KEGG   Mesocricetus auratus (golden hamster): 101822775
Entry
101822775         CDS       T08306                                 
Symbol
Ssh1
Name
(RefSeq) protein phosphatase Slingshot homolog 1 isoform X1
  KO
K05766  protein phosphatase slingshot [EC:3.1.3.16 3.1.3.48]
Organism
maua  Mesocricetus auratus (golden hamster)
Pathway
maua04360  Axon guidance
maua04810  Regulation of actin cytoskeleton
Brite
KEGG Orthology (KO) [BR:maua00001]
 09140 Cellular Processes
  09142 Cell motility
   04810 Regulation of actin cytoskeleton
    101822775 (Ssh1)
 09150 Organismal Systems
  09158 Development and regeneration
   04360 Axon guidance
    101822775 (Ssh1)
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01009 Protein phosphatases and associated proteins [BR:maua01009]
    101822775 (Ssh1)
Enzymes [BR:maua01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.3  Phosphoric-monoester hydrolases
    3.1.3.16  protein-serine/threonine phosphatase
     101822775 (Ssh1)
    3.1.3.48  protein-tyrosine-phosphatase
     101822775 (Ssh1)
Protein phosphatases and associated proteins [BR:maua01009]
 Protein tyrosine phosphatases (PTPs)
  Class I PTPs (Dual specificity phosphatases)
   Slingshots
    101822775 (Ssh1)
SSDB
Motif
Pfam: PH_SSH1-like_1st DSPc DEK_C Y_phosphatase PTP-SAK
Other DBs
NCBI-GeneID: 101822775
NCBI-ProteinID: XP_005078987
UniProt: A0A1U7QHD0
LinkDB
Position
Unknown
AA seq 1036 aa
MALVTLQRSPTPSAASSSASNSELEAGSDEERKLNLSLSESFFMVKGAALFLQQGNSPQG
QRGLQHPHKHAGDLPQHLQVMINLLRCEDRIKLAVRLESVWTDRVRYMVVVYTSGRQDTE
ENILLGVDFSSKESKSCTIGMVLRLWSDTKIHLDGDGGFSVSTAGRMHIFKPVSVQAMWS
ALQVLHKACEVARRHNYFPGGVALIWATYYESCIGSEQSCINEWNAMQDLESTRPDSPAL
FVDKPTEGERTERLIKAKLRSIMMSQDLENVTSKEIRSELEKQMNCNLKEFKEFIDNEML
LILGQMDKPSLIFDHLYLGSEWNASNLEELQGSGVDYILNVTREIDNFFPGLFAYHNIRV
YDEETTDLLAHWNEAYHFINKAKRNHSKCLVHCKMGVSRSASTVIAYAMKEFGWPLEKAY
NYVKQKRSITRPNAGFMRQLSEYEGILDASKQRHNKLWRQQPAGDTAAEPNELLPETLDD
ALDTQLPCLDDTTPQPGLPGSQAPAGGPSLPCCFRRLSDPLLPHHDDAGGLVHLEDLERD
ALLEDAAQPGEAHKLVQHPQEGARLCEKDIKRKLEFGSPKACGGSLPQVEEMEKGVGQRA
GRWRRASTQLDRSLLDQENLNNNNSKRSCPDDFEGDAVFGILSKVKPSYSSCADCMYPAA
GGAPEAFAEWHEEPSAPAICTQPAFLPHVTSSPMAHTSSRSRAPERLASGPANNPPSLLP
AGSRKPDSGAGACPEPPTSLLEPSRETSKVPPKSLLLKNSHCDKNASSMEVVKEELSAKR
DPKPAKDLRLLFSNEAEKPTTNSYLMQHQESIIQLQKAGLVRKHTKELERLKSLPSDPPS
TCRDSATSRLEASIPEEGQEPEHSALSNQAGIEEKPPEGALVKSPTPTLLRMDHTSSFSK
DFLKTVCYTPTSSSMSSNLTRSSSSDSLHSVRGKPGLVKQRAQEIETRLRLAGLTVSSPL
KRSHSLAKLGSLNLSTEDLSSEADTSTIADSQDAKCGHSSLLYEPQATPRDPIAACKASG
KSVPENLKSLSKLSKS
NT seq 3111 nt   +upstreamnt  +downstreamnt
atggccttggtgaccctgcagcgctctcccacgcccagtgccgcatcgtcctccgccagc
aacagcgagttggaggctggcagcgatgaggaacggaagttgaacctcagcttgagcgag
agctttttcatggtgaaaggagcagccctcttcctacagcagggaaacagccctcagggc
cagcgcggccttcagcaccctcataagcatgcaggggacctgccccagcacctccaagtg
atgatcaaccttctacgctgtgaagacagaatcaagctggctgtacgcctagagagcgtc
tggaccgaccgtgtccgctacatggttgtggtgtacaccagcgggcgccaggacaccgag
