Myotis davidii (David's myotis): 102760053
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Entry
102760053 CDS
T02992
Symbol
SSH1
Name
(RefSeq) slingshot protein phosphatase 1
KO
K05766
protein phosphatase slingshot [EC:
3.1.3.16
3.1.3.48
]
Organism
myd
Myotis davidii (David's myotis)
Pathway
myd04360
Axon guidance
myd04810
Regulation of actin cytoskeleton
Brite
KEGG Orthology (KO) [BR:
myd00001
]
09140 Cellular Processes
09142 Cell motility
04810 Regulation of actin cytoskeleton
102760053 (SSH1)
09150 Organismal Systems
09158 Development and regeneration
04360 Axon guidance
102760053 (SSH1)
09180 Brite Hierarchies
09181 Protein families: metabolism
01009 Protein phosphatases and associated proteins [BR:
myd01009
]
102760053 (SSH1)
Enzymes [BR:
myd01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.3 Phosphoric-monoester hydrolases
3.1.3.16 protein-serine/threonine phosphatase
102760053 (SSH1)
3.1.3.48 protein-tyrosine-phosphatase
102760053 (SSH1)
Protein phosphatases and associated proteins [BR:
myd01009
]
Protein tyrosine phosphatases (PTPs)
Class I PTPs (Dual specificity phosphatases)
Slingshots
102760053 (SSH1)
BRITE hierarchy
SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
PH_SSH1-like_1st
DSPc
DEK_C
Y_phosphatase
PTP-SAK
Motif
Other DBs
NCBI-GeneID:
102760053
NCBI-ProteinID:
XP_015418307
LinkDB
All DBs
Position
Un
AA seq
951 aa
AA seq
DB search
MAASMAVGTAPWTELNPSLSESFFMVKGAALFLQQGSSPQGQRSLQHPHKHAGDLPQHLQ
VMINLLRCEDRIKLAVRLESAWAERVRYMVVVDSSGRQDTEESILLGVDFSSKESKSCTI
GMVLRLWSDTKIHLDGDGGFSVSTAGRMHVFKPVSVQAMWSALQVLHKACEVARRHNYFP
GGVALLWATYYESCIGSEQSCINEWNAMQDLESTRPDSPALFVDKPTEGARTERLIKAKL
RSIMMSQDLENVTSKEIRNELEKQMNCNLKEFKEFIDNEMLLILGQMDKPSLIFDHLYLG
SEWNASNLEELQGSGVDYILNVTREIDNFFPGLFAYHNIRVYDEETTDLLAHWNEAYHFI
NKAKRNHSKCLVHCKMGVSRSASTVIAYAMKEFGWPLEKAYNYVKQKRSITRPNAGFMRQ
LSEYEGILDASKQRHNKLWRQQTESRLQQPVGDLAGSGDFLPETLDDAREARLSCLDDAA
QPGFPGGGGPSLSCCFRRLSDPLLRSPSDETGGLVQLDDLEKDALLEEAAQPPAAPTPAR
PPQEGPGPCEKEVKKKPEFGSPKAHRGPLPAVEEMEREEAPGAGRWGRSPAQLDKSLLNR
ENLNNNNSKRSCPDDFEHDALFGILNKVKPSYKSCADCMYPTASRAPEAFGERRETPGAP
AICTQPTFLAAGPRRPDPGGSGPRAAPEPPASLLEPSRETPKVLPKALLLKNSHCDKSPP
GMEVVKEESPPKKDVKPAKDLRLLFSKETEKPSAHSYLMQHQESIIQLQKAGLVRKHTKE
LERLKGATPIPPEGASLKSPSPFLCRLDHTSHFSKDFLKTICYTPTSSSMSSNLTRSSSS
DSIHSVRGKPGLVKQRTQEIETRLRLAGLTVSSPLKRSHSLAKLGSLDFSTEDLTSEADL
STIADSQDAKSSEASFLHEPQAAPRNPAAPSKPSGKPAPENLKSSSWLSKS
NT seq
2856 nt
NT seq
+upstream
nt +downstream
nt
atggcggccagcatggcagtgggcacagcaccctggactgagttaaaccccagcttaagt
gagagctttttcatggtgaaaggagcagccctcttcttgcaacagggaagcagcccccaa
ggccagcgaagcctgcagcatccccacaagcacgcgggtgacttgccccaacatctgcaa
gtgatgatcaacctgctgcggtgtgaagatagaatcaagctggccgtgcgcctggagagc
gcctgggcagagcgggtccggtacatggtggtggtggacagcagcgggcgccaggacacg
