KEGG   Pseudoliparis swirei (Mariana hadal snailfish): 130201035
Entry
130201035         CDS       T09868                                 
Symbol
pld1a
Name
(RefSeq) phospholipase D1a isoform X1
  KO
K01115  phospholipase D1/2 [EC:3.1.4.4]
Organism
pswi  Pseudoliparis swirei (Mariana hadal snailfish)
Pathway
pswi00564  Glycerophospholipid metabolism
pswi00565  Ether lipid metabolism
pswi01100  Metabolic pathways
pswi04144  Endocytosis
pswi04912  GnRH signaling pathway
Brite
KEGG Orthology (KO) [BR:pswi00001]
 09100 Metabolism
  09103 Lipid metabolism
   00564 Glycerophospholipid metabolism
    130201035 (pld1a)
   00565 Ether lipid metabolism
    130201035 (pld1a)
 09140 Cellular Processes
  09141 Transport and catabolism
   04144 Endocytosis
    130201035 (pld1a)
 09150 Organismal Systems
  09152 Endocrine system
   04912 GnRH signaling pathway
    130201035 (pld1a)
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   04131 Membrane trafficking [BR:pswi04131]
    130201035 (pld1a)
Enzymes [BR:pswi01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.4  Phosphoric-diester hydrolases
    3.1.4.4  phospholipase D
     130201035 (pld1a)
Membrane trafficking [BR:pswi04131]
 Exocytosis
  Calcium ion-dependent exocytosis
   Phospholipases
    130201035 (pld1a)
 Endosome - Golgi transport
  Others
   Others
    130201035 (pld1a)
SSDB
Motif
Pfam: PLDc PLDc_2 PX PH DBD_HTH
Other DBs
NCBI-GeneID: 130201035
NCBI-ProteinID: XP_056281659
LinkDB
Position
11:complement(19335466..19370963)
AA seq 1093 aa
MLGKVPPTTSSLNLVNPEGSDADDHDGITMADLVESLDTRELEMGEAEDNDYDGNLGDCR
IPFSAVYSTVGFKESGCRVYLPMVPITARILEVERFTAAQDRFNVSHQRSVNKSLPAVFK
IELKHGEFTWVVKRKEKHFMELHRELRTYKTFMRIPLPSRSHTVRRRTVRKSEVREMPSL
PRGGGDELVRDEQVSSRRRQLEDYLNKLLKMAMYRKYHHTMEFIDISQLSFIHDLGPKGL
EGMIYKRSGGHRIPGINCCGHNQACYRWSKRWLVVKDSCLLYMKPDSGAISFVLLLDKEF
SIKMDSKDTETKHGVRIDSLSRTLVFKCSSFRHARWWGQSVESFVRSHGKAFLRDHRCGS
FAQEQENIPSKWYVNGKTYMEDVADALEEAKEEIFITDWWLSPEIFLKRPVVEGNRWRLD
CILKRKAQQGVRIFVMLYKEVELALGINSGYTKRTLSRLHPNIKVMRHPDHVSSAVYLWA
HHEKIVVVDQSVAFVGGIDLAYGRWDDREHRLTDVGSVTRSVALEQAGATSAPSSKGATF
VDGVSESNGRGTPPGDPADLPRLKGIGRSHKARFSLYRHLHKHTLQHADSVSSVDSAGSG
SVQSLKTGVGELQGNTRFWHGKDYCNFVFKDWIQLEKPFDDFIDRYTTPRMPWHDIASAV
HGRAARDVARHFIQRWNFTKIMKPKYRSLSYPFLLPKSHSSANDLTYQVPDCVNAKVQVL
RSAADWSAGIKYHEESIHNAYIQVIVKSKHFIYIENQFFISCADNRMVYNKIGDAIIERI
LRAYKYFPFFLLPSTAGVLVTVVGKQLEDEVSLFFFFFSRWLRGMSAHREGRKYRVYVVT
PLLPGFEGDITTGGGNALQAVMHFNYRTMIRGEYSIISQLRKEMDDHWMNYISFAGLRTH
TELEGRLITELIYVHSKMLIADDNTVIIGSANINDRSMLGKRDSEVAVIIEDSEKVAAVM
DGQAYEAGTYALQLRLECFRTILGGHNDTSIDMADPVSDRFYKEVWMTTAGRNATIYEKV
FRCLPSSLVRNMSELEQYQSVPGLAQSDLARAQEELRKIRGFLVQFPLDFLSEENLMPSV
GTKEAMVPTEIWT
NT seq 3282 nt   +upstreamnt  +downstreamnt
atgctgggtaaagtgccaccaactacgagtagcctcaacctggtgaaccccgaggggtcc
gacgccgacgaccacgacggcatcacgatggccgaccttgtggagagcctggataccagg
gagctggaaatgggggaggccgaggacaacgactacgacggaaacctgggtgactgccgc
atcccgttctcggcggtctactccacggtgggcttcaaggagtccggctgccgggtctac
ctccccatggttcccatcacggcccgcatcctggaggtggagcgcttcaccgcggcccag
gaccgcttcaacgtgtcgcaccagaggagcgtcaacaagtctctgcccgcggtgtttaag