gagaacattttgctgggagttgacttttccagtaaggagagcaaaagctgcaccatcggg
atggtccttcgtctgtggagcgacaccaagatccaccttgatggggacggaggcttcagt
gtgagcacagcaggcaggatgcacatcttcaagcccgtgtcggtccaggccatgtggtct
gccctgcaagtgcttcacaaggcctgtgaggtggcacggaggcacaactacttccctggg
ggagtggcactcatctgggccacctactatgagagctgcatcggctctgagcagagctgc
attaacgagtggaatgccatgcaggacctggagtccacacggcctgactccccagcgctg
tttgtggacaagccgactgagggggaaagaactgagcgcctcattaaagccaaactccgg
agcatcatgatgagtcaggacctcgaaaacgtgacctctaaggaaatccgcagtgagctg
gagaagcaaatgaactgcaacctgaaagaattcaaggagttcatcgataacgagatgttg
ctcatcttgggacagatggacaagccttcccttatcttcgaccacctttaccttggctcc
gagtggaatgcatcgaatctggaggaactgcagggctcaggagttgactacattttaaat
gtcactagagaaatagacaatttcttccctggcttgtttgcgtatcacaacatccgagtc
tacgacgaggagaccacggaccttttggcccactggaatgaagcatatcattttataaac
aaagcaaaaaggaatcattccaagtgcctggtccactgcaaaatgggagtcagccgatct
gcatccacggtcatagcctatgcgatgaaggaatttgggtggcccctggagaaggcgtat
aactatgtgaaacagaaacgtagcatcacgcggcccaatgctggctttatgaggcagctg
tctgagtacgaaggcatcctggatgcaagtaagcagcggcacaacaaactgtggcgacag
cagcctgcaggtgacaccgcagcagagcccaatgagcttttgccggagaccctggatgat
gccctggacacccagctgccgtgcttggatgataccaccccccagcccgggctcccagga
agccaggccccagcaggaggaccctctctcccctgttgtttccgaagactctcagacccc
ctcctccctcaccacgatgacgcaggcggcctggtccacttggaggaccttgagcgggat
gccctgttggaagacgcagctcagccgggggaggcacacaagctggtccagcatcctcag
gaaggagccaggctctgtgaaaaggacataaagaggaagctagagttcgggagccccaaa
gcctgtggtggctccttgccacaggtggaggagatggagaaaggggttggccagagagca
gggaggtggaggcgggcgtctacccagctcgacagaagtttgcttgatcaggagaacctg
aataataacaacagtaagaggagctgccctgacgactttgagggagatgctgtgtttggg
atcctcagtaaagtgaagccttcctactcgtcctgtgctgactgcatgtaccctgcagct
ggcggggctcccgaggccttcgcagaatggcacgaagaacccagcgctcctgccatctgc
acccagccagccttcctgccccatgtcacatcttccccgatggcccacacgagcagcagg
tcccgagctccagagaggctggcctctggtccagccaacaaccccccatccctactacca
gcaggctcaaggaagccagactctggagctggggcttgcccagaaccgccaacaagcctt
ctagagccttccagagaaacctcaaaagtccctccaaagtccctcctgttgaagaattct
cactgtgataagaacgcctccagtatggaagtggtgaaggaagaattgtcagcgaagaga
gatcctaagccggctaaggacctgaggcttctgttcagtaacgaggctgagaaaccgacc
accaacagctacctgatgcagcatcaggagtccatcattcagctacagaaggcaggcctg
gtccggaagcataccaaagagctggagaggttgaagagcctgccttcagacccgccgtct
acctgcagggacagcgccaccagcaggctggaggctagcatccctgaagagggccaggag
cccgaacactcagccctgagcaaccaagcaggcattgaagagaaacctccagaaggagcc
ttggtgaaaagccctactcctaccctcctccgcatggatcacaccagtagcttctcaaaa
gacttcctgaagaccgtgtgctacacccccacctcctcctccatgagttccaacctgact
cggagctccagcagcgacagcctccacagtgtccgagggaagccagggctggtgaagcag
cgggcacaggagatcgagacgcgactccgacttgcgggcctcactgtgtcctctccactg
aagcgttcccactccctcgccaaactgggaagtctcaacttatccaccgaggacctgtcc
agcgaggctgacacgtccaccattgccgactcgcaggatgccaagtgtggtcactcttcc
ttgttgtacgaaccccaggccaccccaagggaccccattgcagcctgtaaggcctcaggg
aaatcggtcccagaaaacttgaaaagcctgtcaaagttgagtaaaagctga

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