KEGG   Silene latifolia (white campion): 141605156
Entry
141605156         CDS       T11116                                 
Name
(RefSeq) phospholipase D gamma 1-like isoform X1
  KO
K01115  phospholipase D1/2 [EC:3.1.4.4]
Organism
slaf  Silene latifolia (white campion)
Pathway
slaf00564  Glycerophospholipid metabolism
slaf00565  Ether lipid metabolism
slaf01100  Metabolic pathways
slaf01110  Biosynthesis of secondary metabolites
slaf04144  Endocytosis
Brite
KEGG Orthology (KO) [BR:slaf00001]
 09100 Metabolism
  09103 Lipid metabolism
   00564 Glycerophospholipid metabolism
    141605156
   00565 Ether lipid metabolism
    141605156
 09140 Cellular Processes
  09141 Transport and catabolism
   04144 Endocytosis
    141605156
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   04131 Membrane trafficking [BR:slaf04131]
    141605156
Enzymes [BR:slaf01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.4  Phosphoric-diester hydrolases
    3.1.4.4  phospholipase D
     141605156
Membrane trafficking [BR:slaf04131]
 Exocytosis
  Calcium ion-dependent exocytosis
   Phospholipases
    141605156
 Endosome - Golgi transport
  Others
   Others
    141605156
SSDB
Motif
Pfam: PLD_C PLDc C2 PLDc_2
Other DBs
NCBI-GeneID: 141605156
NCBI-ProteinID: XP_074279921
LinkDB
Position
10:complement(12723361..12764105)
AA seq 1130 aa
MEPYSYRYPPPPISEAYPPPSPQHGPFPFPYPNPNPNQYTPNPYTAPYQYPHQNPYPYQS
PPPAYPYPHPYPSQPNYPSQPPRAVSYSGHVPHVGAGAPPAPTFQHSSSLQYDSSHYQYS
DSGVYPSPNATPQPQPQPQPPFRSHSLGGGLPSNSVGNVGTSEAIMYPPLEDLVADLRVS
NGRPSVPASPSAPSVALVGNSPMRYESSSGADTGLHHGRTSIPASPSAFSGPLLGSSPMA
YGSSSGELGNHSYYNRPFSRSPSWDSCFSCADSSSGDGMQLVPSQKGSMKVLLLHGNLDI
WVYGAKNLPNMDLFHKTLGDMISKLPGRVTNKIEGHVARKITSDPYVSIALSHAVIGRTY
VIPNEENPEWMQHFNFPVAHHAAEVHFLVKDSDVVGSQLIGSVSIPVEQIYLGAKVEGTF
PIVNGSGKQCKPGAVLSISIQFSPIRNLSIYHHGVGAGPNYEGVSGTYFPLRKAGRVTLY
QDAHVPDGFLPEFNLDRGMKYVHGKCWQDIYDAIRQAKRLVYIIGWSVWHKVRLVRNGGN
PESECSLGDLLRSKSAEGVRVLLLVWDDPTSRSILGYRTDGIMATHDEETRRFFKNSSVQ
VLLCPRVAGKRHSWVKKTEVSTIYTHHQKTVIVDADAGNTRRKIIAFVGGLDLCDGRYDT
PDHPILRSLQTTHKDDYHNPCFQGSTAGCPREPWHDLHCKIDGPAAYDVLTNFKDRWLKA
SKPHGIKKLKMSYDDSLLRIERLPEIIQIDEVSSLTEDDPESWHVQVFRSIDSNSTVGFP
SPKEATSRNLICGKNVLIDMSIHTAYVQAIRSAQHYIYIENQYFIGSSYNWDAHRDLGAN
NLIPMEIALKIAEKIRAHERFAAYIVIPMWPEGVPNGAATQRILYWQNKTMQMMYETIFK
ALVEVGLEEAYTPQDYLNFFCLGNREGPDGSPGLVGPHKPNSPQALSQKSRRFMIYVHSK
GMIVDDEYVILGSANINQRSMEGTRDTEIAMGAYQPHHTWARKSAHPFGQIYGYRMSLWA
EHLGLLEDCFTEPETVECVRKVRTIGEKNWKQFAAEDPREMTSHLLKYPVDVDRRGKVRP
LPGCENFPDLGGSICGSLVVVSRAVRAIPQDIVNRLLGLILIHALGTVSS
NT seq 3393 nt   +upstreamnt  +downstreamnt
atggagccatattcatatagataccctccaccaccaatttctgaggcatacccacctcca
tcaccccaacatggtccgtttccgtttccgtatccgaatccgaatccgaatcaatatact
ccgaatccatatactgccccatatcaatatccacatcaaaatccgtatccataccagtca
ccaccaccagcgtatccatatccgcatccatatccatcacaaccgaactatccgagtcaa
ccacctagggctgtgtcatattctggacatgtacctcatgttggtgcaggtgcaccacct
gcaccaacttttcagcacagtagtagtttacagtatgattcatctcattaccaatactcg
gattctggtgtgtatccttcaccaaatgccactccacaaccacaaccacaaccacaaccg
cctttccggagtcatagcttaggtggtggactgccctctaatagtgtaggcaatgttgga
