Microcaecilia unicolor: 115463613
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Entry
115463613 CDS
T09142
Symbol
PTPRD
Name
(RefSeq) receptor-type tyrosine-protein phosphatase delta isoform X1
KO
K06777
receptor-type tyrosine-protein phosphatase delta [EC:
3.1.3.48
]
Organism
muo
Microcaecilia unicolor
Pathway
muo04514
Cell adhesion molecules
Brite
KEGG Orthology (KO) [BR:
muo00001
]
09130 Environmental Information Processing
09133 Signaling molecules and interaction
04514 Cell adhesion molecules
115463613 (PTPRD)
09180 Brite Hierarchies
09181 Protein families: metabolism
01009 Protein phosphatases and associated proteins [BR:
muo01009
]
115463613 (PTPRD)
09183 Protein families: signaling and cellular processes
04515 Cell adhesion molecules [BR:
muo04515
]
115463613 (PTPRD)
Enzymes [BR:
muo01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.3 Phosphoric-monoester hydrolases
3.1.3.48 protein-tyrosine-phosphatase
115463613 (PTPRD)
Protein phosphatases and associated proteins [BR:
muo01009
]
Protein tyrosine phosphatases (PTPs)
Class I PTPs (Classical)
Receptor PTPs
115463613 (PTPRD)
Cell adhesion molecules [BR:
muo04515
]
Immunoglobulin superfamily
Type II RPTP family
115463613 (PTPRD)
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Y_phosphatase
fn3
I-set
Ig_3
Ig_DSCAM-DSCAML_C
Pur_ac_phosph_N
Ig_2
ig
fn3_2
PTP-SAK
Tc-R-P
V-set
DSPc
PTPlike_phytase
Y_phosphatase3
PTP-NADK
Ig_VEGFR-1-like_5th
Fn3_PTPRU
Motif
Other DBs
NCBI-GeneID:
115463613
NCBI-ProteinID:
XP_030050153
UniProt:
A0A6P7XC99
LinkDB
All DBs
Position
2:301840027..302904190
Genome browser
AA seq
1915 aa
AA seq
DB search
MLVPNCLMMHVARPVVVLLCFLLCADAETPPRFTRTPVDQTGVSGGVASFICQATGDPRP
KIVWNKKGKKVSNQRFEVIEFDDGSGSVLRIQPLRTPRDEAIYECVASNNVGEISMSTRL
TVLREDQIPRGFPTIDMGPQLKVVERTRTATMLCAASGNPDPEITWFKDFLPVDTSNNNG
RIKQLRSGALQIEQSEESDQGKYECVATNSAGTRYSSPANLYVRELREVRRVPPRFSIPP
TNHEIMPGGSVNITCVAVGSPMPYVKWMLGAEDLTPEDDMPIGRNVLELTDVRQSANYTC
VAMSTLGVIEAIAQITVKALPRSPGTPVVTESTATSITLTWDSGNPEPVSYYIIQHKPKN
SEEQYKEIDGVATTRYSVAGLSPYSEYEFRVVAVNNIGRGPPSELVTTRTSEQAPSSAPR
NVQARMLSSTTILVQWEEPEEPNGQIRGYRVYYTMDPTQHASSWTKHNVADSHITTIGNL
VPQKTYSVKVLAFTSVGDGPLSSEIQVITQTGVPSQPLNFKAEPESEKSILLSWTPPRSE
TISNYELVYKDGDFGNEQRITIEPATSYRLQGLKPNSLYYFRLAARSPPGLGASTAEISA
RTMQSKPSAPPQNIRCNSPSSTSILVSWLPPPVEKQNGFITEYSIKYVGVDGEDNSPHEI
MGISSNTTQYLLGQLEKWTEYRITMTAHTDVGPGPESMQVLIRTDEDVPSGPPRKVEVEA
VNSTSIKVSWRSPVPNKQHGQIRGYQVHYVRMENDEPKGQPMLKDIMLADAQWEYDDTAE
