KEGG   Alligator mississippiensis (American alligator): 102573958
Entry
102573958         CDS       T03087                                 
Symbol
PLD1
Name
(RefSeq) phospholipase D1
  KO
K01115  phospholipase D1/2 [EC:3.1.4.4]
Organism
amj  Alligator mississippiensis (American alligator)
Pathway
amj00564  Glycerophospholipid metabolism
amj00565  Ether lipid metabolism
amj01100  Metabolic pathways
amj04144  Endocytosis
amj04912  GnRH signaling pathway
Brite
KEGG Orthology (KO) [BR:amj00001]
 09100 Metabolism
  09103 Lipid metabolism
   00564 Glycerophospholipid metabolism
    102573958 (PLD1)
   00565 Ether lipid metabolism
    102573958 (PLD1)
 09140 Cellular Processes
  09141 Transport and catabolism
   04144 Endocytosis
    102573958 (PLD1)
 09150 Organismal Systems
  09152 Endocrine system
   04912 GnRH signaling pathway
    102573958 (PLD1)
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   04131 Membrane trafficking [BR:amj04131]
    102573958 (PLD1)
Enzymes [BR:amj01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.4  Phosphoric-diester hydrolases
    3.1.4.4  phospholipase D
     102573958 (PLD1)
Membrane trafficking [BR:amj04131]
 Exocytosis
  Calcium ion-dependent exocytosis
   Phospholipases
    102573958 (PLD1)
 Endosome - Golgi transport
  Others
   Others
    102573958 (PLD1)
SSDB
Motif
Pfam: PLDc PX PLDc_2 PH DUF3785
Other DBs
NCBI-GeneID: 102573958
NCBI-ProteinID: XP_014461694
LinkDB
Position
Un
AA seq 1072 aa
MSLKREKPVDTSTLKKIAADMSNIIESLDTRELHFEGEEVDSDVLNEPKTPAGIPFSTIY
NTQGFKEPHIQTFLTGCPIRVRVLEVERFTSTTKVPSPNVYTIELTHGEFTWQVKRKFKH
FQEFHRELLRYKAFIRIPIPIRSHTVRRQSIKRGETRQMPSLPRTSENMVREEHFSSRRK
QLEDYLTKILKMPMYRNYHGTMEFIGVSQLSFIHDLGPKGIEGMIMKRSGGHRIPGLNCC
GQGSVCYRWSKRWLVVKDSFLLYMKPDSGAIAFVLLVDKEFKIKIGKKETETKYGLQIDN
LSRSLILKCNSYRHARWWGQGIEEFIQKNGQNFLKDHRFGSYAAVRERTLAKWYVNAKWY
FEDVANAMEAAKEEIFITDWWLSPEIFMKRPVVEGNRWRLDCILKRKAQQGVKIFVMLYK
EVELALGINSEYSKRTLMRLHPNIKVMRHPDHVSSSVYLWAHHEKLVIIDQSVAFIGGID
LAYGRWDDDEHRLTDVGSVKRISGTKSTMNLAAAAESTEALALKPYADSVGDRKTLDDAL
DSSRLKGIGKARKFARFSIYRQLHKHGIHHSDSVSSIDSESSYCNPSRSQQNLIQSLKPH
LKMFHHHTESRQGLAESEKDKGSIRSLKTGVGELFGETRFWHGKDYCNFVFKDWVQLDKP
FADFIDRHTTPRMPWHDIASVVHGKAARDIARHFIQRWNFTKIMKPKYRSLSYPFLLPKS
QQTANELKYQVPESVLATVQVLRSAADWSAGIKYHEESIHAAYVNVIENSKHFIYIENQF
FISCADDRVVSNKIGDAIAQRILKAHRENKRFRVYVVIPLLPGFEGDILTGGGNALQAIM
HFNYRTMCRGDRSILGQLKTEIGGDKWINYISFCGLRTYAELEGKLVTELIYVHSKLLIA
DDNTVIIGSANINDRSLLGKRDSEMAILVQDTETVPSMMDGEDYRAGKFAQSLRLRCFRV
VLGCSTNQNVDLLDPVCDRFFKEMWVSTAARNATIFDKVFRCLPSDEVNNLVQLRDFINR
PILANEDPVKAAEELKKIHGFLVQFPFRFLEEENLLPSVGTKESMVPMEVWT
NT seq 3219 nt   +upstreamnt  +downstreamnt
atgtcactgaaaagggaaaaaccagtagatacttctacgctgaaaaaaattgctgcagac
atgagcaatataatagagagcctggacacgagggagctccactttgagggagaagaggtg
gattctgacgtgttaaatgaaccaaaaacacctgcaggcatcccattttctaccatttat
aacactcaaggattcaaagagcctcatatacagacatttctaactgggtgtccgattaga
gtgagagtgttggaagtcgagcgttttacctcaacaacaaaggtaccaagtccaaatgtt
tacactattgagttaacacatggggaatttacatggcaagtgaaaaggaaattcaagcac