acgtcggaggctataatgtaccctccattggaagatctggtggctgatttgcgagtatct
aatggtcggccatctgtccctgcctcgccttctgcgccttctgtggcattggtgggaaac
tcgcctatgcgatatgagagttcaagtggggcagatacgggattacatcatggtcggaca
tctatccctgcttcgccttctgctttttctgggccattgctgggaagctcgcctatggca
tatgggagttcgagtggggaattaggtaaccacagctactacaatagaccattttcgaga
agtcctagttgggatagttgtttttcttgtgcggattcatctagtggtgatggtatgcag
cttgttccgtcccagaaagggtccatgaaggttttgcttttacacggaaatctggatata
tgggtctatggagcaaagaaccttccaaatatggacttgtttcataaaacactgggtgac
atgattagtaagctgcctggacgggttacgaacaagattgagggacatgtagctcgtaag
atcacaagtgacccgtacgtatctatagctttatcacacgctgtaatagggaggacctat
gtgattcctaatgaagaaaatccagagtggatgcaacactttaattttcctgtggcacat
catgctgccgaagtgcacttcttagtaaaggacagtgatgttgtggggtcgcagcttatt
ggaagtgtatcaattcccgtggaacaaatttacttgggagcaaaagttgagggcacattt
cctattgtgaatggtagtggaaagcagtgtaagcctggggctgtcttgagtatttcaatc
caattttcacccatcaggaacctaagcatataccaccatggagttggtgcgggtcccaat
tatgaaggcgtgtctggcacatattttcctcttaggaaagcgggaagagtaactctctat
caagatgcgcatgtcccggatggtttccttcctgagtttaaccttgacaggggaatgaaa
tatgtgcatggaaaatgttggcaggatatttatgatgctatacgccaagctaaacgactg
gtatacattatcgggtggtccgtttggcataaagttagacttgtacgtaacggtggtaac
cctgaatcagagtgcagcctgggagatcttcttaggtcaaagtcagctgaaggagtgagg
gttttgcttcttgtgtgggacgatcctacctctagaagcattttgggctatagaacggat
gggatcatggcaacccacgatgaggagacccgaagattctttaaaaactcatctgttcaa
gtgctactttgtcctcgcgttgccgggaaaagacatagctgggtcaagaaaacggaagtc
tcgacgatatatacacatcaccaaaagactgtgattgtggacgctgatgctggcaacacc
aggcgaaaaatcattgcgtttgtcggtggccttgacttgtgtgatggaagatatgatact
ccagaccatcctattcttagatctctgcaaactacacataaagatgattatcacaatccc
tgtttccaaggctctactgcaggctgcccaagagaaccgtggcatgatctgcattgtaaa
atagacggccctgcagcatacgatgttcttactaacttcaaggaccgctggttaaaggca
tcaaaaccgcatgggatcaagaagttgaaaatgtcgtacgatgattctttattaagaatc
gaacgcttgcctgaaataattcagatagatgaagtttcaagccttactgaagatgatcct
gaatcctggcatgtgcaggttttccggtcgatcgattccaattctacggtaggatttccg
agtccaaaggaagctaccagcaggaatttgatctgtgggaaaaatgtgctgattgatatg
agcatacatacagcatacgtccaggctattcgatctgctcagcactacatttatattgag
aatcagtatttcataggttcttcatacaattgggatgcccacagagacttaggagcgaac
aatttgattcccatggaaattgctctcaagattgctgaaaagatccgagctcatgagaga
tttgctgcatatattgttatcccgatgtggccagagggtgtccctaatggtgctgccact
caacggattctctattggcagaacaaaaccatgcaaatgatgtatgaaaccatctttaag
gctctagtagaggtggggcttgaggaagcttatacaccacaagattacttgaacttcttt
tgcctcggcaaccgtgaaggtccagatggaagtcccggtctcgtaggtcctcacaagcca
aacagccctcaggctttatctcaaaagagccgaagattcatgatttatgtccactctaaa
ggcatgatagtggatgatgagtatgtgatattgggttctgcaaacatcaaccagcgatca
atggagggaacaagagacaccgagattgcaatgggagcctatcagcctcatcatacatgg
gcgagaaagtcagcgcatccattcggccagatatatggttataggatgtccctttgggca
gagcaccttggacttctcgaggactgcttcactgagcccgaaacagtggagtgtgtaagg
aaagtaagaacaataggggagaagaattggaaacaatttgcagccgaagatccaagagaa
atgacgagtcaccttctaaagtacccggttgatgtcgatagaagggggaaggtgagacct
cttcctggttgtgaaaattttcctgatcttggtggaagtatttgtggttcactagttgtt
gtatcgcgcgcggtgcgcgcgataccccaagatattgtgaatcgtttacttggattaatt
ttgattcatgcattgggtacggtttcctcgtga

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