KEGG   Microcaecilia unicolor: 115478876
Entry
115478876         CDS       T09142                                 
Symbol
PLD1
Name
(RefSeq) phospholipase D1
  KO
K01115  phospholipase D1/2 [EC:3.1.4.4]
Organism
muo  Microcaecilia unicolor
Pathway
muo00564  Glycerophospholipid metabolism
muo00565  Ether lipid metabolism
muo01100  Metabolic pathways
muo04144  Endocytosis
muo04912  GnRH signaling pathway
Brite
KEGG Orthology (KO) [BR:muo00001]
 09100 Metabolism
  09103 Lipid metabolism
   00564 Glycerophospholipid metabolism
    115478876 (PLD1)
   00565 Ether lipid metabolism
    115478876 (PLD1)
 09140 Cellular Processes
  09141 Transport and catabolism
   04144 Endocytosis
    115478876 (PLD1)
 09150 Organismal Systems
  09152 Endocrine system
   04912 GnRH signaling pathway
    115478876 (PLD1)
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   04131 Membrane trafficking [BR:muo04131]
    115478876 (PLD1)
Enzymes [BR:muo01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.4  Phosphoric-diester hydrolases
    3.1.4.4  phospholipase D
     115478876 (PLD1)
Membrane trafficking [BR:muo04131]
 Exocytosis
  Calcium ion-dependent exocytosis
   Phospholipases
    115478876 (PLD1)
 Endosome - Golgi transport
  Others
   Others
    115478876 (PLD1)
SSDB
Motif
Pfam: PLDc PX PLDc_2 PH
Other DBs
NCBI-GeneID: 115478876
NCBI-ProteinID: XP_030072379
UniProt: A0A6P7Z9L0
LinkDB
Position
10:complement(197505126..197691310)
AA seq 1061 aa
MSLRPERTLDSSALKKIAADMSNLIENLDTRELDLEGEEVDYDACNDPRLAGTVIPFSAI
YDTQGFKEPNIRTYLTGCPIKVRVLEVERFTSTSKVPSPNIYTIELTHGEFTWQVKRKFK
HFEELHRELLRYKAFIRIPIPTRSHTVRRQTVRRGEAREMPSLPRTSEAMAREEQFSSRR
KQLEDYLTKLLKMPMYRNYHATMEFIDINQLSFIHDLGPKGIEGMIMKRSGGYRIPGLNC
CGQGRICYRWSKRWLVVKDSFLLYMKMDSGAISFVLLVDKAFSIKIGRKDADTKYGLRID
NLSRTLILKCNSYRHARWWGQAIEEFIRKNGQNFLRDHRFGSYAAEQENTLAKWYVNAKG
YFHDVADAMEAAKEEIFITDWWLSPEIFLKRPVVEGNRWRLDCILKRKAAQGVKIFIMLY
KEVELALGINSEYSKRTLQRIHPNIKVMRHPDHVSSSVYLWAHHEKLVIVDQSVAFVGGI
DLAYGRWDDDEHRLTDVGSVKRITAASSMAAVNTSSTEALNVKETSEKQSNSAGRIFAED
VLDAPKLKGIGKSRRFSRFSLYKQLYKHNIHHADSVSSIDSNSCYFNPYSSHQNLIYGLK
PHLKIFHHSDRGSVRSLQTGVGELQGETRFWHGKDYCNFVFKDWVQLDKPFDDFIDRYTT
PRMPWHDISSVVHGKAARDVSRHFIQRWNFTKIMKPKYRSLSYPFLLPKTHKTAKELKYQ
VPESVNTKVQVLRSAADWSAGIMHHEESIHSAYVHVIENSEHYIYIENQFFISCADNKVV
FNKIGDTIAQRILRAHRENKRYRVYVVTPLLPGFEGDISTGGGTALQAIMHFNYRTMCRG
ENSIIGQVKVEIGDQWMNYISFCGLRTYAELEGKLVTELIYVHSKLLIADDKTVIIGSAN
INDRSMMGKRDSEVAVIVQDTEMVPSMMNGEEYTAGKFAQALRLQCFRVVLGSASDLTIN
IQDPVSDKFFKEVWVATAARNTTIFDKVFRCLPSDEVHNLLHLREFITKPGLATEDPAKA
AEELQRIRGFLVQLPFYFLSEENLLPSVGTKESIVPMETWT
NT seq 3186 nt   +upstreamnt  +downstreamnt
atgtcattgaggcctgaaagaacactagattcttctgcactgaagaaaattgctgcagat
atgagcaatttaatcgaaaatttggacacaagggagctcgaccttgagggggaggaggtg
gattatgatgcatgtaatgatcccagacttgctggcacagttatacctttctccgccatt
tacgatacgcaaggattcaaagagcccaacatacgaacctatctaactggatgcccaatt
aaagtgcgagtcctggaagtagaacgcttcacttcaacgtcaaaggtaccaagtccaaat
atttacactattgagttaactcatggagaatttacatggcaagtaaagcggaaattcaag
