KEGG   Lycorma delicatula (spotted lanternfly): 142323412
Entry
142323412         CDS       T11193                                 
Name
(RefSeq) phosphatidylinositol-3,5-bisphosphate 3-phosphatase MTMR4 isoform X1
  KO
K18082  myotubularin-related protein 3/4 [EC:3.1.3.48 3.1.3.64 3.1.3.95]
Organism
lda  Lycorma delicatula (spotted lanternfly)
Pathway
lda00562  Inositol phosphate metabolism
lda01100  Metabolic pathways
lda04070  Phosphatidylinositol signaling system
lda04140  Autophagy - animal
Brite
KEGG Orthology (KO) [BR:lda00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00562 Inositol phosphate metabolism
    142323412
 09130 Environmental Information Processing
  09132 Signal transduction
   04070 Phosphatidylinositol signaling system
    142323412
 09140 Cellular Processes
  09141 Transport and catabolism
   04140 Autophagy - animal
    142323412
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01009 Protein phosphatases and associated proteins [BR:lda01009]
    142323412
Enzymes [BR:lda01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.3  Phosphoric-monoester hydrolases
    3.1.3.48  protein-tyrosine-phosphatase
     142323412
    3.1.3.64  phosphatidylinositol-3-phosphatase
     142323412
    3.1.3.95  phosphatidylinositol-3,5-bisphosphate 3-phosphatase
     142323412
Protein phosphatases and associated proteins [BR:lda01009]
 Protein tyrosine phosphatases (PTPs)
  Class I PTPs (Dual specificity phosphatases)
   Myotubularins
    142323412
SSDB
Motif
Pfam: Myotub-related FYVE DSPc Y_phosphatase3 Y_phosphatase Tc-R-P
Other DBs
NCBI-GeneID: 142323412
NCBI-ProteinID: XP_075219110
LinkDB
Position
4:complement(56556017..56620146)
AA seq 920 aa
MDDEYPNSIQSTSTQSLFHVRASELYPKRTLHKEHDFLTPSFVPLCGEAIEYLGQASEGV
LALSNYRLYLQLNDKDIYYNIPLGLVDHVEVRDLVYLHITCKDARTCRCSFASSELCLDW
LRRIVKAITPPKNKDEVFAFAYFAWAGEELGEEMSLRLGKDSYSSAEQTFQSEVERLKFD
VQIGGVWRISSVNVDHKLCATYPRYLLTPASISDRILESAARFRTSRRVPAVVWRHRGNG
AVIARCSQPEVGWLGWRSSEDEELLKAITDACTQSNPSDNKTEQKLLIMDARSYTTAVAN
RARGGGCECPEYYPNCEIKFMNLANIHSIRKSFNALQALCAMPPDQAGWYSTLESTKWLH
NMSGLLHAAVTVVTAVEEQARPVLVHCSDGWDRTPQIISLAQLLLDPFYRTIEGFQVLVE
REWLEFGHKFNDRCGLSEDVNERCPVFLQWLDCIHNLVRQFPCAFEFSNSYLVKLAQHTY
SNLFGTFLCNSSAERFKLGLQQRTFSVWKFLQSPKFRNHLYSSSQDQVLWPACNVRYLDV
WRELYLEHCNSESQLAVASSTSQQNIVEDCTNVGDMGAEDSVNISGLVETDDRRDSRSED
ISISNNNRSGGTSSGDKDGAMIGFDLVDCGGVSDKINCDKKEKTEVKEPNSDRNVSAWME
NGLVSFDSDVEDYSEGLSGHSSTDTIVPSSQSSNGKEKLLLPSGTASDLLTVSSPSSSGH
PVFPLLLDPVDGLAPLKDQIQTRLEQMALEHKAKELALERELRTTRLALLQQVCHQCSHS
GGSVAAASTSGVERSQDDEQGSLCSTEVSWEAVEEPVPTLWVPDHAVSHCTGCHNQFWLG
RRKHHCSLYNSRSCGKIFCADCSENVVALPEEQLYEPVRVCSSCYRNPFGNKSNPTTATT
VSSCKQQGSGVGIVLPPTQI
NT seq 2763 nt   +upstreamnt  +downstreamnt
atggacgatgaatatcctaatagcatccagtctaccagtactcaatcattatttcatgtt
cgagctagtgaactttatcctaaacgtacgcttcataaagaacatgattttctaacgcca
