KEGG   Petaurus breviceps papuanus (sugar glider): 138162513
Entry
138162513         CDS       T10505                                 
Symbol
SSH2
Name
(RefSeq) protein phosphatase Slingshot homolog 2 isoform X1
  KO
K05766  protein phosphatase slingshot [EC:3.1.3.16 3.1.3.48]
Organism
pbrv  Petaurus breviceps papuanus (sugar glider)
Pathway
pbrv04360  Axon guidance
pbrv04810  Regulation of actin cytoskeleton
Brite
KEGG Orthology (KO) [BR:pbrv00001]
 09140 Cellular Processes
  09142 Cell motility
   04810 Regulation of actin cytoskeleton
    138162513 (SSH2)
 09150 Organismal Systems
  09158 Development and regeneration
   04360 Axon guidance
    138162513 (SSH2)
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01009 Protein phosphatases and associated proteins [BR:pbrv01009]
    138162513 (SSH2)
Enzymes [BR:pbrv01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.3  Phosphoric-monoester hydrolases
    3.1.3.16  protein-serine/threonine phosphatase
     138162513 (SSH2)
    3.1.3.48  protein-tyrosine-phosphatase
     138162513 (SSH2)
Protein phosphatases and associated proteins [BR:pbrv01009]
 Protein tyrosine phosphatases (PTPs)
  Class I PTPs (Dual specificity phosphatases)
   Slingshots
    138162513 (SSH2)
SSDB
Motif
Pfam: PH_SSH1-like_1st DSPc DEK_C PTP-SAK Y_phosphatase
Other DBs
NCBI-GeneID: 138162513
NCBI-ProteinID: XP_068945856
LinkDB
Position
Unknown
AA seq 1439 aa
MLLTQSCTDLVTSSGFPSLACGLIWITEMILFALQSSHLEESESAILCCECEESEIFTDF
NEADSGEEECRSQPRSISESFLTVKGAALFLPRGNGSSTPRISHRRNKHAGDLQQHLQAM
FILLRPEDNIRLAVRLESTYQNRTRYMVVVSTNGRQDTEESIVLGMDFSSNDSSTCTMGL
VLPLWSDTLIHLDGDGGFSVSTDNRVHIFKPVSVQAMWSALQSLHKACEVARSHNYYPGS
LFLTWVSYYESHINSDQSSVNEWNAMRDVQSHRPDSPALFTDIPTERERTERLIKTKLRE
IMMQKDLENITSKEIRTELEMQMACNLREFKEFIDNEMIVILGQMDSPTQIFEHVFLGSE
WNASNLEDLQNRGVRYILNVTREIDNFFPGVFEYHNIRVYDEEATDLLAYWNDTYKFISK
AKKHGSKCLVHCKMGVSRSASTVIAYAMKEYGWNLDRAYDYVKERRTVTKPNPSFMRQLE
EYQGILLASKQRHNKLWRSHSDSDLSDHHEPICQSGMELNRKEITTSADQITEAKTVESH
PPIPPVFVEHRPPQDGNTHGLCTKERMICLEFTSREFHTGQIEDELNLNNINGCSAGCCL
SESKFPLDNCHTSEALIQPENSLQIPTQFPDLTVEDLETDALKTDISVHLLPMEELTSRL
RDLPVSPEPSSPGPQPGSQAEASDFSTDRIDFFSALEKFVELSQETRPRSCSHSRTEEAG
GGRNGGVRLSVLETAPSEATPEGPRSSSSGNTPHASGTSSMDEDQPKDVSEVVSPEDVIQ
SHPENAISVKEIITEIESINQGIGQCQQKLDILSNPCQTPKRNTIHELPFFEAQASETKA
IVQLDQKEGVVQPELVKEDQEAMLIAPTPLEDVEEGDLTEEDPELRGPGQTPAPKWCPGS
VRRATLEFEERLRQEQEHHSTTPLCTLPSRKNSKNDSAVPDGTPRSKNEEPAPEPALGPK
ERESSKAKTKDNMTEAFPPQPDQVTDTQASVPVGFHPSPAFQECPLADVGAKQGEVSKKK
