KEGG   Eurypyga helias (sunbittern): 104512777
Entry
104512777         CDS       T08356                                 
Name
(RefSeq) receptor-type tyrosine-protein phosphatase delta
  KO
K06777  receptor-type tyrosine-protein phosphatase delta [EC:3.1.3.48]
Organism
ehs  Eurypyga helias (sunbittern)
Pathway
ehs04514  Cell adhesion molecules
Brite
KEGG Orthology (KO) [BR:ehs00001]
 09130 Environmental Information Processing
  09133 Signaling molecules and interaction
   04514 Cell adhesion molecules
    104512777
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01009 Protein phosphatases and associated proteins [BR:ehs01009]
    104512777
  09183 Protein families: signaling and cellular processes
   04515 Cell adhesion molecules [BR:ehs04515]
    104512777
Enzymes [BR:ehs01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.3  Phosphoric-monoester hydrolases
    3.1.3.48  protein-tyrosine-phosphatase
     104512777
Protein phosphatases and associated proteins [BR:ehs01009]
 Protein tyrosine phosphatases (PTPs)
  Class I PTPs (Classical)
   Receptor PTPs
    104512777
Cell adhesion molecules [BR:ehs04515]
 Immunoglobulin superfamily
  Type II RPTP family
   104512777
SSDB
Motif
Pfam: fn3 Ig_DSCAM-DSCAML_C Pur_ac_phosph_N fn3_2 Ig_3 I-set ig DUF5849 Fn3_PTPRU Ig_2 Kre9_KNH
Other DBs
NCBI-GeneID: 104512777
NCBI-ProteinID: XP_010154184
LinkDB
Position
Unknown
AA seq 1131 aa
RRVPPRFSIPPTNHEIMPGGSVNITCVAVGSPMPYVKWMLGAEDLTPEDDMPIGRNVLEL
NDVRQSANYTCVAMSTLGVIEAIAQITVKALPKPPGTPVVTESTATSITLTWDSGNPEPV
SYYIIQHKPKNSEEPYKEIDGVATTRYSVAGLSPYSEYEFRVVAVNNIGRGPPSEPVSTR
TSEQAPSSAPRNVQARMLSSTTILVQWEEPEEPNGQIQGYRVYYTMDPTQHVNSWMKHNV
ADSHITTIGNLVPQKTYSVKVLAFTSVGDGPLSSDIQVITQTGVPGQPLNFKAEPESETS
ILLSWTPPRSDTISSYELVYKDGEHGEEQRVSTEPTTSYRLQGLRPNSLYLFRLAARSPQ
GLGASTAEISARTMQSKPSAPPQDISCTSPSSTSILVSWKPPPVEKQNGIITEYSIKYIG
IDGEDVKPHEILGISSDSTQYLLEQLEKWTEYRISMTAHTDVGPGPESLAVLIRTDEDVP
SGPPRKVEVEAVNSTAVKVSWRSPVPNKQHGQIRGYQVHYVRMENGEPRGHPLLKDIMLA
DAQWEYDDTTEHEMIISGLQPETTYSFTVTAYTTKGDGARSKPKLISTTGAVPGKPRLVI
SHTQMNTALIQWHPPVDTFGPLQGYRLKFGRKDVDTFTTMEFSEKEDHFTATDIHKGASY
VFRLSARNKVGFGEEMVKEISVPEEVPSGFPQNLHSESSTSTSVQLTWQMPLLAERNGII
TKYTILYRDINVAYQPVELPVVPALSGLKPDTTYDVKVRAHTSKGPGPYSPSVQFRTLPV
DQAVFAKNFHVKAVMKTSVLLSWEIPENYNSALPFKILYDDGKMVVEVDGRATQKLITNL
KPETSYSFVLTNRGNSAGGLQHRVTAKTAPDVLRTKPVFIGKTNLDGMITVELPEVPSNE
NIKGYYIVIVPLKRSRGKFIKPWESPDEMELDELLKEIARKRRSIRLGREVELKPYIAAH
FEVLPTEFTLGDKKHYGGFENKQLQSGQEYVFFVLAVMEHSESTMYATSPYSDPVVSMDL
DPQPITDEEEGLIWVVGPVLAVVFIICIVIAILLYKSKPDRKRAESDSRKSSIPNSKEVP
SHHPTDPVELRRLNFQTPGMASHPPIPILELADHIERLKANDNLKFSQEYE
NT seq 3395 nt   +upstreamnt  +downstreamnt
ttcgacgggtcccaccgaggttctctatcccccccaccaatcatgagataatgcctggcg
ggagtgtaaatatcacgtgtgttgcggtggggtcaccaatgccatatgtgaaatggatgc
taggagcagaagatttgacacctgaggacgatatgccaatagggaggaacgtccttgagc
ttaatgatgtcaggcagtctgcaaactatacttgtgttgctatgtctacccttggtgtta
tagaagcaatagcacagataactgtcaaagccttacccaaacctcctggaacacctgtgg
taacagaaagcacagcgacaagcataacattgacttgggattctggaaaccctgagccag
tttcttactatatcatccaacacaaacccaaaaactctgaggagccatataaagaaatcg
