KEGG   Alosa sapidissima (American shad): 121711792
Entry
121711792         CDS       T11137                                 
Name
(RefSeq) 1-phosphatidylinositol 4,5-bisphosphate phosphodiesterase beta-1-like isoform X1
  KO
K05858  phosphatidylinositol phospholipase C, beta [EC:3.1.4.11]
Organism
asad  Alosa sapidissima (American shad)
Pathway
asad00562  Inositol phosphate metabolism
asad01100  Metabolic pathways
asad04020  Calcium signaling pathway
asad04070  Phosphatidylinositol signaling system
asad04081  Hormone signaling
asad04082  Neuroactive ligand signaling
asad04261  Adrenergic signaling in cardiomyocytes
asad04270  Vascular smooth muscle contraction
asad04310  Wnt signaling pathway
asad04371  Apelin signaling pathway
asad04540  Gap junction
asad04621  NOD-like receptor signaling pathway
asad04912  GnRH signaling pathway
asad04916  Melanogenesis
Module
asad_M00130  Inositol phosphate metabolism, PI=> PIP2 => Ins(1,4,5)P3 => Ins(1,3,4,5)P4
Brite
KEGG Orthology (KO) [BR:asad00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00562 Inositol phosphate metabolism
    121711792
 09130 Environmental Information Processing
  09132 Signal transduction
   04310 Wnt signaling pathway
    121711792
   04371 Apelin signaling pathway
    121711792
   04020 Calcium signaling pathway
    121711792
   04070 Phosphatidylinositol signaling system
    121711792
  09133 Signaling molecules and interaction
   04082 Neuroactive ligand signaling
    121711792
   04081 Hormone signaling
    121711792
 09140 Cellular Processes
  09144 Cellular community - eukaryotes
   04540 Gap junction
    121711792
 09150 Organismal Systems
  09151 Immune system
   04621 NOD-like receptor signaling pathway
    121711792
  09152 Endocrine system
   04912 GnRH signaling pathway
    121711792
   04916 Melanogenesis
    121711792
  09153 Circulatory system
   04261 Adrenergic signaling in cardiomyocytes
    121711792
   04270 Vascular smooth muscle contraction
    121711792
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   04131 Membrane trafficking [BR:asad04131]
    121711792
Enzymes [BR:asad01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.4  Phosphoric-diester hydrolases
    3.1.4.11  phosphoinositide phospholipase C
     121711792
Membrane trafficking [BR:asad04131]
 Exocytosis
  Calcium ion-dependent exocytosis
   Phospholipases
    121711792
 Endocytosis
  Macropinocytosis
   Phospholipase C
    121711792
SSDB
Motif
Pfam: PI-PLC-X PLC-beta_C PH_14 PI-PLC-Y PLCB1-4-like_EFh C2 EF-hand_like
Other DBs
NCBI-GeneID: 121711792
NCBI-ProteinID: XP_041951562
LinkDB
Position
