KEGG   Physeter macrocephalus (sperm whale): 102989527
Entry
102989527         CDS       T06011                                 
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
pcad  Physeter macrocephalus (sperm whale)
Pathway
pcad04360  Axon guidance
pcad04810  Regulation of actin cytoskeleton
Brite
KEGG Orthology (KO) [BR:pcad00001]
 09140 Cellular Processes
  09142 Cell motility
   04810 Regulation of actin cytoskeleton
    102989527 (SSH2)
 09150 Organismal Systems
  09158 Development and regeneration
   04360 Axon guidance
    102989527 (SSH2)
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01009 Protein phosphatases and associated proteins [BR:pcad01009]
    102989527 (SSH2)
Enzymes [BR:pcad01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.3  Phosphoric-monoester hydrolases
    3.1.3.16  protein-serine/threonine phosphatase
     102989527 (SSH2)
    3.1.3.48  protein-tyrosine-phosphatase
     102989527 (SSH2)
Protein phosphatases and associated proteins [BR:pcad01009]
 Protein tyrosine phosphatases (PTPs)
  Class I PTPs (Dual specificity phosphatases)
   Slingshots
    102989527 (SSH2)
SSDB
Motif
Pfam: PH_SSH1-like_1st DSPc DEK_C PTP-SAK Y_phosphatase
Other DBs
NCBI-GeneID: 102989527
NCBI-ProteinID: XP_007123640
Ensembl: ENSPCTG00005007991
UniProt: A0A2Y9FI33
LinkDB
Position
14:93881442..94130082
AA seq 1449 aa
MALVTVQRSPTPSTTSSPCASSSHLEDSESAALLCCEREESEIFSDSNEADSGEEECRSQ
PRSISESFLTVKGAALFLPRGNGSSTPRISHRRNKHAGDLQQHLQAMFILLRPEDNIRLA
VRLESTYQNRTRYMVVVSTNGRQDTEESIVLGMDFSSNDSSTCTMGLVLPLWSDTLIHLD
GDGGFSVSTDNRVHIFKPVSVQAMWSALQSLHKACEVARMHNYYPGSLFLTWVSYYESHI
NSDQSSVNEWNAMQDVQSHRPDSPALFTDIPTERERTERLIKTKLREIMMQKDLENITSK
EIRTELEMQMVCNLREFKEFIDNEMIVILGQMDSPTQIFEHVFLGSEWNASNLEDLQNRG
VRYILNVTREIDNFFPGVFEYHNIRVYDEEATDLLAYWNDTYKFISKAKKHGSKCLVHCK
MGVSRSASTVIAYAMKEYGWNLDRAYDYVKERRTVTKPNPSFMRQLEEYQGILLASKQRH
NKLWRSHSDSDLSDHHEPICKAGLELNKKEITTSADQIAEVKTMESHPPIPPVFVEHVVP
QDENQKGLCTKERMICLEFTSREFHAGQIEDELNLNDINGCSSGCCLNESKFPLDNCPAS
KALIQPGQDPEMANKFPDLTVEDLETDALKADMNVHLLPMEELTSRLKDLPMSTDPDSPS
PQPSCQAEVSDFSTDRIDFFSALEKFVELSQETRSRSFSHSRMEELGGGRSESCRLSVVE
VTPSEATADDQRSSSRSNTPHASEESSIDEEQSKAISELVSPDIFMQSHSENAISVKEIV
TEIESISQGVGQIQVKGDILSIPCHTPKKHIIHELPLERAQAAENKPGNLEQSEGSCTAQ
PELAKDSGKWEPEGCPVAHSSTTELEEEEPAEGEQELWGPGVPPGANWYPGSVRRATLEF
EERLRQEQEHHGAAPACTPSSTRKNPRNDSSSVADLAPKGKGDEATLEHAFVPKEPEMSK
GKGKCGGSEAGSVPHSEQHAIVPAPELLEPHPLPAPQKCPGSGPRTQQEGVLKEQRTSVS
CQGPETPAVPPPLPKKIEIIEYTHTVTTPDHGPEGETATSEKSGEQGLRKVKVEESITVL