tttcaagaatttcacagggaactgctgagatacaaagcctttatacgaatccctatccct
ataaggagtcacacagttagaagacaaagtatcaaaagaggagaaaccaggcagatgcca
agtttaccgcgcacctctgagaacatggttcgagaagaacacttctcaagtagaaggaaa
caactagaggactatttgacaaaaatcttaaaaatgcctatgtacaggaactaccatgga
acgatggaattcattggtgtaagccagctgtcattcatccatgacctagggccaaaggga
atagaaggcatgatcatgaaaagatctgggggccacagaatacctggtctcaactgctgt
ggtcaaggaagcgtctgctatcgctggtccaaaaggtggttagttgtgaaggactctttc
ctcctgtacatgaagccagattctggagccattgcttttgttctcctggtagataaagaa
ttcaaaattaagattggtaagaaagagactgaaactaaatatggattgcagattgacaac
ctctctagatcattgattttgaagtgtaacagctatagacatgcccgatggtggggacag
ggaatagaggaattcatccagaaaaatggccaaaactttctgaaagatcacagatttggg
tcttatgcagctgtgcgagagagaactttggcaaagtggtatgtaaatgcaaagtggtac
tttgaagatgttgctaatgcaatggaggcagctaaagaagaaattttcatcacagattgg
tggctgagcccagaaatctttatgaaacgacctgtggtagaaggaaatcgctggagacta
gactgcattttgaagcggaaagcacaacaaggagtgaaaatttttgttatgctctacaaa
gaggtggaacttgccctaggaatcaacagtgaatatagcaagaggaccctgatgcgtttg
catcccaacattaaggtgatgaggcatccagaccatgtgtcatcctcagtgtacctgtgg
gcccatcatgagaaacttgttatcattgaccagtccgtagcgtttattggtggcatagac
ttggcctatgggaggtgggatgacgacgagcacaggctgactgatgttggcagcgttaag
cgaatttcaggaacaaagtccacgatgaatctagcagctgcagctgaatctactgaagct
ttagccctaaaaccttatgctgattctgtgggagaccggaaaactctggatgatgccctg
gattcctcacggctgaaaggaataggaaaagccaggaagtttgccaggttcagcatttat
aggcagctccataaacatggcatacatcactctgacagtgtgagcagcatcgacagtgag
tcaagttattgcaatcctagtaggagtcaacagaatttaatccagagtttaaaaccccat
ctgaaaatgtttcatcaccacactgagtccaggcaagggcttgctgagtctgagaaggat
aaaggatcgatccgcagtttgaagactggtgttggagagctctttggggaaaccagattc
tggcatggaaaggactattgcaactttgtttttaaagactgggttcagcttgacaagcca
tttgctgatttcattgacagacataccacaccaagaatgccatggcatgacattgcctct
gtggtacatggcaaagcagcacgggatatcgctcgacactttattcagcgctggaacttc
acaaagatcatgaagcccaaatacagatccctctcctacccattcctgttgccaaaatct
cagcaaactgccaacgagttgaagtatcaagtgcctgagtctgttttggccactgtccag
gtgctccgttctgctgctgattggtcagcgggcattaagtatcatgaagaatccatccac
gctgcctatgttaacgtgatagaaaacagcaaacatttcatatatatagaaaaccaattt
tttattagctgtgctgatgacagagttgtatcgaacaagattggagatgcaattgctcag
aggattcttaaagcccacagggagaacaagcggttccgagtatatgtggtgatcccgctg
ctgcctggattcgaaggagatattttaactggaggagggaatgcactgcaggccataatg
catttcaactacaggaccatgtgcaggggagatcgttctattctggggcagttgaaaaca
gaaattgggggggataagtggataaactacatatcattctgtgggcttcgaacatacgct
gaattagaaggaaaacttgtcaccgaattgatctatgttcacagcaaattgctaatagcc
gatgacaacactgtcataattggctccgctaacatcaatgaccgcagcttgctgggaaag
cgtgacagtgaaatggctattcttgtgcaagacaccgaaactgtcccctccatgatggat
ggagaggactatcgagctggaaaatttgctcagtcactccgtctccggtgctttcgggtt
gttcttggttgttcaacaaatcaaaatgtcgatctccttgatcctgtttgtgacagattc
ttcaaggagatgtgggtttccacagctgctcgcaacgctactatcttcgacaaggttttc
cgatgccttcccagtgatgaggtgaacaatttagtccagctccgtgacttcatcaacagg
ccaatattagcaaatgaagatcctgtgaaagcagcagaagaattgaaaaagattcatgga
tttctagtccaattcccttttcgtttcctggaggaagaaaacttgcttccttctgttgga
acaaaagaatccatggtgcccatggaggtttggacttaa

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