KEGG   Oncorhynchus kisutch (coho salmon): 109886482
Entry
109886482         CDS       T09179                                 
Name
(RefSeq) receptor-type tyrosine-protein phosphatase delta-like
  KO
K06777  receptor-type tyrosine-protein phosphatase delta [EC:3.1.3.48]
Organism
oki  Oncorhynchus kisutch (coho salmon)
Pathway
oki04514  Cell adhesion molecules
Brite
KEGG Orthology (KO) [BR:oki00001]
 09130 Environmental Information Processing
  09133 Signaling molecules and interaction
   04514 Cell adhesion molecules
    109886482
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01009 Protein phosphatases and associated proteins [BR:oki01009]
    109886482
  09183 Protein families: signaling and cellular processes
   04515 Cell adhesion molecules [BR:oki04515]
    109886482
Enzymes [BR:oki01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.3  Phosphoric-monoester hydrolases
    3.1.3.48  protein-tyrosine-phosphatase
     109886482
Protein phosphatases and associated proteins [BR:oki01009]
 Protein tyrosine phosphatases (PTPs)
  Class I PTPs (Classical)
   Receptor PTPs
    109886482
Cell adhesion molecules [BR:oki04515]
 Immunoglobulin superfamily
  Type II RPTP family
   109886482
SSDB
Motif
Pfam: Y_phosphatase fn3 Ig_DSCAM-DSCAML_C Pur_ac_phosph_N Interfer-bind PTP-SAK Tc-R-P DSPc PTPlike_phytase Y_phosphatase3 Fn3_VIN3 PTP-NADK Fn3_PTPRU
Other DBs
NCBI-GeneID: 109886482
NCBI-ProteinID: XP_031670458
LinkDB
Position
Unknown
AA seq 1506 aa
MVRGVNFITIQSLTPNKTYYIRVLAFTSVGDGPLSQDLQIIAKTGVPSQPSDFKGEAKSE
TSILLSWVAPPQSGPENLITGYELVYRRSGDNEEKKLNFDPASSYLIKNLKPFSSYTFQL
AARSKHGIGAYTNEVTTDTPQTQPSAPPQEVTCSSPNSTSILVSWAPPLAEFQNGIIMGY
SIQYSVTERDNRTSQQVRRIPPESSPYLLENLEKWTEYGITVRALTEAGEGPESLQLLVR
TEEDVPSGPPRDVASEAVNSSAVRVVWRAPAVERQHGQVRGYQVHYMKMNYGEPAGPNLI
KDILLDDSQWEYNESAEYELVLGELQADTAYSVSVGAYTAKGDGARSKPQTLCTTLPLPE
PPRLSVSPTPVGTAQLQWLPPPSPATPLLGYRLTFGRLDVLPLTVVEFPTKEKSYTAQDI
HKGASYVFRLSARNKIGYGEEAAIEVTTPEDVPGGYPENILSEGASASSIRLVWKSVPLI
EQNGKIVKYSVQYRDVNGRGGNATGEVVVMVPESSVALEGLSADTVYDVRVRAFTAVGAG
PYSPGVQFRTQPLDVEVFATNFRVKAAMKNSVLLTWEIRDKTPSQPFSILYGKGQSVEVD
GKQNQKLITGLQPETQYSFLLTNRGNSAGGLQHRVTVTTAPDVLRSKPTLVGKTNADGMV
TVQLPSVQTTTTVRGYYVVVVPLKKQRGGKFLKPGDNPDQMNLDELLKEINRTSVSQALR
VRRQVPASQSDPRAYVSAHFKTLPQEFTLGDGRSYGEFRNRPLQNGQEYVFFVLALLDLS
NNTMYSTSPYSDPVTSNDVDPQPIVDEEEGLLWVVGPVMAVIFIVCIVIAILLFKSKPDR
KRAEAEGRKASFPCSKAMSSHHPTDPVELRRINFQTPGSYRVSAFRGYRRLSSVFLSWSV
DPGQQFTWEQSNLEVNKPKNRYANVIAYDHSRVLLSSIEGIPGSDYINANYIDGYRRQNA
YIATQGSLPETFCDFWRLVWEQHTANIVMMTKLEEKSRVKCDQYWPTRGTETYGLIQVTL
LDTVELATYSVRTFALYKVGSNEKREIRQFQFTAWPDHGVPEHPTPFLAFLRRVKACNPP
