KEGG   Seriola lalandi dorsalis (Yellowtail amberjack): 111644585
Entry
111644585         CDS       T06058                                 
Name
(RefSeq) 1-phosphatidylinositol 4,5-bisphosphate phosphodiesterase beta-1-like
  KO
K05858  phosphatidylinositol phospholipase C, beta [EC:3.1.4.11]
Organism
slal  Seriola lalandi dorsalis (Yellowtail amberjack)
Pathway
slal00562  Inositol phosphate metabolism
slal01100  Metabolic pathways
slal04020  Calcium signaling pathway
slal04070  Phosphatidylinositol signaling system
slal04081  Hormone signaling
slal04082  Neuroactive ligand signaling
slal04261  Adrenergic signaling in cardiomyocytes
slal04270  Vascular smooth muscle contraction
slal04310  Wnt signaling pathway
slal04371  Apelin signaling pathway
slal04540  Gap junction
slal04621  NOD-like receptor signaling pathway
slal04912  GnRH signaling pathway
slal04916  Melanogenesis
Module
slal_M00130  Inositol phosphate metabolism, PI=> PIP2 => Ins(1,4,5)P3 => Ins(1,3,4,5)P4
Brite
KEGG Orthology (KO) [BR:slal00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00562 Inositol phosphate metabolism
    111644585
 09130 Environmental Information Processing
  09132 Signal transduction
   04310 Wnt signaling pathway
    111644585
   04371 Apelin signaling pathway
    111644585
   04020 Calcium signaling pathway
    111644585
   04070 Phosphatidylinositol signaling system
    111644585
  09133 Signaling molecules and interaction
   04082 Neuroactive ligand signaling
    111644585
   04081 Hormone signaling
    111644585
 09140 Cellular Processes
  09144 Cellular community - eukaryotes
   04540 Gap junction
    111644585
 09150 Organismal Systems
  09151 Immune system
   04621 NOD-like receptor signaling pathway
    111644585
  09152 Endocrine system
   04912 GnRH signaling pathway
    111644585
   04916 Melanogenesis
    111644585
  09153 Circulatory system
   04261 Adrenergic signaling in cardiomyocytes
    111644585
   04270 Vascular smooth muscle contraction
    111644585
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   04131 Membrane trafficking [BR:slal04131]
    111644585
Enzymes [BR:slal01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.4  Phosphoric-diester hydrolases
    3.1.4.11  phosphoinositide phospholipase C
     111644585
Membrane trafficking [BR:slal04131]
 Exocytosis
  Calcium ion-dependent exocytosis
   Phospholipases
    111644585
 Endocytosis
  Macropinocytosis
   Phospholipase C
    111644585
SSDB
Motif
Pfam: PI-PLC-X PLC-beta_C PH_14 PLCB1-4-like_EFh EF-hand_like C2 PI-PLC-Y EF-hand_15
Other DBs
NCBI-GeneID: 111644585
NCBI-ProteinID: XP_023249264
LinkDB
Position
Unknown
AA seq 1121 aa
MASAQPGVHALKLQTPSVSHTLRNGSNFIKWDEDLSTVTPVTLYVDPHGFYLYWTEQNKD
TELLDLTLVKDVRTGRSTKTPKEAKLRELLDVGNLVGRLENRMVTVVTASDLVNVNQLNF
IASQEDEAKVWCEELFSLSSNLLSHNLNRDRSLLKAYVKLTLQPNAEGRIPVKNIVRLFS
SDRKKVENALENCRLPYGRGDGIKLEDFTLEVYKSFLDSLCPRPELSNIFKLQGGKDGTL
SVDQMTEFINNKQRDPRLNEILYPPLRPAQTHTVMERYQHDQAQLKQGMISVQAFSSYLS
SDENGVIPPEKLDQSEDMSFPLSHYFIKSSHNTYLTAGQLAGSSSVEMYRQVLLAGCRCV
ELDVWKGRTAEEEPVITHGFTMTSEISFKEVIEAIAECAFKTSPFPVILSFENHVDSLKQ
QAKMAEYCRSIFGDALLIDPLDKYPLESGVPLPSPQELMGKIVIKNKKSHKPSNNTDTKR
LTDQPANQSNDPVSPSNNTGEMEAESEEDDDDDDDDGKKGSAEREAVATEEMSTLVNYVQ
PTKFNSFEASKSKKSRSDPFLHTLTPAAATVHLMPQLSLYKHLSMQLNLFMFEYNGRSGY
RLKPEFMRRPDKHFDPFTENTVDGIVANMISVKVISGQFLTERRVGVYVEVEMFGLPVDT
RRKALKTKTSQNNNAINPVWDEEPIVFKKVILPTLASLRIAAFEEGGKFIGHRIIPVSAI
RPGYRYIGLRNEKNQSLILPAVFVYIEVKDYVPDTFADVIEALSNPIRYVNLLEQRSKQL
AALTLEDGEEETQTEDEADSCAERKNDLKSAPLENGLSPAPGPAGHTPIATTPKASAANQ
QTAMTEAPKPAAKTEDLVLSVLIDVPVCTIESLQQSKVYQKEQRRQFKELKELVRRHQKK
TSELLREFNNKYKKTARQCSKSRGSCSDSEKDERLQQLRDEQQQQLLALRQEQYYSQKYL