HVMIISGLQPETAYSITVTAYTTKGDGARSKPKVVYTTGAVPGKPHLVISHTQMNTALVQ
WHAPVQTLGPLLGYRLKFGRKDLDMLRTLEFSEKEDHFTATDIHKGASYIFKLSARNKVG
FGEETVREISIPEDVPNGFPQNLHSDGTTSSSVQLSWQPPILSERNGIITKYTILYKDIN
LPHHPVELHIVSADTSVMLTGLKPDTTYDVKLRAHTSKGPGPFSPSVQFRTQPVDQAVFA
KNFHVKAVMKTSVLLSWEIPENYNSTMPFKILYDDGKMFVEVDGRVTQKLITNLKPETSY
SFVLTNRGNSAGGLQHRVTANTAPDVLRTKPGFIGKTNSDGMITVDLPAVPANDKIKGYY
IIVVPLKKSREKFINPWESPDEMELDELLKEISRKRRSVRVRRDVALKPYIAAHFDVLPT
EFTLGDQKQYGGFENKQLQSGQEYVFFVLAVMKHAESTMYATSPYSDPVVSMDLDPQPIT
DEEEGLIWVVGPVLAVVFIICIVIAILLYKSKPDRKRAESDSRKSSIPNSKEIPSHHPTD
PVELRRLNFQTPGMASHPPIPILELADHIERLKANDNLKFSQEYESIDPSQQFTWEHSNL
EINKPKNRYANVIAYDHSRVLLTAIEGVPGSDYINSNYIDGYRKQNAYIATQGPLPETFG
DFWRMMWEQRGATVVMMTKLEERSRVKCDQYWPSRGTETYGLIQVTLLDTVELATYCVRT
FALYKNGSSEKREVRQFQFTAWPDHGVPEHPTPFLAFLRRVKTCNPPDAGPMVVHCSAGV
GRTGCFIVIDAMLERIKHEKTVDIYGHVTLMRAQRNYMVQTEDQYIFIHDALLEAVTCGN
TEVPARNLYAYIQKLTQIEPGENVTGMELEFKRLASSKAHTSRFISANLPCNKFKNRLVN
IMPYESTRVCLQPIRGVEGSDYINASFIDGYRQQKAYIATQGPLAETTEDFWRMLWEHNS
TIVVMLTKLREMGREKCHQYWPAERSARYQYFVVDPMAEYNMPQYILREFKVTDARDGQS
RTVRQFQFTDWPEQGVPKSGEGFIDFIGQVHKTKEQFGQDGPISVHCSAGVGRTGVFITL
SIVLERMRYEGVVDIFQTVKMLRTQRPAMVQTEDQYQFCYRAALEYLGSFDHYAT
NT seq
5748 nt
NT seq
+upstream
nt +downstream
nt
atgctggtgccaaactgtctgatgatgcatgtagcccggccagtggtggtgctcctgtgc
ttcctgctctgtgctgatgctgagactccaccaaggtttacaagaacacccgttgatcag
acaggggtctcgggaggagtggcatcatttatctgccaagctacaggcgatccaagacct
aaaattgtctggaataaaaaggggaagaaagtcagcaatcagagatttgaggtaatagag
tttgatgatggttctgggtctgtccttagaatacagccccttcgcacaccgcgagatgag
gctatttatgagtgtgttgcctcgaataatgtgggagaaattagtatgtctactaggctc
actgttttacgtgaggaccagattcctcgtggttttcccaccattgacatgggcccacaa
ttgaaggtggttgagcgaactcgcacagccaccatgctatgtgccgccagtggtaaccca
gatccggaaatcacatggttcaaggacttcttgcccgttgatacaagcaacaataacggg
cgcatcaaacagttacgatcaggtgccctccaaatcgagcaaagtgaagagtctgaccag
ggaaaatatgagtgtgttgcaaccaacagtgcgggtacacgctattcatcccctgccaat
ctatatgtcagagagctgcgagaagttcgccgtgttccaccgagattctcaatcccacca
acaaaccatgagatcatgccaggtgggagtgtgaatatcacttgcgttgcagtggggtca
ccaatgccgtatgtgaaatggatgttgggggctgaagatttgacgcctgaagatgatatg
ccaatagggaggaacgtgttggagcttactgatgtccggcaatcagctaattatacatgc
gttgccatgtctacccttggtgttatagaagcaatagcacaaataacagttaaagcctta
cccagatctccaggaactccagtagtgactgaaagcacagcaacaagtataacattgact
tgggactctggaaatccggagcccgtctcttactacattattcaacataaacctaagaac
tcggaagagcaatataaagaaattgatggggtggcaacaacgcgatacagtgttgccggg
