KEGG   Oncorhynchus keta (chum salmon): 118391402
Entry
118391402         CDS       T09424                                 
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
oke  Oncorhynchus keta (chum salmon)
Pathway
oke04810  Regulation of actin cytoskeleton
Brite
KEGG Orthology (KO) [BR:oke00001]
 09140 Cellular Processes
  09142 Cell motility
   04810 Regulation of actin cytoskeleton
    118391402
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01009 Protein phosphatases and associated proteins [BR:oke01009]
    118391402
Enzymes [BR:oke01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.3  Phosphoric-monoester hydrolases
    3.1.3.16  protein-serine/threonine phosphatase
     118391402
    3.1.3.48  protein-tyrosine-phosphatase
     118391402
Protein phosphatases and associated proteins [BR:oke01009]
 Protein tyrosine phosphatases (PTPs)
  Class I PTPs (Dual specificity phosphatases)
   Slingshots
    118391402
SSDB
Motif
Pfam: PH_SSH1-like_1st DSPc DEK_C PTP-SAK Y_phosphatase Tc-R-P DUF7045
Other DBs
NCBI-GeneID: 118391402
NCBI-ProteinID: XP_035638646
LinkDB
Position
12:complement(34086324..34115059)
AA seq 1055 aa
MYFLHMDVLRSYKGGGDFVRRPVDSRELLRERSRIRMHLVVEPSQEAMLTMLPHFVKNAV
LSKREIWRILSESFFMVKGAALFLQQGTNAQGPKTPTHHKHAGDLPRHLQVMINTLRSED
RIKLAVRLESGWSDRVRYMVVVYTSGRQDTEENILLGMDFTDKDSKSCSIGMVLPLWSDT
KIHLDGDGGFSVTTGGRSHVFKPVSVQAMWSALQILHKASDVSRRHNYFPGGMALTWMGF
YESCITSEQSCINEWNTMTDLETMRPDSPAMFVDRPTERERTECAIKAKLRSMMMFRDLE
NVTSKEIRVELEQHMSCNLKEYKEFLDNEMLLILGQMDKATLIFDHLYLGSEWNASNLEE
LRDCGVGYILNVTREIDNFFQGTFSYHNIRVFDEEATDLLAHWNETYNFIVRAKKNQSKC
LVHCKMGVSRSASTVIAYAMKEYGWTLEKAYNFVKQKRSIARPNAGFMKQLAEYEGILDA
SKQRHNKLWRPEGGEDIPDEASGQCCGGEDTPVEDEAWGGEGCSASPCRGLEVDALDPLN
YNYYFRRLSDTALDSEPSTPVRGPPLLGMERVFIEIEDVERDALLEDEGFPMAQLALPGE
GTAAQTCGGRLEPLEDMRLRLEFSTVEEEDEEEAQKEEAEMAALARTPAGGEGVTEDEER
KDQANVNRFNNENANNSNRLAAKRSCPAAFDDSASTGNPYKVKPSYQSCKDCLRLPPGRR
CERPAGGRNHRLNPTRHCGVVPTISIDPPGTHFTNTPTPHSPCALPATIARMEAYRQRLV
SPMSCEELPRDRHCSLETEDMDELQEEEEEEQEPKPGREAGTGVITELTFMKLSLEGERP
AGQPPGVELQPAGVEVDPPSGGVEPQQEQEALAQLQRTGLELGLVRQSADQLERLSGLAM
EGPLSGAWLSEQMDLSLAVEEMEVEGDVRVHSETHIPSTSCVVTAADLQMNTTPVSYPQW
STQTWTPVSSPHGSTLTRSLSSVSLDSNCGGRPGLVRPRTQEMETRMRLAGLTVPSLLKR
SSSLAKLGGLTFSTEDLSDLADDQAQLFFTVPPAL
NT seq 3168 nt   +upstreamnt  +downstreamnt
atgtattttttgcacatggatgtgctaagaagctataagggcggaggagattttgtgagg
aggccagtagactccagagagctactgagggagagatccagaatcaggatgcatcttgtg
gtggagccttcacaggaagccatgcttaccatgctgcctcactttgtgaagaacgcagtc
ctgagtaagagagagatctggcgaatcctcagtgagagcttcttcatggtcaaaggagct
gccctcttcctgcaacagggcaccaatgcacagggacccaagacccctacacaccacaaa
cacgcaggtgacttaccccgacacctgcaggtaatgattaacaccctccgctctgaggac
cgcatcaaactggctgtacggttagagagtggttggtctgaccgtgtgcggtacatggtt
gtggtctacaccagtggtcgacaggacacagaggagaatatcctgctagggatggacttc