atggggtggccacaactcgctatagtgtggctggcctaagcccatattcagagtatgaat
ttcgggtagttgctgtaaataacattgggcgagggccacccagtgagccagtgtcaacaa
ggacttcagagcaagcaccttcaagtgcaccacgcaatgtgcaggcccgaatgctgagct
ctaccaccattttggtacagtgggaagaacctgaggaacctaatggacaaatacaaggtt
atagagtttattataccatggaccccactcaacacgtcaacagttggatgaagcacaatg
tggctgacagccatattaccactattgggaatctggtaccccagaaaacgtactctgtga
aggttcttgcttttacttctgttggggatggaccactttctagtgacattcaggtcatca
ctcaaacaggagtgcctggtcagccactgaactttaaagcagaacctgagtctgaaacga
gcatattactttcctggacacctccacgctctgataccatttccagctatgaactggttt
acaaagatggggagcacggggaggagcaacgggtttccactgaacctactacatcttatc
gtctgcaaggtttaaggccaaacagcttgtacttattccgtctagcagcacgttctccac
aaggactgggtgcttcaacagcagaaatttcagcgagaaccatgcagtcaaagccatcag
ctcctcctcaagacattagttgcacaagccccagctccactagcattttggtaagttgga
aacctccaccggtggaaaaacagaacggcattatcactgaatactccatcaagtacattg
ggattgatggagaagatgtcaagccccatgaaattttgggaatttcctcggacagtactc
aataccttttggaacagctggaaaaatggactgagtaccggatctctatgactgcccaca
ctgatgttggacctggcccagagagcttagcagtattgattcggacagatgaagatgttc
ctagtggtcctcctcgcaaagtcgaggtagaggctgtcaactctactgctgttaaagtgt
catggcgctcgcctgtacccaataagcagcatggccagatccgaggataccaggtccact
acgtgaggatggaaaatggagagccaaggggtcatcccttgctgaaggacatcatgctgg
ctgatgcacagtgggaatatgatgatactactgaacatgaaatgataatttctgggcttc
agcctgaaactacatactccttcactgtgacagcctatacaacaaaaggtgatggagcac
gcagcaagcccaaactcatatctactactggtgcagttccaggcaaacctcggcttgtga
ttagccacacacagatgaacacggctctaattcagtggcaccctcctgtggacacttttg
gcccgctgcagggttatcgcctgaagtttggtcgcaaagacgtggatacatttaccacca
tggagttctcagagaaggaagatcacttcacggccacagacattcacaaaggagcttcct
acgtcttcaggctctcagctagaaataaagtgggctttggggaggagatggttaaagaga
tttcggttcctgaagaggtacccagtggatttccccaaaacctccactcggaaagctcta
cttcaacatcagttcaattaacttggcagatgccactcttggcagagagaaatggcatta
tcaccaaatataccatcttgtacagagatatcaatgttgcttaccagccagttgaactcc
ctgttgttcctgcactttctggcttaaaaccagataccacatatgatgtaaaagtacgtg
cccacacaagcaaagggcctggtccatatagtccaagtgtccagttcaggacactacccg
tggatcaagcagtgtttgcaaaaaattttcatgtgaaagcagtaatgaagacttctgttt
tgctgtcatgggaaattccagaaaattacaattcagccttgcctttcaaaatcctttatg
atgatgggaaaatggtggtggaggttgatggacgtgctactcaaaagctgattactaact
tgaagccagagacatcatattcatttgtgctgacgaacagagggaatagtgctgggggtc
ttcagcacagagtgacagcaaagactgcaccagatgtgcttcgcaccaagccagtcttca
ttggaaagaccaacttagatggcatgataactgtggaacttccagaagtaccttcaaatg
agaacataaaaggttactacatagtaattgtgcctttaaagaggtctcgtggaaagttta
tcaaaccatgggagagtccagatgaaatggaactagatgagctgcttaaggagatagcta
ggaaacgcagaagcattcgtcttgggagggaagttgaattaaagccatatattgcagctc
actttgaagttcttcctacggagttcacgttgggggataagaaacattacggtggctttg
agaataagcaacttcagagtggtcaagaatatgtcttctttgtgctggctgtaatggagc
actcagaatctaccatgtatgcaaccagcccatattctgatcctgttgtgtcgatggatc
ttgatccccaaccaattacagatgaggaagaaggcttgatttgggttgttggaccagttc
ttgcagtggtgtttatcatctgtattgttattgctatacttctttataaaagtaaacctg
acaggaagagggctgaatctgattctagaaagagcagcatacccaacagcaaggaggtcc
cctctcaccatcccacagacccagtggagctgcgacgccttaattttcaaactccgggta
tggccagtcatcccccaatacctatcttggaacttgcagatcacattgaaagattgaaag
caaatgacaatttgaagttctcacaggagtatgag

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