ctaagcccatattcagaatatgaattccgggtagttgctgtgaacaacattggacggggc
ccacccagcgaactggtgacaacaaggacatcggagcaagccccatctagcgctccacgc
aatgtacaggctcgtatgctgagctcaacaactattttggttcagtgggaagagccggag
gagcccaatgggcagattcgtggctacagggtttattacaccatggatcctactcagcat
gccagcagctggacaaagcacaatgtagccgacagccacatcaccactattgggaatctg
gtaccacaaaaaacatactctgtgaaggtccttgcttttacttccgttggggacgggcct
ctctccagtgaaattcaggtcatcactcaaactggagttccaagtcagccactaaacttc
aaagcagaaccagaatctgaaaaaagcatattactttcctggactccccctcgctctgaa
acaatatcaaattatgagctggtttacaaagatggagactttggtaatgagcaacgcatt
acgattgaacccgccacatcttaccgtctgcaaggactgaaacccaacagcttgtattac
ttccgcttggcagcccgttctcctccaggcttgggtgcttctactgcagagatctcagcc
aggaccatgcagtcaaagccatcagctccccctcagaacattagatgcaacagtccaagc
tctactagcattttggtaagttggctgcctccaccggtggaaaaacagaatggctttatc
accgaatattctattaagtatgttggagttgatggcgaagacaacagcccccatgaaatt
atgggcatttcatcaaacactactcagtaccttttgggacagttggaaaaatggactgaa
taccggattaccatgactgcccatactgatgttggacctggcccagagagcatgcaagtg
ctaattcggacagatgaagatgttcctagtggtcctcctcgcaaagtcgaggtagaggct
gtcaactctacatcaataaaagtgtcatggcgctctcctgtgcccaataagcagcatggt
cagatccgaggataccaggtgcattatgtgaggatggaaaatgatgagcctaaaggtcaa
cccatgctgaaggacatcatgttggccgatgctcagtgggaatatgatgatactgctgaa
catgtaatgataatctctggactgcagcctgaaactgcatactccatcactgtgacagcc
tacacgacaaaaggagatggagctcgcagcaagccaaaagtggtatataccaccggagca
gttccaggaaaaccccatcttgtgattagccatacacagatgaacactgcccttgtgcaa
tggcatgctccagttcagacccttggccccctgctgggttatcgtttgaaatttggccgc
aaggacttggatatgcttaggacactggaattttctgagaaggaagatcattttactgcc
acagacatccacaaaggagcctcctacatctttaagctctcagctagaaacaaagtgggt
tttggagaggagacagtgagagagatttctatcccagaggatgttccaaatggattccct
caaaacctccattcagacggtacaacttcttcatctgtccagctatcctggcagccaccc
attttatcagagcgcaatggcattatcactaaatacaccattctttacaaggatatcaac
ctaccacaccatccagttgagttgcacattgtttctgcagataccagcgtgatgctcact
gggttaaaaccagataccacgtatgatgtaaaattacgtgcccacacaagcaaagggccc
ggtccatttagcccaagtgtccagttcaggacacagccagtggatcaagcagtgtttgca
aaaaattttcatgtcaaagctgtcatgaagacttcggtactactgtcttgggagattcca
gagaattacaattcgaccatgcctttcaaaatcctttatgacgatggcaagatgtttgtt
gaggtggacggccgagttactcagaaactcatcaccaacttaaagccagagacttcttat
tcctttgttctgacaaaccgggggaacagcgctggaggtctccaacacagagtgacagca
aatactgctcccgatgtattgcgtaccaagcctggttttattgggaagacaaactccgat
ggaatgataactgttgatcttccagcagtacctgcaaatgataaaataaaaggttactat
ataatcgttgtgcctttgaagaaatctcgtgaaaagtttattaacccttgggaaagccca
