Salmo trutta (river trout): 115149180
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Entry
115149180 CDS
T08542
Name
(RefSeq) protein phosphatase Slingshot homolog 1-like isoform X1
KO
K05766
protein phosphatase slingshot [EC:
3.1.3.16
3.1.3.48
]
Organism
stru
Salmo trutta (river trout)
Pathway
stru04810
Regulation of actin cytoskeleton
Brite
KEGG Orthology (KO) [BR:
stru00001
]
09140 Cellular Processes
09142 Cell motility
04810 Regulation of actin cytoskeleton
115149180
09180 Brite Hierarchies
09181 Protein families: metabolism
01009 Protein phosphatases and associated proteins [BR:
stru01009
]
115149180
Enzymes [BR:
stru01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.3 Phosphoric-monoester hydrolases
3.1.3.16 protein-serine/threonine phosphatase
115149180
3.1.3.48 protein-tyrosine-phosphatase
115149180
Protein phosphatases and associated proteins [BR:
stru01009
]
Protein tyrosine phosphatases (PTPs)
Class I PTPs (Dual specificity phosphatases)
Slingshots
115149180
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
PH_SSH1-like_1st
DSPc
DEK_C
PTP-SAK
Y_phosphatase
Tc-R-P
DUF7045
Motif
Other DBs
NCBI-GeneID:
115149180
NCBI-ProteinID:
XP_029547650
Ensembl:
ENSSTUG00000003062
LinkDB
All DBs
Position
15:complement(47211852..47235265)
Genome browser
AA seq
1023 aa
AA seq
DB search
MALVTLQRSPTPSAASTASTNAGEELGRDDDRRANQSLSESFFMVKGAALFLQQGTNAQG
PKTPTHHKHAGDLPRHLQVMINTLRSEDRIKLAVRLESGWSDRVRYMVVVYTSGRQDTEE
NILLGMDFTDKDSKSCSIGMVLPLWSDTKIHLDGDGGFSVTTGGRSHVFKPVSVQAMWSA
LQILHKASDVSRRHNYFPGGMALTWMGFYESCITSEQSCINEWNTMTDLETMRPDSPAMF
VDRPTERERTECAIKAKLRSIMMFQDLENVTSKEIRVELEQHMSCNLNEYKEFLDNEMLL
ILGQMDKATLIFDHLYLGSEWNASNLEELRDCGVGYILNVTREIDNFFQGTFSYHNIRVF
DEEATDLLAHWNETYNFIVRAKKNQSKCLVHCKMGVSRSASTVIAYAMKEYGWTLEKAYN
FVKQKRSIARPNAGFMKQLAEYEGILDASKQRHNKLWRPEGGEDIPDEASGQCCGGEETP
VEDEAWGGEGCSASPCRGLEVDALDPLNYNYYFRRLSDTALDSEPSTPVRGPPLLGMERV
FIEIEDVERDALLEDEGFPMAQLALPGEATAAQTCGGRLEPLEDMRLRLEFSTVEEEDEE
EAQKEEAEMAALARTPAGGEGVTEDEERKDQANVNRFNNENANNSNRLAAKRSCPAAFDD
SASTGNPYKVKPSYQSCKDCLRLPPGWRCERPAGGRNHRLNPTRHCGVVPTISIDPPGTH
FTNTPTPHSPCALPATIARLEAYRQRLVSPMSCEELPRDRHCSLETEDMDELQEEEEEEQ
EPKPGREAGTGAITELTFMKLSLEGERPAGQPPGVELQPAGVEVDPPSGGVEPQQEQEAL
AQLQRTGLELGLVRQGAEQLERISGLAMEGLLSGAGLSEQMDLSLAVEEMEVEGDVRVHS
ESHIPSTSCVVTAADPQINTTPVSYPQWSTQTWTPVSSPHGSTLTRSFSSVSLHSNCGGR
PGLVRPRTQEMETRMRLAGLTVPSLFKRSSSLAKLGGLTFSTEDLSDLADDQAQLFSTVT
PAL
NT seq
3072 nt
NT seq
+upstream
nt +downstream
nt
atggccctggtaaccctacagcgctctcccaccccgagcgcagcatccaccgccagcacc
aacgcgggggaggaattagggcgtgatgatgaccggagagcaaatcagagcctcagcgag
agcttcttcatggtcaaaggagctgccctcttcctgcaacagggcaccaatgcacaggga
cccaagacccctacacaccacaaacatgcaggtgacttacctcgacacctgcaggtcatg
attaacaccctccgctctgaggaccgcattaaactggctgtacggttagagagtggttgg
tctgaccgcgtgcggtacatggttgtggtctacaccagtggtcgacaggacacagaggag