6:16868132..17015525
AA seq 1243 aa
MAGAQPGVHALQLKPVSVSDSLKNGSKFMKWDDDTTAVTPVTLRVDPQGYFLYWTDQNKE
TDVLDISYIKDTRTGKYAKLPKDVKLREQLDVGTLVGKMENRMMTVVSGPDMVNITFLNF
MAFQEEVAKEWTDELFSLASNLLAQNMSRDACLDKTYTRLKLQTNPETGIPVKNIFRMFS
ADRKRVETALENCNLPSGRNDTIPQEDFTPAIFRVFLNGICPRPDLDMIFSEVGAKSRPY
LTLEQLTDFINNRQRDPRLNEILYPPLKAEQVQALVDKYEPSTMLTQRGQISVEGFTRYL
SGEENSIIPPEKLDLSEDMTLPLSHYFINSSHNTYLTAGQLAGNSSVEMYRQVLLSGCRC
VELDCWKGRTAEEEPIITHGFTMTTDISFKEVIEAIAESAFKTSPFPVILSFENHVDSPK
QQAKMAEYCRSIFGEALLIDPLEKYPLEPGVALPSPMDLLGKILIKNKKKSHKADGSTKK
KLTEQTSNPYSDTSSMCEPSSPSAGSTHHEPAERERERDPTQQSPPEGSEGGSQRRKFIG
EVEVDSEEEEDDDEEGKKSVDEDTAGSETFATEEMSNLVNYIQPVKFNSFEGAKKVNRSY
EMSSFVETKALENLTKSPVEFVEYNKFQLSRIYPKGTRYDSSNYMPQVFWNTGCQLVALN
FQMIDLSMQLNLGMFEYNRKSGYRVKPEYMRRSNKQFDPFTERTVDGIVANTLSVKIISG
QFLSDKKVGTYVEVDMFGLPVDTKRKAFRTKTSPGNSLNPVWEEEPIVFKKIVLPTLASL
RIAVFEDGGKFIGHRILPVSAIRPGYHYVALRNEKNQCLTLPTLFVCIEVKDYVPDTFAD
VIEALSNPILYISLMEQRANQLAALTLEEGGEEPEHKEVEKGGDSPSEHKAEPNPLPAEN
GMNHAPLITTKPPSVNQQPPPTAKPAVKSEDIIQTVLTDVQAQSLEELKQQKAFVREQRR
QYKELKELVKQHHKKTAELIKQQTAKHSELNAQLLRRRSSLQKSARRDGKKRSDSQHSLS
ALEQELASLEEESSRRLTELKDQQQQELLQLRQEQYYSEKYLKREHVKQLVEKLTAVAEE
CQNSQLKKLKELCEKEKKDLKKRMDKKRQEKINEARSREKNVTDEEKLEINRTFVNEVVQ
YIKRLEDAQSKRQEKLLDRHKDIRQQILDEKPKLQGELDQEYQDKFRRLPVEIQEFVQDT
AKGCLHLSKMSISTTTERLNSKTSPSEEDVDESPSERVFDTPF
NT seq 3732 nt   +upstreamnt  +downstreamnt
atggcaggagcacaaccgggcgtccacgcgctacagctcaagcctgtgtcggtgtctgac
agcctgaagaatgggagcaaattcatgaaatgggatgatgacaccactgctgtcacccca
gtgaccctacgggtcgacccccagggctacttcctgtactggacggaccagaataaggaa
actgatgtgctggacatttcctacatcaaggacactcggacggggaagtatgccaagctg
cctaaggatgtgaaactgcgtgagcagctggatgttggcactctggtggggaagatggag
aaccgcatgatgacggtggtcagtgggccggacatggtcaacatcaccttcctcaacttc
atggccttccaagaggaggtggccaaggagtggacagacgagctctttagcctggcttcc
aacctgttggctcagaatatgtcacgtgacgcctgcctggataaaacatacaccagactg
aagctgcagaccaaccctgaaaccggcatcccagtgaagaatatattccggatgttctca
gcagaccggaagcgtgtggagacagcgctggagaactgcaatctaccgtctggacggaat
gatactattccacaggaggactttactccagcgattttccgtgtgttcctcaatggcatc
tgccccagaccagacctcgatatgatcttctctgaagtcggggcgaagagccggccctac
ctaacgttggagcagctgaccgatttcatcaacaatcgccagcgagacccgcggctaaac
gagatcctctacccgcccctcaaggccgagcaggtgcaggcattggtggacaagtacgag
cccagcaccatgctcacccagagaggtcagatatcagttgaagggttcacgcgctacctg
agcggggaggagaacagcatcatccctccagagaagctggatctgagtgaagacatgacg
ctccccctctcccactacttcatcaactcctcccacaacacctacctcacagcgggccag
ctggcaggaaactcctcagtggagatgtatcgtcaggtgttgctgtcagggtgtcgctgt
gtggagctggactgctggaagggtcgcaccgctgaggaggagccgatcattacgcatgga
ttcaccatgacaacagatatctccttcaaggaagtcatagaggccattgcagaaagtgca
tttaagacttcgccattccccgtcatcctgtcctttgagaaccatgtggactccccgaag