atcgagctgaagcacggggagttcacctgggtggtgaagaggaaggagaaacacttcatg
gagctgcaccgagagctgaggacctacaagaccttcatgaggataccactgccgtcacgc
agccacacggtgaggaggaggacggtgaggaagagcgaggtccgggagatgccctccctg
ccgagggggggaggggacgagctggtgcgcgacgagcaggtctccagccggaggagacaa
ttagaagactatttgaacaagctgctgaagatggccatgtaccgcaaatatcaccacact
atggagttcatcgacatcagccagctgtctttcatccacgacctggggcccaaagggcta
gaagggatgatctataagcgctcgggaggacatcggatccccggcattaactgctgtggc
cacaaccaggcctgctaccgctggtccaaacgctggctggtggtgaaggactcgtgcctg
ctgtacatgaagccggactcgggggccatctcctttgtcctcctgctggataaagagttc
agcatcaagatggactccaaggacacggagaccaaacacggagtccggatcgacagcctc
tccaggacgctggtgttcaagtgcagcagcttcagacacgcccgctggtggggtcagagc
gtggagagcttcgtgaggagtcacgggaaggcgttcctccgagaccaccgctgcgggtcg
tttgctcaggagcaggagaacatcccctccaaatggtacgtgaacgggaagacgtacatg
gaggacgtggcggatgctctggaggaggccaaagaggaaatcttcatcacggactggtgg
ctgagtccagagatcttcctcaagagacccgtggtggaagggaacaggtggaggctcgac
tgcatcctgaaacgcaaagcacaacagggggtgcgtatctttgtgatgttgtacaaggag
gtggagcttgccctgggcatcaactcgggctacaccaagcggaccctctcacgcctgcac
cccaacatcaaggtgatgcgccatcccgaccacgtctcctccgccgtctacctgtgggcg
catcacgagaagatcgtggtcgtcgaccaatcggtggccttcgtgggcgggatcgacctg
gcgtacggtcgctgggacgaccgggagcaccggctgacggacgtcggcagcgtgacgcgc
tccgtggccctcgagcaggccggcgccactagcgccccgtccagcaaaggcgcgaccttc
gtcgacggcgtctccgagagcaacggccgggggacgccgcccggcgacccggccgacttg
cccaggctgaaggggatcggacgcagccacaaggctcgcttcagcctgtaccgacacctg
cacaagcacacgctgcagcacgccgacagcgtgagcagcgtcgacagcgcagggagtggc
tcagtgcagagcctcaagacgggcgtgggagagttacagggaaacacgcgcttctggcat
ggaaaggactactgcaactttgtcttcaaggactggatccagctggagaaaccttttgat
gacttcatcgacaggtacaccactcccaggatgccgtggcacgacatcgcctcggcggtt
cacggcagagctgcgcgggacgtggcccgccacttcatccagcgctggaacttcacgaag
atcatgaagccaaagtatcgctctctgtcgtatccgttcctgctgcccaagtctcactcc
agcgccaacgacctcacataccaggttcccgactgtgtcaatgccaaagtgcaggtgctg
cggtcggcagcagactggtcggcgggcataaagtaccacgaggagtcgatccacaacgcc
tacatccaggtcatcgtcaagagcaagcacttcatctacatcgagaaccagttcttcatc
agctgcgccgacaaccggatggtgtacaacaagatcggggacgccatcatcgaaaggatc
ctacgagcctacaagtacttccctttttttctcctaccgagtacagcgggagtactcgtg
actgtcgtagggaagcagctcgaagacgaggtgagtctcttcttcttcttcttctcacgg
tggcttcgtggcatgtcggctcacagggaggggaggaagtaccgcgtgtacgtggtcacg
ccgctgctgcccggcttcgagggcgacatcaccacaggaggaggcaacgccctgcaggcc
gtcatgcacttcaactacaggaccatgatcagaggagagtactccatcatctcccagctg
aggaaggagatggacgaccattggatgaactacatctccttcgcgggcctgcggactcac
acggagctggagggtcggctaataacggagctcatctacgtgcacagcaagatgctcatc
gccgacgacaacacggtcatcatcggttcggcgaacatcaacgacagaagcatgctgggt
aaacgcgacagcgaggtggcggtgatcatcgaggactccgagaaggtcgccgccgtgatg
gacggacaggcgtatgaagccggaacctacgctcttcagctgcgcctcgagtgcttccgc
accatcctcggaggtcacaatgacaccagtatcgacatggccgaccccgtcagcgaccgc
ttctacaaggaggtgtggatgacgaccgctggccgcaacgccaccatctacgagaaggtg
tttcgttgcctcccgtcgtcgctggtgaggaacatgtccgagctggagcagtaccagtcc
gtaccgggtctggcccagagcgacctggcccgcgctcaggaggagctgcgcaaaatccga
ggcttcctggtccagtttcctctggacttcctgtccgaggagaacctcatgccctccgtg
gggacgaaagaggccatggtcccaacggagatctggacataa

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