accgataaggacagtaaaagctgctctattggcatggtgctaccgctatggagcgatacg
aagatccatttagatggagatggaggatttagtgtgaccacaggaggacgatcgcatgtc
ttcaagcctgtttctgtgcaggccatgtggtctgcgctgcagatcctccataaggcaagc
gatgtgtctcgcaggcacaactacttccccgggggtatggccctcacatggatgggcttc
tatgagagctgtatcacctccgagcagagctgcatcaacgagtggaacactatgaccgac
ctggagaccatgcggcccgactcacctgccatgttcgtcgaccggccaacggagagagag
agaaccgagtgtgcaatcaaagctaaactacgcagcatgatgatgttccgggacctggag
aatgtcacttccaaggagatccgtgtggagctggagcagcatatgagttgtaacctgaag
gagtacaaagagttcctcgacaatgagatgctgctgatcctgggtcagatggacaaagcc
acactcatctttgaccacctctacctgggctctgagtggaatgcctccaatctagaggaa
ctacgggactgtggtgtgggctacatcctcaacgtgaccagggaaatagacaacttcttc
cagggcacgttctcctaccacaatatccgggtgtttgatgaggaggccacagacctgctg
gcccactggaacgagacctacaacttcatcgtcagagccaaaaagaaccagtctaagtgt
ctggtccactgtaagatgggtgtgagccggtcagcctccacggtcatagcttatgccatg
aaggagtatggctggactctggagaaggcctacaactttgtgaagcagaagaggagcatt
gctcggcccaatgctggctttatgaagcagctggcagagtacgagggcatcctggacgct
agtaaacagcgccacaacaagctgtggaggcccgagggaggggaggacatcccagatgag
gcgtctggccagtgttgtggtggagaggatacccccgtggaggatgaggcctggggggga
gagggctgcagtgcctccccctgccggggcctggaggtggacgccctggaccctctcaac
tacaattactacttcagacggctgtcggacacagccctggacagcgagccctccacccca
gtgcgcggccctcccctgctgggcatggaaagggtgttcatcgagatcgaggatgtggag
agggacgcccttctggaggatgagggcttccccatggcccaactggctttgccaggggag
ggcactgccgcccaaacctgtgggggccgcctggagcccctggaggacatgaggctacgc
ctggagttcagcacggtggaggaggaggacgaggaggaggcgcagaaggaggaggcggag
atggccgccctggcccggacacctgcaggaggagagggagtgactgaggacgaggagagg
aaggatcaggccaacgtaaaccgcttcaacaacgagaacgccaataacagtaaccgcctg
gctgccaagcgcagctgccccgctgccttcgacgacagtgctagcacaggaaacccttac
aaagtgaagccctcctaccagtcctgtaaagactgcctgcgtctgccgccagggcggcgt
tgtgagcgcccggcaggaggccgcaaccaccgccttaaccccacacgccactgcggggtg
gtccccactatctccatagacccccctggcacccacttcaccaacacacccaccccccac
tcaccctgtgccctccctgccaccattgcccgcatggaggcctaccgccagcggctggtg
tcgcccatgagctgcgaggagctgccccgagacagacactgctccctggagacggaggac
atggacgagctacaggaggaagaggaggaagaacaggagccaaagccagggagggaggcg
gggactggagtcatcacagagctcacttttatgaagctcagcttggagggggagaggcca
gcgggtcagcctcctggtgtggagttgcagcctgctggggtggaggtggaccctcctagt
ggtggagtggagccacagcaggagcaggaggccctggcccagctacagaggacagggctg
gagctcgggctggtgaggcagagtgcggaccagctggagaggctctcaggactggccatg
gaaggtccactctcaggggcatggctgtctgagcagatggacctgagcttggcagtggag
gagatggaggtggagggggatgtaagggtgcattctgaaacccacatcccttctaccagc
tgtgtggtcacagccgcagacctccagatgaacaccaccccagtgtcgtacccccagtgg
tccacccagacttggacccctgtgtcctccccccatggctccaccctcacccggagctta
agcagtgtcagcctcgacagcaactgcgggggacgcccaggcctggtcaggccgcgcacc
caggagatggagacccgcatgaggctggccggcctgaccgtcccctccctgctcaaacgc
tctagctccctggccaaactgggagggctcaccttctccaccgaggacctctcagacctg
gctgatgatcaggcccagctgttcttcaccgtgcccccagccctctga

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