tcttttgtccctttatgcggtgaagctattgaatatctaggacaggcgtctgaaggagtt
ttggcattatcaaattatcgactgtatcttcaacttaatgataaggatatttattataat
ataccattaggtcttgtagaccatgttgaagtaagagatcttgtttaccttcatataact
tgcaaagatgctcgaacttgcagatgttcctttgcatcaagtgagctgtgtcttgactgg
ttgcgtcgaattgtaaaagcaattacacctccaaaaaataaagacgaagtatttgctttt
gcatattttgcctgggctggtgaggaactaggagaagaaatgtcattaagactgggtaaa
gattcatattcttctgccgaacaaacatttcagtcagaggttgaaagactaaaatttgat
gtacaaattggtggtgtgtggcgcatatcttcagttaatgtagatcataagttatgtgcg
acctatcctcgttatttacttactccagcttctatatctgatagaatccttgaaagtgct
gcaagattccgtacgtctcgtagagtgccagctgttgtttggaggcatcgaggtaatgga
gctgttattgcacgctgtagtcagccagaagtcggttggcttgggtggagatcttcagaa
gatgaagaactactgaaggcgattacagatgcctgcacacaatctaatccgtctgacaac
aaaacagaacagaaactactcatcatggatgctagatcatatactacagctgttgcaaat
agagctcgtggaggtggttgtgagtgcccagagtactatccaaattgtgagataaaattt
atgaatttggctaatatacattctattcggaaaagttttaatgctttgcaagcactctgt
gccatgcctcctgatcaggccgggtggtatagtacattagagagtacaaagtggcttcat
aatatgtcaggattacttcatgcagctgttactgttgtaacagcagtagaagaacaagca
cgaccagttcttgtacattgttctgatggatgggatcgtacacctcaaattatatcactt
gcccaattgcttctcgaccctttttatagaactattgagggttttcaagttctggttgag
agagagtggttggaatttggacataagtttaatgatcgttgtggcttgtcagaagatgtt
aatgaacgatgtcctgtatttttgcagtggctagattgcattcataatctcgttagacag
ttcccttgtgcatttgaattttccaacagttatttggtaaagttagcacagcatacgtac
tcgaatctgtttggtacattcctttgtaattctagtgcagaacgttttaaacttggatta
caacaaagaactttttcagtttggaagtttttacagtcgccaaagtttagaaatcatctt
tacagttcatctcaggatcaggtgttgtggcctgcatgtaacgttcgttatttagatgtc
tggcgtgaactttatctagaacactgtaatagtgaatctcagttagctgttgcatccagt
acatcacagcaaaatattgtggaagactgtactaacgttggtgatatgggtgctgaagat
tctgtaaatatttcgggtttagttgaaactgatgatagaagggacagtcgaagtgaggac
attagtattagtaataataatcgaagtggggggacatcatctggtgataaagatggagca
atgattggttttgatttagtggactgtggtggtgtttccgataaaattaactgtgataaa
aaggaaaaaactgaagttaaagaaccaaatagtgatagaaatgttagtgcctggatggaa
aatggacttgtttcattcgattcggatgttgaagattattctgaaggtctttctggtcac
agctcaactgatactattgttccttccagccaaagtagtaacggcaaagagaaattactg
ctgccttcaggtacagcgtctgatcttctgactgtctcatcaccatcttcatctggtcac
ccagtttttcctttacttttggatccagttgatggtttagcacctctaaaggatcaaata
caaacccgtttagagcagatggcacttgagcacaaagctaaagagctagctctggagagg
gaactgcgtactactaggcttgctttgttgcaacaggtgtgtcaccagtgtagtcatagt
ggtggaagtgttgctgcagcttccacttcaggtgttgaacgttcacaggatgatgagcag
ggttcattatgcagcactgaagtatcttgggaagcagttgaagaaccggtaccaacactt
tgggttccagaccatgcagttagtcattgtacgggttgtcataatcagttttggcttggt
cgcagaaaacatcattgcagtttgtataattccaggagttgtggaaaaatattttgtgcc
gattgctcagagaatgtggtggcattaccagaagaacaattatatgagcctgttcgtgta
tgtagctcctgttacagaaatccgtttggaaataaaagtaatccaacaacagcaacaaca
gtttcaagttgcaagcagcagggatctggtgtcggaattgttttgcctcctactcagatt
tga

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