QREHIKTLTERLSSLAEESHNSQMKKLKDICDKEKKELKRQMDRRRTEKINQAKTKEKHL
AEEEKIEINKSYVNEVVQNIKRLEETQTKRHDQLVEQHNGLLQEIQDQKPKLQGTIEAEF
QEKFQCLPGEIQDFLQDRKTEVRGHSKSRPSTPHETLSEED
NT seq 3366 nt   +upstreamnt  +downstreamnt
atggcgagcgcccagccgggggtccacgcactgaaactccagactccctccgtctctcac
acactgaggaacggaagtaacttcattaaatgggacgaggatctgtcaactgttactcca
gtgactctgtacgtggatccacatggattttacctctactggactgaacaaaacaaggac
acagagctgttggacctgaccctcgtcaaagacgtcagaacgggtcgaagcaccaagaca
ccgaaggaggccaagctgcgggagctgctggatgtgggaaacctggttggccgtctggag
aaccgcatggttaccgtggttacggcttcagacctcgtaaacgtcaaccagctcaacttc
atcgcttcacaggaggacgaggccaaggtgtggtgtgaggaactgttttctctgtcctcc
aatctgctgagccacaatctcaacagagaccgcagtctgctgaaagcgtatgtcaagtta
actctccagccgaacgcagaggggagaatccccgtcaagaacatcgtccgactgttttca
tcagacagaaagaaagtggagaatgccttggagaactgcagactgccctatggacggggt
gacggcatcaaactggaggacttcacgcttgaagtttacaagagctttttggacagcctg
tgtcctcgtcctgagctcagcaacatctttaaactgcaaggagggaaggacgggaccttg
tccgtcgatcagatgacagagttcatcaataacaaacagagagacccgaggctgaacgaa
atcctctacccgcctcttcgtcctgcacagacgcacactgtaatggagaggtaccagcat
gaccaggcacagctgaagcaaggcatgatttctgtccaggcgttctccagttatctgtcc
agtgatgagaatggagtcattccaccagagaaactggaccagtctgaagacatgagcttc
cccctgtcccactacttcataaagtcatcacataatacctacctgacagcgggccagctg
gcaggcagctcctcagtggagatgtacaggcaggttctcctggcaggatgccgctgtgtg
gaactggacgtgtggaaaggaagaaccgctgaggaggaacctgtcatcacgcacggcttc
accatgacgtcagaaatctcttttaaggaagtgatcgaagccatcgcagagtgcgccttc
aagacctctccttttcctgtcatactctcctttgagaaccacgtggactctttgaagcag
caggctaagatggctgaatactgtcgatccattttcggagatgcgctgctgattgaccct
ctggacaaataccctctggagtcaggtgtccccctgcccagtcctcaggagctgatgggc
aaaattgtcatcaagaacaagaaatcccacaaaccctccaacaacaccgacaccaagaga
ctgacggaccaacctgccaatcagagcaacgatccagtgtctcctagcaacaacacagga
gagatggaggctgagagtgaggaagatgatgatgatgacgatgatgatggtaaaaagggc
tcagcggagcgggaggccgtggccacggaggaaatgtcaactctggtgaactacgtccag
cccacaaagttcaactccttcgaagcgtccaagagtaagaaaagcagatcagatcccttc
ctccacacactgactcctgctgcggcaactgttcatctcatgcctcagctctctctgtac
aaacatctgtccatgcagctgaacctcttcatgtttgagtacaacggtcgcagcggctac
agactgaagccggagttcatgaggcggccggacaaacactttgaccctttcacagaaaac
acagtggacggcatcgtagctaacatgatctctgtgaaggtgatttcaggccagttcctg
actgagcggcgggtgggcgtgtacgtggaggtggagatgtttggacttcctgtggacacc
aggaggaaggcgctgaagaccaaaacctcccaaaacaacaacgccatcaacccggtgtgg
gacgaagagcccatcgtcttcaaaaaggtgattcttcccactctggcctctctgagaatc
gctgcttttgaggaaggaggaaagtttatcggtcatcggattattccagtgtctgccatc
cgaccaggttatcgttacatcggcctgaggaatgagaagaatcagtctctgattctaccg
gctgtgttcgtctacatcgaggtcaaagactacgtcccagacacctttgcagatgtgatc
gaggctctgtccaaccccattcgatatgtcaacctgctggagcagaggtccaaacagctg
gcggctctgactctggaggacggggaggaggagactcagactgaggatgaagccgacagc
tgtgcagagcggaagaacgacctgaaatcagctccactggaaaacggactcagccccgcc
cctggtcctgcaggacacacccccatcgccacgacgcccaaagcttccgcagccaatcag
caaacagcgatgacagaggcaccgaaacctgcagcaaagactgaggacctggtgttaagt
gttttgatagatgtcccagtgtgcaccatagagagtctgcagcagagcaaggtttaccag
aaggagcagagacgtcagttcaaagagctgaaggagttggtaagaagacaccagaagaaa
acgtcggagctgctgcgagagttcaacaacaagtacaagaaaacggccagacaatgcagc
aagagccggggttcgtgttcggacagtgagaaagacgaacgcctccagcagctgagagac
gagcagcagcagcagcttctggctctgaggcaggagcagtactacagtcagaagtatctg
cagagagaacatataaaaacgctgacggagcgactcagcagtctggcggaggagagtcac
aacagccagatgaagaagctcaaagacatctgtgacaaggagaaaaaagagctgaagaga
cagatggatcgaaggaggacagagaagatcaaccaagcgaagaccaaagagaagcatctg
gctgaggaggagaagattgagatcaataagtcctacgtcaatgaagtcgtccagaacata
aaacggctcgaggagactcagacaaagcgccacgatcagctggtggagcagcacaacggg
ctcctgcaggagatacaagaccagaaaccaaagctgcagggcaccatcgaggcagagttt
caggagaagttccagtgtttgcccggagagattcaagacttcctgcaggacaggaagaca
gaggtcagaggtcacagcaagtcccggccatcaacccctcacgaaactctgtcagaggag
gactga

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