KEGG   Carassius gibelio (silver crucian carp): 128007126
Entry
128007126         CDS       T08819                                 
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
cgib  Carassius gibelio (silver crucian carp)
Pathway
cgib04810  Regulation of actin cytoskeleton
Brite
KEGG Orthology (KO) [BR:cgib00001]
 09140 Cellular Processes
  09142 Cell motility
   04810 Regulation of actin cytoskeleton
    128007126
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01009 Protein phosphatases and associated proteins [BR:cgib01009]
    128007126
Enzymes [BR:cgib01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.3  Phosphoric-monoester hydrolases
    3.1.3.16  protein-serine/threonine phosphatase
     128007126
    3.1.3.48  protein-tyrosine-phosphatase
     128007126
Protein phosphatases and associated proteins [BR:cgib01009]
 Protein tyrosine phosphatases (PTPs)
  Class I PTPs (Dual specificity phosphatases)
   Slingshots
    128007126
SSDB
Motif
Pfam: PH_SSH1-like_1st DSPc DEK_C PTP-SAK Tc-R-P Y_phosphatase Init_tRNA_PT
Other DBs
NCBI-GeneID: 128007126
NCBI-ProteinID: XP_052448743
LinkDB
Position
A5:26173813..26184587
AA seq 970 aa
MALVTLQRSPTPSAASSASTNAGEDLGSDDDRKANLSLSESFFMVKGAALFLQQGSSAQE
PRTPTHHKNAGDLPQHLQVMINTLRAEDRIKLVVRLESGWTDHVRYMVVVYTNGHQDTEE
NMLLGVDFTDKDSKSCSIGMTLPLWSDTKIHLDGDGGFSVSTAGRLHVFKPVSVQAMWSA
LQVLHKACEVSCRYNYFPGGMALTWVGYYESCISSEQSCIDEWNAVTDLENTRPDSPVMF
SEQPTERERTECLIKAKLRNIMMFQDLENITSKEIRNELEQHMSCNLREYKEFIDNEMLL
ILGQMDKATLIFDHLYLGSEWNASNLEELQDSGVGYILNVTREIDNFFPGTFCYCNIRVH
DDETTDLQAHWNETYDFIVKAKKNNSKCLVHCKMGVSRSASTVIAYAMKEYGWSLEKAYS
FVKQKRNIAQPNPAFMKQLAEYEGILDASKQRHNKLWQPDGDEYSLEGLQASAASGDQTP
QFSSLHPNQEQTAWGHGGASASPCCGEEPTDHLNYNYYFRRLSDTALDSEPSTPVRGPPL
LGMERVFIEIEDVERDALLDDEGFPMAHLGLPGEGTAAQTCGRLEPIEDMRLRLEFSTVE
EEDEEEAQKEEAEMAALARGEETLREDENLANSNRFNNENANNSNRLAGKRSCPSGFDDS
ASIGKPYKVKPSYQSCRDCLRLPSGRRCERRTHRLNLPRHTGLPSLSIQAPRGHKFSTVS
ANKVPPPAPLHHMSSGHCQCIRCFGQANSDIYNKQLSCEDLPQDLHYSLETEDKMVGEDE
GSKECSSSPTTELTLLKLSLDGERPTVELSQEAPLETQLAHHRLEQLSEQMDLSIEDIAR
EDMEVDEGNVPSLHPGSGELQQTLAPGLALTRSSSSDSLQRICRGQPGLVRQRAREIEAR
VRLTGLTMSSQLKRSNSLAKLGDLAVSTEDLMLSTTVSTDYENQEPALCVQSSSSPKLFL
TSTVLQSLKS
NT seq 2913 nt   +upstreamnt  +downstreamnt
atggctctggtgactctgcagcgctcccctacacccagcgccgcatcctcagccagcacc
aacgcgggggaggatttaggcagtgatgatgatcgaaaggcaaacctaagcctgagtgaa
agtttcttcatggtaaaaggggcagctctgtttttacagcaaggcagcagtgcacaagag
cccagaacacccacccatcataaaaatgcaggggatctaccacagcatctacaagtaatg
ataaacaccctccgtgctgaggatagaattaaactagttgttaggttagaaagcggttgg
acagaccacgtgcggtacatggtggttgtctacacaaatggacatcaggacactgaagaa
aacatgctgcttggggtggattttacagataaggacagtaaaagttgctctattgggatg