cagcaagcgaagatggcagagtactgccggtcaatattcggagaggcactgctcatagat
ccacttgagaaatacccgctggagcctggtgtggctttgcccagtcccatggacctgctg
ggcaagatcctgatcaagaacaagaagaaatcccacaaggccgatggcagcaccaagaag
aagctcacagagcagacgtctaatccctacagtgacacctccagcatgtgtgagccttcc
tcacccagtgcagggtcgacgcaccatgagccggctgagcgggagcgagagcgggacccc
acacagcagtccccacctgagggaagtgagggaggctcacaaaggaggaagtttatcggt
gaggtggaggtagacagcgaggaagaggaggatgatgacgaagaaggaaaaaagtcagtg
gatgaggacacagctggcagtgagacatttgcaactgaggaaatgtccaacctggtcaac
tacattcagcctgtgaaattcaactcttttgagggagccaagaaggtcaatcggagctat
gagatgtcatccttcgtggagaccaaggccctggaaaacctcaccaagtcccctgtggag
tttgtagagtataacaagttccagctgagccgtatctacccaaagggcacgcgctatgac
tcctctaactacatgccccaggtcttctggaacactggctgccaactggtggccctcaac
ttccagatgatcgacctgtccatgcagttgaaccttggcatgttcgagtacaacaggaag
agtggctaccgggtcaaaccagagtacatgcgccgctccaacaagcagtttgaccccttt
acagagcgcacagtggacggcatcgtggccaacacactctcagtgaagatcatctctgga
cagttcctctcggacaagaaggtcggcacgtacgtggaggtggacatgtttggccttcca
gttgacaccaagaggaaagccttcaggaccaagacatctccgggaaactccctcaaccca
gtgtgggaggaagagcccatagtcttcaagaagattgtcctgcccactctggcttcgttg
aggatagctgtgtttgaggatggagggaagttcattggacatcggatcttacctgtctca
gctattcgaccaggttaccactatgtggctttgaggaatgagaagaaccagtgtttgaca
ctgcccactctgtttgtctgcattgaggtgaaggattatgtacccgacacatttgcagat
gtgattgaggccctgtccaaccccattctctatatcagtctgatggagcaaagagccaat
cagctggccgcccttacgctggaggagggaggagaggagcccgagcacaaagaggtggag
aagggcggggactcaccctcggaacacaaagctgagcccaatccacttcctgctgagaac
ggcatgaaccacgcccctctcatcaccaccaaacccccgtctgttaaccagcagccaccg
cctacagctaaacctgcagtgaaatcggaggacatcattcagactgtgctgacagacgtg
caggcccagtctctggaggagctgaagcagcagaaggcgtttgtgcgcgagcagcggcgg
cagtacaaggagctcaaggagctggtcaagcagcaccacaagaagacggccgagctcatc
aagcagcagacggccaagcacagcgagctcaatgcccagctgctgcgccgacgctcctcc
ctgcagaagagtgcccgaagagacggtaagaaaagatctgactctcagcacagcctgagc
gcactggagcaggagctggcatctctggaggaggagagtagccggcgactgaccgagctc
aaggatcagcaacagcaggagctgctccaactgcgccaggaacagtactacagtgagaag
taccttaagcgggagcacgtcaaacagctcgtagaaaagctcacagctgtagctgaagag
tgtcagaacagccaactgaagaaactgaaggagctgtgtgaaaaggagaagaaggacctg
aagaagaggatggacaagaagagacaagagaagatcaacgaggccaggtcacgagagaag
aatgttacagacgaggagaagctggaaatcaacaggacatttgtcaacgaggtggtccag
tacataaaacggcttgaagacgctcagagcaaacgtcaggagaagttactggacagacat
aaagacatccggcagcagatcctggacgagaagccaaagttgcaaggcgagctggaccag
gagtaccaggacaagttcaggcgacttccggtggagattcaggagtttgtgcaggacacg
gctaaaggctgcctgcacctctccaaaatgtccatctccacgacaaccgagagactgaac
agcaaaacatcgccgtctgaggaggatgtagatgaaagtccgtccgaaagggtgtttgac
acacccttctga

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