAAL
PTPALTPEDKAVLQNLKRILAKVQEMRDQRVSLEQQLRELIQKDDITASLVTADHSEMKK
LFEEQLKKYDQLRVYLEQNLAAQDNVLRALTEANVQYAAVRRVLSELDQKWNSTLQTLVA
SYEAYEDLMKKSQEGKDFYADLESKVAALLERAQSTCQAREAARQQLLDRELKKKPPPRP
TAPKPLLSRREEGEAAETGDLPEELRSLPPDMVAGPRPPETYLGTATPLHFPPSPFPSSV
GPAPHYLSGPVPPCTYSGPSQVLQPRAPQVPGHPAMAIAPGPALYSAPAYAPELGLVPRS
SPQHGVVSSPYRGVGPPPPVAGLPSAPPPQFSGPEMAMGVRPATTTVDSVQAPISSHTAP
RPNPSPVPPQPCFPVPPPQPQLLPAPYTYPMGAKPPLTAPPTQHHFPPGIPPGFPAPRVG
PQPHPAGVAFGPQPPQQPLPLQHPNLFPPPAPGRVPPQAPYPFAPQSGVLGQPTPPLHTP
LYPGPSQDPLPPHSGALPFPTPGPPQSPHPTLAYGPAPSPRPLGPQAAPLSIRGPSPAGQ
PTPNPHLVPSPAPSPGPGPVPPRPPAAEPPPCARRGTAAADLLSSSPESQHGGTQPPGGG
QPLLQPTKVDAAEGRRPQALRLIERDPYEHPERLQQLQRELEAFRGQLGDAAALDAMWRE
LQDAQEHDARGRSIAIARCYSLKNRHQDVMPYDSNRVVLRSGKDDYINASRVEGLSPYCP
PLVATQAPLPGTAADFWLMVHEQKVSVIVMLVSEAEMEKQKVARYFPTERGQPMVHGALS
LALSSVRATETHVERVLSLQFRDQSLKRSLVHLHFPTWPELGLPDSPSNLLRFIQEVHAH
CLHQRPLHTPVVVHCSSGVGRTGAFALLYAAVQEVEAGNGIPELPRLVRRMRQQRKHMLQ
EKLHLRFCHEAVVRHVEQVLQRHGVPPPGRPSAGTSVSQKNHLPQDSQDLVLGGDVPISS
IQATIAKLSIRPPGALDSPAASIPGPVEPPGLPPASLPESTQLPPSSPPPLSSPQPEAPQ
PEEEQPVPEAPSLGPPSSSLELLASLTPEAFSLDNSLRGKQRMSKQNFLQAHNGQGLRAA
RATDDPLSLLDPLWTLNKT
NT seq
4920 nt
NT seq
+upstream
nt +downstream
nt
atggaggccgtaccccgcatgcccatgatctggctggacctgaaggaggctggtgacttc
ctcttccagccggccgtgaagaagtttgtcctaaagaattacggagagaacccagaagcc
tacaatgaggaactgaagaagctggagttgctcagacagaatgctgtccgtgtcccacgg
gactttgagggctgcagtgtgctccgcaagtacctgggccagcttcactacctgcagagt
cgggtccccatgggctcgggccaggaggccgccgttcctgtcacctggaccgagatcttc
tctggcaagtctgtggcccatgaggacatcaaatacgagcaggcttgcattctctacaac
cttggggcgctgcattccatgctgggggccatggacaagcgggtgtctgaggagggcatg
aaggtctcctgtacgcatttccagtgtgcagcaggcgcctttgcctacctgcgtgagcac
ttccctcaggcctacagtgtggacatgagtcgccagatcctctctctcaacgtcaacctc
atgctgggccaggctcaggagtgccttctggagaagtcaatgttggacaacaggaagagc
tttctggtggcccgcatcagtgcacaggtagtagattactacaaggaggcatgccgggcc
ttggagaaccccgacaccgcctcactgctgggccggatccagaaggactggaagaagctt
gtccagatgaagatctactactttgcagctgtggctcatctgcacatggggaagcaggcg
gaggagcagcagaagtttggggagcgggtcgcatatttccagagtgccctggacaagctc
aatgaagccatcaagttggccaagggccagcctgacaccgtgcaggacgcactgcgcttt
gctatggacgtcattgggggaaagtacaattctgccaaaaaggacaatgacttcatctac
cacgaggctgtcccagcactggacacccttcagcctgtaaaaggcgcccccttggtgaag
cccttaccagtgaaccccacagaccctgctgttacaggccctgacatctttgccaaactg
gtacctatggctgctcacgaagcctcgtcgctctacagtgaggagaaggccaagctgctt
cgggagatgatggccaagattgaggacaagaatgaggtcctggatcagttcatggattca
atgcagctggaccctgagactgtggacaaccttgatgcgtacaaccacatcccgccccag
ctcatggagaagtgcgcagctctcagtgtccggcctgatactgtcaggaaccttgtgcag
tccatgcaagcgctgtcaggtgtgttcacggatgtggaagcctccctgaaggacatcagg
gagctgctggaggaggacgagctgcttgagcagaagctgcaggaggccctgggccaggcc
ggggccagcccggcgggctccaaggcagagctgtctgaggtgaggcgcgactgggctaag
tacatggaggtccacgagaaggcctccttcaccaacagcgagttgcaccgggccatgaat
ctgcacgtgggcaacctgcgcctgctcagtgggccgctggaccaggtccgggctgccctg
cccacgccagccctcaccccggaggacaaggctgtgctgcagaacctgaagcgtatcctg
gccaaggtgcaggagatgcgggaccagcgtgtgtccctggagcagcagctgcgggagctg
atccagaaggatgatatcacggcctcgctggttactgccgaccactcagagatgaagaag
ctgtttgaggagcagctgaagaagtatgaccagctgcgggtgtacctggagcagaacctg
gcggcccaggacaacgtcctccgggcactgaccgaggccaacgtgcagtatgcggccgtg