actctaccactttggagtgataccaaaattcacttggatggagatggaggtttcagtgtg
agcacagcaggaagacttcatgtttttaagcctgtgtcagtccaggctatgtggtctgcc
ctccaggtgttgcacaaagcatgtgaggtgtcctgcagatacaactacttcccaggaggg
atggccctcacatgggttggctattatgagagctgtatatcctcagagcagagttgtatc
gatgagtggaatgctgtgacagatctggagaacacgcggcctgactcaccagtcatgttt
tctgagcagccaacagagagagagagaaccgagtgtttgattaaagccaaactccgaaac
ataatgatgtttcaggacctggaaaatattacttctaaggagatccgaaatgaactggaa
caacatatgagctgcaacctgagagagtataaagagtttattgacaatgagatgctgctt
atcctgggccagatggacaaggctacactcatatttgaccatctgtacctgggctcagaa
tggaatgcttccaacttggaggagcttcaagactctggggttgggtatatcctcaatgtc
acaagagagattgacaactttttcccaggtactttttgttattgtaatatccgagttcat
gatgatgagactacagatctgcaggcacactggaacgaaacctacgacttcatagttaaa
gccaagaaaaacaactccaaatgccttgtacattgcaagatgggagtgagtcgctcagca
tccactgtcattgcttatgccatgaaggagtatggatggtcgcttgagaaggcgtacagt
tttgtcaaacagaagaggaatatagcacaacccaatccagcttttatgaaacaacttgcg
gagtacgaggggattttagatgccagcaagcagagacacaacaaactctggcaaccggat
ggtgatgagtattcgctggagggtctccaggcttcagctgccagtggtgaccagactcct
caattttcgtcactgcaccccaatcaagagcagactgcttggggccatggtggagcaagt
gcttccccctgctgcggagaagagccgacagatcatctcaattacaactactacttccgg
cgactatcagacaccgctctggacagtgaaccctccacgccagttcgaggtcctccactt
ttaggcatggaacgagtttttattgagattgaggatgtagagagggatgcgttgttggac
gatgaaggtttccccatggctcacttgggccttcccggggagggcacagcagcccagacc
tgtggccgactggagcctatagaggacatgcgcttgaggctggagtttagcacggtggag
gaggaggatgaggaggaagcacaaaaggaggaggcggagatggccgctttagctcgtggc
gaggagacgctgagggaagacgagaacctggctaactcgaaccgctttaacaacgagaac
gccaacaacagcaacaggctggctgggaaacgcagctgcccttctggctttgacgacagt
gctagcattggaaagccctacaaagtgaagccctcatatcagtcgtgccgagactgcctg
cgcctgcccagtggccgccgctgcgaacgtcgcacccatcgccttaacctgccacgtcac
actggcctgcccagtttgtccatccaggcccccagaggacacaaattcagtaccgtttcc
gccaataaggtgcctcctcctgcccctctgcatcacatgagcagcgggcactgccagtgc
attcgttgcttcggtcaagccaactcggacatttacaacaagcaactgagctgcgaagac
cttcctcaggatttgcattattccttggagactgaggacaaaatggtaggggaggacgag
gggagtaaggaatgctccagtagtcctacgacagagctcactctcctgaagctcagtctg
gatggtgagaggcctacggtggagctcagtcaggaggcccctctggagacgcagctggcg
caccatagactggaacaactgtcagagcagatggacttgagcatagaggacattgccaga
gaggacatggaagtggatgaggggaacgtccccagcttgcaccctggttccggtgaactc
cagcaaacactcgcgccgggcttggccctgacacgcagctccagcagcgatagtctgcag
agaatttgtaggggccagccaggcttggtacgtcagcgagctcgagagattgaggcccgt
gtgcggctcactggactgaccatgtcctcccaactgaaaaggtctaattcactggccaag
ctaggtgacttggccgtctccacagaggacctcatgctttccaccacagtctccactgac
tacgaaaaccaagagcctgctctttgcgtgcaatcctcttcctcccccaagctcttttta
acttcaactgtgttgcagagtttgaaaagctga

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