PAMDHIPKRFEIIEYTPMVTSPDLTFDLATTEKNGEPVLKTVMVEKSITMMCTVDENLNT
TLCPELASLRPQVLPLLNPASLKHDGAPQAAFTLGSPEEDSSPPSPAGMAPFVSPVGHLL
SAGLDYTHPQAVLHLEGVTEESSTTDSEPSSEQSCCAERPSSSTLGLPREAESALGQWGS
EDLRGVGQPAENAGEIDKMLDPSSPCGLPHSSSSDSIKNLSHSTRVVKKHSEEVESRGLL
QAGLPRPSQMKRSASLMSLGHQDLRQRALSAGEVVSPGALHPDLHQPFIRTGSGGSPLEE
PLARLGPISQHPEPTVYFVEQVKMAECMAQSKPVERPLAQYAKELGSAQQGWLPSAGHEL
TSSGGGLSQAQRQQGSDSPCPSLGLTVAALPQHGRTQPLRRLKKPSDKKRTPNPFYNTM
NT seq 4320 nt   +upstreamnt  +downstreamnt
atgcttctcacccagtcctgcactgatttagtcacctcttctggctttccttcacttgct
tgtggacttatttggatcactgaaatgatcttgtttgcattgcagagctctcatttggaa
gaaagtgaatcagcgatactttgctgtgaatgtgaagaatcagaaatctttactgatttc
aatgaggcagacagtggggaggaggaatgccggtcccagcccaggagcatcagcgaaagt
ttcctcactgtgaaaggtgcagccctcttcctacctcggggaaatgggtcgtccacaccc
agaatcagtcacaggcgcaacaagcatgcaggtgatcttcagcagcacctgcaggccatg
ttcatattactccgccctgaagacaacattaggctggctgtgagattggaaagcacgtac
cagaaccgcacaaggtatatggtggtggtgtcaaccaatggcagacaagacactgaagaa
agcattgtccttgggatggacttctcctctaatgacagcagcacttgtaccatgggtctg
gtcctgcctctctggagtgacaccctcattcatttggatggtgatggtgggttcagcgtt
tcaacggataacagagttcacatattcaaacccgtatccgtgcaggcaatgtggtctgca
ttacaaagtttacataaagcctgcgaagtggccagaagtcataattattacccgggcagc
ctattcctaacctgggtgagttactatgagagccatatcaactctgaccagtcatcagtc
aacgagtggaacgccatgcgagatgtgcagtcccaccggccagattcaccagccctcttt
acagacatccctactgaacgagaacgcacagaaaggttaatcaagaccaaactaagggaa
attatgatgcagaaggatttggaaaacatcacgtcgaaagagatacgaacagagttagaa
atgcagatggcgtgcaacctgcgggagttcaaagagttcatagataatgagatgatcgtg
atcctcggacagatggacagccccacccagatctttgagcatgtgtttctgggatcagaa
tggaacgcctccaatttggaagacctacaaaaccgaggagtaagatacatcttgaatgtt
actcgagaaatagataacttcttcccaggagtctttgaatatcataacatccgggtgtat
gatgaggaagccacagacctactggcctactggaatgacacttacaagttcatctccaaa
gccaagaaacatggctctaaatgcctcgtgcactgcaagatgggggtgagccggtctgcc
tccaccgtgattgcttatgctatgaaggagtatggctggaacttggaccgtgcctatgac
tatgtgaaagaaaggcgtactgtcaccaagcccaaccctagcttcatgaggcagctggag
gagtaccaagggatcctgctggccagcaaacaacgtcacaacaagctttggcgatcccac
tcagatagtgacctctcggaccaccacgagcccatctgccagtcagggatggagcttaac
cggaaggagattaccacttcagcagaccagatcaccgaggcgaagactgtggaaagccat
cccccaatcccccctgtctttgtggaacacaggcccccccaagatgggaatacacacgga
ctatgcaccaaagagagaatgatctgcttagagttcacgtcgagagaatttcacacaggg
caaattgaggatgaattaaatctcaataacattaatgggtgttcagcagggtgttgcctg
agtgaatccaaatttcctcttgacaattgccacacatctgaagccttaatccagcctgaa
aactccttgcagatacccacccagttcccagacttaacagtggaagatctggagacagat
gcgctgaagacagatatcagcgtccacttactccccatggaagaactgacatctcgactg