CALDENLNQTLSPDQASLHPRALPLPHSSSPEREHGRPAHPAPTLSGREDWGNSPAAALE
TAAPFVSHSSHVLGASLAYLHPQTVVHLEGFTEQSSTTDSEPSAEKGSWEESQEGPPSRG
SEVPYQGSRLSSEDLCLISKPGDGVGEQREKPGPSPVACQLPHSSSSDGIKGLSRSPRGA
KEHAEEIESRAISQVGLPKPSQMRRSASLAKLGYLDLCKDCLPESGPVCSESSHLKLLQP
FIRMGSGMEAQGPPENPDAPQNLEPTKYFIEQLKTTECIAQSKPVERPLVQYAKEFGSSQ
QCLLPRAGPELTSSEGGLPLVQTQGLQGAGPAPGLAVVPRQQHGRTHPLRRLRKANDKKR
TTNPFYNTM
NT seq 4350 nt   +upstreamnt  +downstreamnt
atggctttggtcacggtccagcggtcgcctacccccagcactacctccagcccctgcgcc
tcgagctctcatttggaagacagtgaatccgcagcgttactttgctgtgaacgtgaagaa
tcagaaatctttagtgattccaatgaggcagacagtggggaggaggaatgccgatcacag
ccccggagcatcagcgagagctttctaactgtcaaaggtgctgccctttttctgccacgg
ggaaatggctcatccacaccaagaatcagccacagacgcaataagcatgcaggtgacctc
caacagcatctccaagcaatgttcatattactccgcccagaagacaacatcaggctggct
gtaagactagaaagtacttaccagaatcgaacacgctatatggtagtggtttcaactaat
ggtagacaagacactgaagaaagcatcgtcctaggaatggatttctcctctaatgacagt
agcacttgtaccatgggcttagtcctgcctctctggagtgacaccctaattcatttggat
ggtgatggtgggttcagcgtatcaacagataacagagttcacatattcaaacctgtgtct
gtgcaggcaatgtggtctgcattacagagtctacacaaggcttgtgaagtcgccagaatg
cataactactaccctggcagcctatttctcacctgggtgagttattatgagagccatatc
aactcagatcaatcctcagtcaatgaatggaatgctatgcaggatgtgcagtcccaccgg
cctgactctccagctctttttacagacataccaactgaacgtgagcgaacagaaaggcta
attaaaaccaaattaagggagattatgatgcagaaggatttggagaatatcacatccaaa
gagatacgaactgaattggaaatgcaaatggtgtgcaacttgcgagaattcaaggaattt
atagataatgaaatgatagtgatacttggtcagatggatagccctacacagatatttgag
cacgtgttcttgggctcggaatggaatgcctctaacttagaggatttacagaaccgaggg
gtgcgatatatcttgaatgtcactcgagagatagataacttcttcccaggagtctttgag
tatcacaacattcgggtatatgatgaagaggcaacagatctcctggcttactggaatgac
acttacaaattcatctctaaagcaaagaaacacggatctaaatgccttgtgcactgcaaa
atgggggtgagtcgctcagcctccactgtgattgcctacgcgatgaaggagtatggctgg
aatctggaccgagcctatgactacgtgaaggaaagacgaacagtgaccaagcccaacccc
agcttcatgagacagctggaagagtatcaggggatcttgctggcaagcaaacagcggcat
aacaagctctggcgatctcattcagatagtgacctctcggaccaccacgaacccatctgc
aaagcaggactagaactcaacaagaaggagatcaccacctcagcagaccagattgccgag
gtgaagaccatggagagtcacccacccatacctcccgtcttcgtggaacatgttgtccca
caggatgaaaatcagaaaggcctgtgtaccaaagaaagaatgatctgcttggagtttact
tctagggaatttcatgccggacagattgaagatgaattaaacctaaacgacatcaatgga
tgctcatcagggtgttgtctcaatgaatcaaaattccctcttgacaactgccctgcatcc
aaagccttaatccaacctggacaggacccagaaatggccaacaagttcccagacttgacg
gtggaagatttggagacagacgcactgaaagcagacatgaacgtccacttactgcccatg
gaagaattgacatcccgcctgaaagatctccccatgtctactgatcctgactcaccgagc