gatgaaatggaattagatgagctacttaaggagatatcgaggaaacgcagaagtgttcgt
gtcaggagggatgttgcattaaagccatatattgctgctcactttgatgttctcccaacc
gagttcaccctaggggatcagaagcagtatggtggctttgaaaacaagcagctccaaagt
ggtcaagaatatgttttctttgttctggctgtgatgaagcatgctgaatcgacaatgtat
gccacaagtccatactctgaccctgttgtgtccatggatcttgacccacaaccaattaca
gatgaggaagaagggttgatttgggtagttgggccagttcttgcagtggtgtttatcatc
tgtattgtcatagccatacttctttataaaagcaaaccagacaggaagagagctgaatct
gactctcgaaagagcagcatacctaacagcaaagaaatcccttctcatcatcccaccgac
ccagtggagctaaggcgcctaaattttcaaactccaggtatggctagccatcctccaata
cccatcttggaactcgcagatcacattgaaagattaaaagcgaatgacaatttgaagttc
tcccaggagtatgagtcgatagatcctagccagcagtttacatgggagcactcgaatctg
gaaataaataaaccaaagaatagatatgcaaatgtaattgcctatgaccactctcgagtt
ctgctgactgcaatagaaggtgtgccaggcagtgattacatcaattcgaactacattgat
ggatataggaaacaaaatgcctacatagcaacacaagggcctcttccagaaacttttggg
gatttctggagaatgatgtgggagcagcgtggcgcaacagtcgtaatgatgaccaaactg
gaagaaaggtccagggtaaaatgtgatcagtattggcccagcagaggaactgaaacctac
gggctgatccaagttacacttctggacaccgttgagctggcaacgtattgtgttcggact
tttgcactatataagaatggttcaagtgagaaacgagaagtgaggcagttccagtttact
gcctggcctgaccatggagttccggaacatcctacacctttcctggcttttctacgacga
gtcaaaacttgtaaccctcccgatgctgggccaatggttgtccattgcagtgctggagtc
ggcaggactggctgcttcattgtgatagatgccatgttggagagaataaaacatgaaaaa
actgtagatatttatggtcacgtaactctaatgagagctcagaggaattacatggttcag
acagaggaccaatacatctttatccatgatgcactgctcgaagcagtaacatgtggaaat
accgaagtgccagccagaaacctgtatgcatatattcagaagctgacacaaatagagcca
ggagagaatgtcacaggaatggagttggaatttaagcgtcttgctagctccaaagctcac
acttcaagattcatcagtgccaatcttccatgtaataaattcaaaaatcgccttgttaat
attatgccatatgaatccacaagagtatgcttacagccaattcgaggtgtagaaggctct
gactatatcaatgccagttttattgatggatacaggcaacaaaaggcctacatagctaca
cagggacctttggctgagacaacagaagatttctggagaatgctctgggaacataattcc
acaattgttgtcatgctgacaaagctcagagaaatgggcagggaaaaatgtcaccagtac
tggcctgcagagcgttctgccaggtatcagtactttgtggtagatcccatggcagagtac
aacatgccacaatatatcctaagggagttcaaggtgacagacgcaagggatggccagtca
cgaacagttcgacagttccagttcactgactggccagagcaaggagtgccaaagtccgga
gaaggatttatcgatttcataggccaagtgcataaaacaaaagaacagtttggtcaggat
gggccaatctctgttcactgcagtgcgggtgttggaaggactggtgtattcataaccttg
agcatcgtattggaaagaatgagatatgaaggtgttgtagatattttccagactgtcaaa
atgctgaggacgcaacggccagccatggtacaaacagaggatcaatatcagttctgctat
cgagctgcactagagtaccttggcagctttgatcactatgcaacgtaa
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integrated database retrieval system