gaggagagcatcttgctgggcgtcgacttttccagcaaggagagtaaaagctgcaccatt
gggatggttctccgactgtggagcgacacaaaaatccacctcgatggcgacggtggcttc
agcgttagcacagcaggaaggatgcacgtcttcaagcccgtatctgtccaggccatgtgg
tccgccctgcaggtccttcacaaggcctgcgaagtggcacgaaggcacaactacttcccc
gggggtgtggctctcctctgggccacctactacgagagctgcatcggctccgagcagagc
tgcatcaacgagtggaacgccatgcaggacctggagtccacgcggcccgactccccggcc
ctgtttgtcgacaagccaacggaaggggccaggaccgagcgcctcatcaaagccaagctc
cgcagcatcatgatgagccaggacctagagaacgtgacctccaaagagatccggaacgaa
ttggagaaacagatgaactgtaacttgaaagaattcaaggaattcatagacaacgagatg
ctccttatcctgggacagatggacaagccctccctcatcttcgatcacctttacctcggc
tctgaatggaatgcatccaatctggaggagctgcagggctcaggtgttgactacatctta
aatgtcactagagaaatagataatttcttccctggcttatttgcatatcacaacatccga
gtctatgatgaagagacaacagaccttcttgcccactggaacgaggcgtaccactttata
aacaaagcaaagaggaaccactccaaatgcctggtacattgcaaaatgggtgtcagccgc
tccgcctccacggtcatcgcgtatgcgatgaaggaattcggctggcccctggagaaagcc
tacaactacgtgaagcagaagcgcagcatcacgcgccccaacgccggcttcatgaggcag
ctgtctgagtatgaaggcatcttggacgcgagcaaacaaaggcacaacaagctctggcgc
cagcagaccgagagccgcctccagcagcccgtgggtgacctcgcggggtccggggacttc
ttgccagagaccctggatgacgctcgggaagcccggctgtcctgcttggacgatgctgcc
cagcctgggttcccaggaggaggaggaccctctctctcctgctgtttccggcggctctca
gaccccctcctgcgctcccccagcgacgaaaccggcggcctggtccagctagacgatctg
gagaaggacgctctgttggaggaagcagctcagcctccagcagcgcccacgccagccaga
cctccccaggaaggccccgggccctgtgagaaggaggtgaagaagaaaccggagttcggg
agcccgaaagcccaccgtggccccttgcccgccgtggaggagatggagagggaggaggct
cccggagcagggcggtgggggaggtccccagcccagctggataagagcctgctcaaccgg
gaaaacctaaataataacaatagcaagaggagctgtccggatgactttgagcacgatgct
ctattcgggatcctcaacaaagtgaagccttcctacaagtcctgtgctgactgcatgtac
cccacggccagcagggctcccgaggccttcggggagcggcgcgagacccccggggccccc
gccatctgcacccagccaaccttccttgccgcaggcccgaggaggccggaccccgggggc
tctgggcccagggctgccccggagccgccagctagccttctggaaccttccagagagacc
cccaaagtccttccaaaggccctccttttgaagaactctcactgtgataagagccctccc
ggcatggaagtggtgaaggaggagtcgccacccaagaaagacgtgaagccggccaaggac
ctgcggctgctgttcagcaaggaaaccgagaagccgagcgcgcacagctacctgatgcag
caccaggagtccatcatccagctgcagaaggcgggcctggtccgcaagcacaccaaagag
ctggagcggctgaagggcgccacccccatcccgccggagggagcctcgctgaagagcccc
tctcccttcctctgccgcctggaccacaccagccacttctcgaaagacttcctgaagacc
atctgctacacgcccacctcgtcctccatgagctccaacctgacccggagctccagcagc
gacagcatccacagcgtccgcgggaagccggggctggtgaagcagcggacgcaggagatc
gagacgcggctccggctggcgggcctcaccgtctcgtccccgctcaagcgctcgcactct
cttgccaagctcggaagtcttgacttctccacggaagacctgaccagtgaggctgacctg
tccaccatcgccgactcccaggacgccaagtcgagcgaggcctccttcttgcatgagccc
caggccgccccgcggaacccagccgccccctctaaaccgtcagggaaacccgccccggaa
aacttgaaaagctcctcgtggctgagcaaaagctga
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