aatatcctgctggggatggacttcaccgataaggacagtaaaagctgctctatcgggatg
gtgctaccgctatggagcgatacgaagatccatttagatggagatgggggatttagtgtg
accacaggaggacgatcgcatgtcttcaagcctgtttctgtacaggccatgtggtctgcc
ctgcagatcctccataaggcaagcgatgtgtctcgcaggcacaactacttccccgggggc
atggccctcacctggatgggcttctatgagagctgtatcacctccgagcagagctgcatc
aacgagtggaacactatgaccgacctggagaccatgcggcccgactcacctgccatgttc
gtcgaccggccaacggagagagagagaacagagtgtgcaatcaaagccaaactgcgcagc
atcatgatgttccaggacctggagaatgtcacttccaaggagatccgtgtggagctagag
cagcatatgagctgtaacctgaatgagtacaaagagttcctcgacaatgagatgctgctg
atcctgggtcagatggacaaagccacactcatctttgaccacctctacctgggctctgag
tggaatgcctccaatctagaggaactacgggactgtggtgtgggctacatcctcaatgtg
accagggaaatagacaacttcttccagggcacgttctcctaccacaatatccgggtgttt
gatgaggaggccacagacctgctggcccactggaacgagacctacaacttcatcgtcaga
gccaagaagaaccagtctaagtgtctggtccactgtaagatgggtgtgagccggtcagcc
tccacagtcatagcgtatgccatgaaggagtatggctggactctggagaaggcctacaac
tttgtgaagcagaagaggagcattgctcggcccaacgctggctttatgaagcagctggct
gagtacgagggcatcctggacgctagtaaacagcgccacaacaagctgtggaggcccgag
ggaggggaggacatcccagatgaggcgtctggccagtgttgtggtggagaggagaccccc
gtggaggatgaggcctgggggggagagggctgcagcgcctccccctgccggggcctggag
gtggacgccctggaccctctcaactacaattactacttcagacggctgtcggacacggcc
ctggacagcgagccctccaccccagtgcgcggccctcccctgctgggcatggaaagggtg
ttcattgagatcgaggatgtggagagggacgcccttctggaggatgagggcttcccaatg
gcccaactggctttgcctggggaggccactgccgcccagacctgtgggggccgcctggag
cccctggaggacatgaggctacgcctggagttcagcacggtggaggaggaggatgaggag
gaggctcagaaggaggaggcggagatggccgccctggcccggacacctgcaggaggagag
ggagtgacggaggacgaggagaggaaggatcaggccaacgtaaaccgcttcaacaacgag
aacgccaacaacagtaaccgcctggctgccaagcgcagctgccccgctgccttcgacgac
agtgctagcacaggaaacccttacaaagtgaagccctcctaccagtcctgtaaagactgc
ctgcgtctgccaccagggtggcgctgtgagcgcccggcaggaggccgcaaccaccgcctt
aaccccacacgccactgcggggtggtccccactatctccatagacccccctggcacccac
ttcaccaacactcccaccccccactccccctgtgccctccctgccaccattgcccgcctg
gaggcctaccgccagcggctggtgtcgcccatgagctgcgaggagctgcctcgagacaga
cactgctccctggaaacggaggacatggacgagctgcaggaggaagaggaggaagagcag
gagccaaagccagggagggaggcggggactggagccatcacagagctcacgtttatgaag
ctcagcttggagggggagaggccagcgggtcagcctcctggtgtggagttgcagcctgct
ggggtggaggtggaccctcctagtggtggagtggagccacagcaggagcaggaagccctg
gcccagctacagaggacagggctggagctggggctggtgaggcagggcgcggaacagctg
gagaggatctcaggactggccatggaaggtctactctcaggggctgggctgtctgagcag
atggacctgagcttggcagtggaggagatggaggtggagggggatgtaagggtgcattct
gaatcccacatcccttctaccagctgtgtggtcacagccgcagacccccagattaacacc
accccagtgtcgtacccccagtggtccacccagacttggacccctgtgtcctccccccat
ggctccaccctcacccggagcttcagcagcgtcagcctccacagcaactgcgggggacgc
ccaggcctggtcaggccacgcacccaggagatggagacccgcatgaggctggccggcctg
accgtcccctccctgttcaaacgctccagctccctggccaaactgggaggcctcaccttc
tccactgaggacctctcagacctggctgatgatcaggcccagctgttctccaccgtgacc
ccagccctctga
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