Ailuropoda melanoleuca (giant panda): 117796618
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Entry
117796618 CDS
T01329
Name
(RefSeq) protein phosphatase Slingshot homolog 3-like
KO
K05766
protein phosphatase slingshot [EC:
3.1.3.16
3.1.3.48
]
Organism
aml
Ailuropoda melanoleuca (giant panda)
Pathway
aml04360
Axon guidance
aml04810
Regulation of actin cytoskeleton
Brite
KEGG Orthology (KO) [BR:
aml00001
]
09140 Cellular Processes
09142 Cell motility
04810 Regulation of actin cytoskeleton
117796618
09150 Organismal Systems
09158 Development and regeneration
04360 Axon guidance
117796618
09180 Brite Hierarchies
09181 Protein families: metabolism
01009 Protein phosphatases and associated proteins [BR:
aml01009
]
117796618
Enzymes [BR:
aml01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.3 Phosphoric-monoester hydrolases
3.1.3.16 protein-serine/threonine phosphatase
117796618
3.1.3.48 protein-tyrosine-phosphatase
117796618
Protein phosphatases and associated proteins [BR:
aml01009
]
Protein tyrosine phosphatases (PTPs)
Class I PTPs (Dual specificity phosphatases)
Slingshots
117796618
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
PH_SSH1-like_1st
DSPc
DEK_C
Y_phosphatase
PTP-NADK
Tc-R-P
PTP-SAK
PRORP
Init_tRNA_PT
Motif
Other DBs
NCBI-GeneID:
117796618
NCBI-ProteinID:
XP_034500734
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All DBs
Position
16:85796376..85801969
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AA seq
592 aa
AA seq
DB search
NPKVGSHRIITTNLGSEEGGHQVCSRPRCVSGRGGRCRVFLGHCDPRLLPAHLPQAAQLE
ATRPPRLRYLLVVSTREHLSQDETVLLGVDFPDSSSPSCTLGLVLPLWSDTQVYLDGDGG
FSVTSGGQSRIFKPISIQTMWATLQVLHQACEAALGSGLVPGGSALAWAGQYQERLSSDQ
SCVNEWMAMADLESLRPPSAEPGRPSEQVQMEQAIRAELWEVLDTSDLESVTSKEIRQAL
ELRLGRPLQQYRDFIDNQMLLLMAQQDHASRIFPHLYLGSEWNAANLEELQRNRVSHILN
MAREIDNFYPERFIYHNVRLWDEESAQLLPHWKETHRFVEAARAQGTRVLVHCKMGVSRS
AATVVAYAMKQYGWSLEQALRHVQELRPIARPNPGFLRQLQTYQGILTASRQSHLWEQKA
GGVSPEEPLAPDVSAPLPPLPPEPGGSGEVKAMGLQESHAAPKEEPGPRPRINLRGVMRS
ISLLEPSSEPESASGAGDLPEVFSSNESSEEDLPEPFPQLSKAKGGRRGGKGPWPALKSR
QSVVALNSAALVATRTQAFQEQGEAGSSSRPRLRGKVVRQASVDGSGEEGEA
NT seq
1779 nt
NT seq
+upstream
nt +downstream
nt
aatccaaaagtggggagtcatcgaattataaccaccaatctgggatctgaggagggcggg
caccaggtctgttctaggcccaggtgtgtgtcaggcaggggtgggaggtgcagggtcttc
ttgggccactgtgaccctcggcttctccctgcccatcttccccaggcagcccagctagag
gcaacacggccccctcggctccgctacctgctggtagtttccacaagagaacatctgagc
caggatgagaccgtcctcctgggggtggacttccccgatagcagttctcccagctgcacc
ctgggcctggtcttgcctctctggagtgacactcaggtgtacctagatggagacgggggc
ttcagtgtgacatctggtgggcaaagccgaatcttcaagccgatctccatccagaccatg
tgggccacgctccaggtgctgcaccaggcgtgtgaggcagctctcggcagtggccttgtg
ccggggggcagcgccctggcctgggctggacagtaccaggagaggctgagctcggaccag
agctgcgtcaacgagtggatggccatggccgatctggagtctctgcgccctcccagtgcc
gagcctggccggccctcagaacaggtgcagatggagcaggcgatccgggctgagctgtgg
gaggtgctggacaccagtgacctggagagcgtcacttccaaagagatccgccaggccctg
gagctgcgcctgggccggccgctccaacagtaccgggacttcatcgacaaccagatgctg
ctgctcatggcccagcaggaccacgcctcccgcatcttcccccacctctacctgggctca
gagtggaacgcggccaacctggaggagctgcagagaaacagggtcagccacatcttgaac
atggcccgcgagatcgacaacttctaccccgagcgcttcatctaccacaacgtgcgcctc
tgggacgaggagtcggcccagctgctgccccactggaaggagacgcaccgcttcgtggag
gccgcaagagcgcagggcactcgggtgctggtccactgcaagatgggcgtcagccgctcc
gccgccaccgtggtcgcttacgccatgaagcagtacggctggagcctggagcaggccctg
cgccacgtgcaggagctgcggcccatcgcccgccccaaccctggctttctgcgccagctg
cagacctaccagggcatcctgaccgccagccggcagagccatctgtgggagcagaaagcg
ggtggggtctccccagaggagcccctcgccccggatgtctctgctccattgccacctctt
ccgccagagccggggggcagtggggaggtgaaggctatgggtttgcaggagagccacgcg
gccccaaaagaagagcctgggccacggccccgtatcaacctccgaggggtcatgaggtcc
atcagcctcctggaaccttcctcggagccggaaagcgcctcaggggccggtgatctgccg
gaggtgttttcgtcaaatgagtcttcagaggaagaccttccagagcccttcccgcagctc
tcgaaggccaagggaggcaggcggggtggcaaggggccttggcctgccctgaagtcccgc
cagtctgtggttgccctcaacagcgccgccctggtggccacgcggacccaggccttccag
gagcagggggaggccggctcttcctccagacccaggctccgggggaaggtggtgaggcag
gccagcgtggatggcagtggggaggagggcgaggcctga
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