DAGPMVVHCSAGVGRTGCFIVIDAMVERIKHEKTVDIYGHVTLMRSQRNYMVQTEDQYAF
IHDALLEAVACGNTEVPARNLHAYIQRLTQIEPAENVTGTELEFKRLASAKAHTSRFVSA
NLPCNKFKNRLVNIMPYESTRVCLQPIRGVEGSDYINASFIDGYRFDCSFTELNRHPCCQ
RSHERRHDDEDDFHSHFYSVSVHGEDVSQFSYGCFQEEPHTSADSGGPHQNHCYDRSHLR
SVRLRLPGLPDCHGGSEATLCLPLQEKCHQYWPAERSARYQYFVVDPMAEYNMPQYILRE
FKVTDARDGQSRTVRQFQFTDWPEQGVPKSGEGFIDFIGQVHKTKEQFGQDGPITVHCSA
GVGRTGVFITLSIVLERMRYEGVVDIFQTVKMLRTQRPATVQTEDQYQFCYRAGLEYLGS
FDHYAT
NT seq 4521 nt   +upstreamnt  +downstreamnt
atggttcgtggtgtgaacttcatcaccatccagagtctgacccctaataagacctattac
atcagagtcctggcctttacctctgtaggagacggacctctctcccaggacctgcagatc
atagccaagactggagttccgtcccagccatcagacttcaaaggagaggccaagtcagag
accagtatattgctgtcatgggtagctcctccacagagtgggcctgaaaacctgatcact
ggatatgaactggtatacaggaggtctggtgacaacgaagagaagaagctgaattttgac
cccgcctcctcctaccttataaagaatttgaagccattctcctcctacaccttccagctg
gcagcacgtagcaaacacggcatcggagcgtataccaacgaggttaccacagatacacca
cagacacaaccctcggcccctccgcaggaagtcacatgctccagccccaactccaccagc
atcctggtaagttgggctccgcccctggcggaattccagaacggaatcataatgggatat
tccatccagtattctgtcacggaacgggacaacaggacttcccagcaagtcagacgaatt
ccaccggaaagctctccgtaccttctggaaaacctggagaaatggaccgagtatggaatc
acggtcagagccctgacggaagccggagaaggaccagagagtctacaactactagtacgc
accgaagaagatgttcccagtggtcctccgcgcgacgtggcgtcggaggcggtgaactcg
tcagcagtcagggtggtgtggcgggcaccggccgtggagcggcaacatggtcaggtcaga
ggttaccaggtccactacatgaagatgaactatggagaacccgctggacccaacctcatc
aaggatatactcctagacgactcacagtgggaatacaatgaatcagcagaatatgagttg
gttctaggggaactccaggctgatactgcctactctgtgtctgtgggggcgtacaccgcc
aagggagacggggcacggagcaaaccccaaactctctgcactaccctcccactcccagaa
ccccccaggctctcagtaagtcccacccccgtgggcacggcccagctccagtggctgcct
ccacccagccccgctacccctctcctggggtaccgtctaaccttcggacgcctggatgtc
ctccccctcaccgtggtagaattccccaccaaggaaaagtcctacactgctcaggatatc
cacaagggggcgtcgtacgtgttccgactctccgcccggaataagataggatacggagag
gaggcagcgatcgaggtgaccactccggaagacgttcccggaggatacccagaaaacatc
ctgtctgaaggcgcctcggcgtcttccatacggctcgtttggaagtctgtcccgctgatc
gaacaaaacgggaagattgtgaagtactcggtgcagtaccgggatgttaacggtagaggt
gggaacgctaccggggaggtggtggtgatggtaccggaatctagcgtggcgttggaaggg
ctgagcgctgacacggtgtatgacgttagagtgcgtgcgttcacggcggtaggggcgggg
ccttatagtcccggcgtccagtttaggacgcaacctctggatgtggaagtgtttgctact
aacttcagagtgaaggctgccatgaagaactcagtcctgctgacctgggagatacgagac
aaaacaccctcccagcctttttcgatcctgtatggtaagggtcagagtgttgaggtggat
ggtaaacagaaccagaagctgataacaggtctgcagccggaaacacagtactccttcctg
ttgactaaccgtggcaacagtgccggaggtctacagcaccgcgtaaccgtgacgaccgcc
ccggacgtgctacgttccaaacccacgctggtggggaagaccaacgcagacgggatggtg
acggttcaactaccgtccgtacagaccaccactaccgtcaggggctactatgtggtggtg