cactttgaggagctgcacagagaacttcttcgatacaaagctttcatccgaatccccatt
cctacacgaagtcacacagttagaaggcaaactgtccggcggggagaggcgagagagatg
ccatcacttccacggacctccgaagccatggccagagaagagcagttctccagtagacgg
aaacaattggaagattatttgacaaagctattaaaaatgcctatgtacagaaactaccat
gcaacgatggaattcattgacataaaccagctgtcatttatccatgacctaggaccaaag
ggcatagaggggatgataatgaaacgctctggaggctacagaatacctggattaaactgc
tgcgggcaaggaaggatctgctaccgctggtcaaagaggtggttggtagtgaaggactcc
ttcttactttacatgaagatggacagcggcgccatttcttttgtcctcctggtagataaa
gcatttagcattaagatcggcagaaaagatgcagacactaaatatggacttcgcatcgac
aatctgtcaaggacgttaattctgaagtgtaacagctacagacatgctcgatggtggggg
caggccattgaagaatttattcgaaaaaatggccaaaacttcctcagagatcacagattc
gggtcctatgcggctgagcaggagaacacactggcaaaatggtatgtcaatgcgaaagga
tacttccacgatgtggcagatgccatggaagcagccaaagaagagatttttatcacagac
tggtggttgagtccagaaatattcttaaagaggccggtggtagaaggaaatcgctggaga
ttagactgcattcttaagcgaaaagctgcacaaggtgtgaagatttttattatgctttac
aaagaagttgaacttgctctagggatcaacagtgaatacagcaagcgaacacttcagcgt
atccatcccaatattaaggtcatgaggcatccagaccatgtctcatcttctgtgtatctg
tgggctcatcacgagaaacttgttatcgttgaccagtcagtggcctttgttggtggaatt
gacctggcctatggaagatgggatgatgatgaacacaggctgacagatgtaggcagtgtt
aaacgaatcacagcagcgtcatccatggccgcagtaaacacatcttccactgaagctcta
aatgtcaaggaaacatctgagaaacaaagcaactcagctggcaggatcttcgctgaagat
gtgctggatgcaccaaagctaaaaggcatcggaaaatcccggaggttttccagattcagc
ctctataagcagctgtataagcacaacatacaccatgcagacagtgtgagcagcatagac
agtaattcatgttattttaacccttatagcagtcatcagaatttaatctatggtttaaag
cctcatctgaagatttttcatcattcggaccgaggatctgttcgcagcttacaaacaggc
gttggggagcttcagggtgaaaccagattctggcatggcaaggattactgcaactttgtc
ttcaaggactgggttcaactggacaaaccttttgatgattttattgacagatataccacc
ccaagaatgccctggcacgacatctcctcagttgtgcatggaaaagcagcacgcgatgtc
tcacgacacttcatccagcgctggaattttacaaagattatgaaacccaagtacagatcc
ctttcctatccattcctgttgccaaaaactcataagacagccaaggaactgaagtatcaa
gtgccagaatccgtaaacactaaagtacaagtgttacgttctgccgccgactggtcagct
ggtataatgcaccacgaggaatcaattcacagcgcgtatgtccacgtgatagaaaacagc
gagcactatatttatatagagaaccaatttttcattagctgtgccgacaacaaagttgtt
ttcaacaagattggagacaccatcgcacagaggatcctaagagcacacagggaaaacaaa
agataccgcgtgtatgtggtgacccctttgttgccaggatttgaaggagacatttcaaca
ggaggaggcactgcgctgcaagcaataatgcacttcaattacaggaccatgtgcagggga
gagaattccatcattggacaggtgaaagtggaaattggtgaccagtggatgaattacatc
tcattctgtggacttcgaacctatgcagagttggaaggaaaacttgtcactgagctgatc
tacgtgcacagcaagttgcttatagccgatgacaaaacagtcataattggttctgctaac
atcaatgatcggagcatgatgggaaagcgcgatagtgaagtggcggtcattgtgcaagac
acagaaatggttccgtccatgatgaatggagaggaatacacagctggaaaatttgcgcaa
gcgttgcgactccagtgtttcagggtagttctcggcagtgcttctgacctcactatcaac
atccaagatcccgttagtgacaaattcttcaaggaggtctgggtagccacagcagctcgt
aataccacgattttcgacaaggtcttcagatgccttccaagcgatgaggtccataaccta
ctccacctgagggaattcataaccaaaccaggactagccacggaggacccagctaaagca
gccgaagagctgcagaggattcgaggtttccttgtacaattacctttttatttcctttct
gaggaaaacttgcttccttctgttggaacaaaagaatcgatagtgcccatggagacgtgg
acctaa

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