agagacctgccagtgtctccagagcccagctctcctggtccccagcccggttcccaggct
gaggcatcagacttcagtaccgaccgcattgattttttcagtgccctagagaagtttgtg
gagctctcccaggagactcgcccccgctcctgctcccactccaggaccgaggaagcaggt
ggggggaggaatggcggagtccgactgtcagtgttggaaacagccccttccgaggcaacc
cccgaggggcccagaagcagctcctcaggcaacactccacatgcatcaggaacatcttcc
atggatgaagaccagccaaaggatgtctctgaagtagttagcccagaagacgtgatacaa
tcccacccagaaaatgcaatttcagtgaaagaaattatcaccgaaattgaatccatcaat
caaggaatcgggcagtgtcaacagaagctggatatcctgtccaacccatgccaaacacca
aagagaaacaccatccatgaactgccattctttgaggcccaggcctctgagactaaagct
atagtccagctggaccagaaggagggagtagtgcagcccgagctggtaaaggaagaccag
gaggccatgctgattgcaccgacccctctggaagacgtagaagaaggggatctgactgag
gaagacccagagttacgaggcccaggtcagaccccagcacccaaatggtgccctgggtct
gtgaggcgggcgactttggagtttgaagaacgattgagacaggagcaggaacaccatagt
actacccccctctgcacgctgcccagtcgcaagaactccaagaacgattctgctgtgcct
gatggaacaccaagaagcaagaatgaagagcccgctccagagcctgccttggggcccaag
gagcgggagtcgagcaaggccaagacaaaagacaacatgacagaggccttccctccccag
cctgaccaggtgactgacacacaggcatctgtgccagtagggttccaccccagcccagct
tttcaagagtgtccactggcagacgttggagcaaagcagggcgaggtgtccaagaaaaag
cctgccatggaccatattcccaaaaggtttgaaatcatcgaatacactcccatggtgaca
tctcctgacttaacatttgacttggctacaacagaaaagaatggagaaccagtgctgaag
acagtcatggtggagaaatccatcacaatgatgtgtactgtggatgaaaatctcaacacc
accctgtgcccagagctcgcttctctgcgtcctcaagtgctacctctgctgaatcctgca
tctcttaagcatgatggggctccccaagctgccttcactctgggcagtcctgaagaagac
tctagtcctccttctcctgcagggatggctccttttgtgagtcctgtaggacacttgctg
tcagctggtttggattatacacatccccaagccgtccttcacctagaaggggtgactgag
gaaagcagcaccacggacagtgagccctcatcagagcagagctgctgtgctgaaaggccc
tccagcagcacattggggctccccagggaagctgagagtgccctgggccagtggggcagc
gaagacctcagaggggtcggccaacctgctgagaacgctggggagatagacaagatgctg
gacccctcttccccctgtggtctcccccatagttccagtagtgacagtataaagaacctg
agccacagtaccagggtggtgaaaaagcattcagaagaagtagagtctcgaggccttcta
caagcagggctccccagaccatcccagatgaagcgctcggcttctctaatgagcctcggt
caccaggatctgcgtcagagagctttgtctgcaggagaggtggtgtctccaggagccctc
catcctgacctccaccagcccttcatcaggacaggctccggggggtcccccctggaggag
cccttggcaaggcttggacccatttcccagcacccagagcccaccgtgtattttgtagaa
caagtgaaaatggcggagtgtatggcacagagcaagcctgtggagcggcctctggcgcag
tatgccaaagagctggggtcagctcaacagggttggcttcccagtgcgggacacgaattg
actagttctggcgggggcctctcccaggcccagagacagcaggggtcagactctccatgc
ccaagcctggggctgactgtagccgcattgccgcagcatgggaggactcagcctcttagg
agactcaaaaagcccagcgacaaaaagcggacgcccaatcccttctataataccatgtga

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