gttcctctgaagaaacagagaggagggaagttcttgaagcctggtgacaaccctgatcag
atgaacctagatgagctcctgaaagagatcaacaggaccagtgtgagccaggcgctgcgt
gtccgtcgccaggtcccggccagccaatcagatcccagggcctatgtttccgcccacttt
aagaccctcccccaggagttcaccctcggtgatgggaggagctatggagagttccggaac
cgccccctgcaaaacggacaggaatatgtgttcttcgtgctggcgctgctagacctgtct
aataatacaatgtattcaaccagcccctattctgaccccgtgacctccaatgacgtggac
cctcagccaatcgtagatgaggaggaggggcttctgtgggtggtggggccggtaatggct
gtcatcttcatcgtctgcatcgtcatcgccatcctactcttcaagagtaaaccagacagg
aaaagagctgaggcagagggaaggaaggctagtttcccctgcagcaaggccatgtcctct
caccatcctacagatcctgtggagctacgcagaatcaacttccagaccccaggaagttac
cgtgtatcagctttccgcggctacagacgattgtcaagcgtcttcctgtcctggtccgtt
gaccccggacagcagttcacctgggagcagtctaacctggaggtcaacaagccaaagaac
cgctatgctaacgtcatcgcctacgaccactccagggttctactgtccagcatcgagggt
atcccaggcagcgactacatcaatgccaactacatagatggttaccgtcgtcaaaacgcc
tacatcgcgacgcagggctctctccctgagaccttctgtgacttctggagactggtttgg
gaacagcacacggccaacatcgtcatgatgaccaagctagaggagaagtctcgggtaaaa
tgtgatcagtactggcctaccagaggaacagagacatatgggctgatacaggttactctg
ctggacactgtagagctggctacatactctgttaggacctttgctctctacaaggttggc
tccaatgagaagcgtgagattcgtcagttccagtttacagcctggccggaccacggggtc
cccgaacaccccacccccttcctggccttcctacgacgggtcaaggcctgcaaccctcca
gacgcaggacccatggtcgtacactgcagtgctggagtgggccggactggttgtttcatc
gtgattgacgccatggtggagcgaatcaaacacgagaagacagttgacatctacggtcac
gtgaccctcatgaggtcccagcggaactacatggtgcagacggaggatcagtacgccttt
atccacgacgcgctgctggaggccgtcgcctgcggcaacaccgaggttccggcgcggaac
cttcacgcctacatccagagactgacccagatagaaccggcggagaacgtcacaggcacg
gaactggagttcaagcggttggccagtgcgaaggcccacacctccaggtttgtgagtgcc
aacctgccgtgtaacaagttcaagaaccgtctggtgaacatcatgccctatgagtccacc
agggtctgtctgcagccaatcagaggagtggaggggtcagactacatcaacgccagcttc
atagacggatacaggtttgactgctcctttaccgaactgaaccgacacccctgctgccaa
cgcagccatgaaaggagacacgacgatgaagatgactttcacagccatttctacagtgta
tcggtacacggtgaggacgtcagtcagttctcctacggctgtttccaagaggaaccccac
acctccgcagatagcggaggtccccatcagaaccactgttacgaccgcagccacctccgt
agcgtccggctccgtctccccggccttcctgattgccatggaggcagcgaggccacattg
tgtctccccctacaggagaagtgccatcagtactggccagcagagcgttctgccaggtac
cagtactttgtggtggaccccatggctgagtacaacatgccccagtacatcctccgagag
ttcaaagtcaccgatgccagggacggccagtctcggacggttcgtcagttccagttcact
gattggccggagcaaggagtgccaaagtcaggggaggggttcattgatttcattggccag
gtgcacaaaactaaagagcagtttggccaagacggaccaatcacggtgcactgtagtgct
ggtgtggggaggacaggggtcttcatcactctgagtatcgttctggagaggatgagatat
gaaggagtagtggacatcttccagactgtcaagatgctgcgaacacagagacctgctacg
gttcaaactgaggaccagtaccagttctgttaccgggctggtctggagtatctgggcagc
ttcgaccactatgcaacataa

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