ccccaacccagttgccaggctgaagtctcagatttcagtacagatcgcattgactttttt
agcgcgctagagaagtttgtagagctttcccaagaaacccggtcccgatctttttctcac
tcaaggatggaggaactgggtggaggaaggagcgagagctgtcgactgtcagtggtcgaa
gtcaccccttccgaagcgacagctgatgaccagagaagcagctctcggagtaatactccc
catgcatctgaagaatcttcaatagatgaggaacagtcaaaggcaatctcagaactggtc
agcccagacatcttcatgcagtctcactcagaaaatgcaatttcagtcaaagaaatcgtc
actgagattgaatccatcagtcaaggagttggacagattcaagtgaaaggcgacatccta
tccattccatgccatacaccaaagaagcacatcatccatgagctgccccttgagagggcc
caagccgcagagaacaaacctggaaatctggagcagagtgaaggttcctgcacagcccag
cctgaactagccaaagactcagggaagtgggagccagaagggtgcccagtggcacactca
tccaccacagagctggaagaagaggaaccagctgagggggaacaagagctctggggccca
ggggtgcccccgggtgccaattggtaccccgggtccgtgaggcgagccaccttggagttt
gaggagcgcttgcggcaggagcaagagcaccacggcgccgcccctgcctgcaccccgtcg
tccactcgtaagaatcccaggaatgattcttcttctgtggcagatctagcacccaaaggg
aagggtgatgaagccaccctagaacatgcatttgtccccaaggaaccagagatgagcaag
ggcaaagggaaatgcggtgggtctgaggctggctccgtaccccattctgagcagcatgcc
atcgttccagcacccgagctgctggagcctcacccgttgccagctcctcagaagtgccca
gggtcaggtcccagaacccagcaggaaggagtcctgaaggagcagaggacttcggtctca
tgccagggacctgagacgccagcagtccctccgcctcttcccaagaagatagaaatcatt
gaatacacccacacagtcacgacacctgatcacgggccagagggggaaacagccaccagc
gaaaagagtggggagcagggactgaggaaagtgaaagtggaggagtccatcactgtcctc
tgtgcgctggatgaaaatctgaaccagacactgagccccgaccaggcttctctgcacccc
agagcgctacctctgcctcattcttcctctccagagcgtgagcacggcaggcccgcccac
ccagcccccaccctgagcggccgtgaagactggggcaacagcccagccgctgccctggag
acagcagcgccttttgtcagtcactcaagccacgtacttggtgccagcttggcttacctg
cacccccagacggtggttcacctggaaggcttcacagagcaaagcagcaccacagacagt
gagccctctgcagagaagggcagctgggaggaaagtcaggagggccccccctccaggggc
agtgaagtgccatatcagggctcccggttaagtagcgaagacctgtgtttaattagcaaa
cccggtgacggtgttggggagcaacgggaaaaaccgggcccatcacctgtagcctgtcag
ctcccacacagctctagtagcgacggtataaagggtctcagtcgcagcccccgtggggcg
aaggaacacgctgaagaaatcgagtcccgagcgatttcccaggtagggctccccaaacca
tcgcaaatgaggcgttcagcttccctcgccaagttaggttacctggacctctgtaaagac
tgtttaccagagagcgggcctgtctgctctgagtcctctcatctcaaactgcttcagccc
ttcatcagaatgggctcaggaatggaggcccaggggcccccagaaaacccagatgctccc
cagaacctagagcccaccaagtatttcatagagcaactcaaaacaacagagtgtatcgca
cagagcaagccagtggagaggccccttgtacagtatgccaaagaatttggttccagtcag
cagtgtttgctccccagggcaggacctgaattgactagttctgaaggaggccttcctttg
gtacagacccagggactgcagggtgcaggcccagctccagggctggctgtagtgccccgt
cagcagcacggcagaactcaccctctaaggagactgagaaaagcaaatgataaaaaacgg
acaaccaaccccttctataataccatgtga

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