cggcgggtgctcagtgagctggaccaaaagtggaactctacactccagaccctggtggcc
tcctacgaagcctatgaggacctgatgaagaagtcccaggagggcaaggacttctacgcg
gacctggagagcaaggtggctgctctcttggagcgggcgcagtccacctgccaggcccgt
gaggctgcgcgccagcagctcctggacagggagctaaagaagaagccgcccccacggccc
acggccccgaagccactactgtcccggagggaagagggggaggcagcggagacaggagac
ctgcccgaggagctgcgcagcctgccccctgacatggtggccggcccacggccaccggaa
acctacttgggaactgctaccccactccactttcctcccagccccttccccagttctgtg
ggcccagcaccccactatctctcaggtcccgttcctccttgtacctactcaggccccagc
caggtgttgcagcccagggccccccaggtcccaggccaccctgcaatggccatcgcccct
ggacctgccctctactcagcccctgcctacgcaccggagttgggccttgtcccccggtcc
tccccacagcatggtgtggtgagcagtccctataggggtgtaggcccccccccgccagtt
gcaggtctgccctcagccccacctccccagttctcaggccctgagatggccatgggggtt
cggccagccaccaccactgtagatagtgtgcaggcccccatctccagccacaccgcacca
cggccaaaccccagccctgttcctccccagccctgcttcccggtgcccccaccacagccg
caactactgcccgcaccctacacctaccctatgggagccaagccgcccctcacagctccc
ccaacccagcaccactttcctcctgggattcccccaggttttccagcccctagggttggg
ccccagcctcatcccgcaggagtggcatttgggccccagcccccccagcagccccttcca
ctccagcatccaaacctcttcccacccccggctccagggcgggtcccccctcaagctccc
tacccttttgcccctcaatctggtgtcctgggacagccaacaccacccctgcacacaccc
ctctacccgggcccctctcaggaccctctgcccccccactcaggggctctgcccttcccc
acccctggtccacctcagtctccccatcccaccctggcatatggtcctgccccttccccc
aggcccctgggcccccaggcggcccctctctccatccggggtccctcacctgctggccag
cccacccccaacccccatctggtgccttcacctgccccgtcaccagggcctggcccggtg
ccacctcggccccctgctgcagagccgcccccatgtgcgcgccggggcactgcggccgca
gacctgttatcctccagcccggagagtcagcacggaggcacgcagccccctgggggtggg
cagcccctgctgcagcctacaaaggtggacgcggccgagggccgccgcccacaagccctg
cggctgattgagagggacccctacgagcaccccgagaggctgcagcagttgcagcgggag
ctggaggcctttcgaggccagctgggggacgcagcggccctggacgccatgtggcgagag
ctgcaggatgcccaggaacacgacgcccgtggccggtccattgccattgcccgctgctac
tccctgaagaaccggcaccaggatgtcatgccctacgacagtaaccgcgtggtgctgcgc
tcgggtaaggacgactacatcaacgccagccgtgtggaagggctctcaccctactgcccg
cctttggtggccacccaggcgccgctgcctggtacagccgcagacttctggctcatggtg
catgagcaaaaggtgtcggtcattgtcatgctggtgtctgaggcagagatggagaagcaa
aaggtggcacgctacttccccaccgagaggggccagcccatggtgcacggtgccctgagc
ctggccctaagcagcgttcgggccacggagacccatgtggagcgcgtgctgagcctgcag
ttccgggaccagagcctcaagcgctcgctcgtgcacctccacttccccacttggcctgag
ctgggcctgccggacagccccagcaacctgctgcgcttcatccaggaggtgcatgcgcac
tgcctgcaccagcggccactgcacacgcccgtcgtcgtgcactgcagctcgggggtgggc
cgcacgggagccttcgcgctgctctacgccgccgtgcaggaggtggaggctgggaatggg
atccccgagctgcctcggctggtgcggcgcatgcggcagcagaggaaacacatgctgcag
gagaaactgcacctcaggttctgccacgaggcagtggtgagacatgtggagcaggtcctg
cagcgccatggtgtgcctcctccgggcagaccgtcggccggcaccagcgtcagccagaag
aaccaccttcctcaggactcccaggacctggtcctcggtggggacgtgcccatcagctcc
atccaggctaccattgccaagctcagcatccggcctcctggggccctggattctccggct
gccagcatcccaggccccgtagagcccccgggcctgccaccagccagcctcccagagtcc
actcagctcccgccctcctccccaccccccctctcttcaccccagcccgaggccccccag
cctgaggaggaacaaccagtacctgaggcccccagcctggggcccccctcctcctccctc
gagctgttggcctccctaactcccgaggccttttctctggacaactccttgcgaggaaag
cagcggatgagcaagcagaactttctgcaagcccataatggtcagggtctcagggctgcc
cgggccactgatgaccccctcagccttctggatccactctggacacttaacaagacctga
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