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LotjaGi1g1v0384000.5

Overview

Field Value
Gene ID LotjaGi1g1v0384000
Transcript ID LotjaGi1g1v0384000.5
Related isoforms 4
Lotus japonicus genome version Gifu v1.2
Description Phospholipase D; TAIR: AT3G15730.1 phospholipase D alpha 1; Swiss-Prot: sp|P86387|PLDA1_CARPA Phospholipase D alpha 1; TrEMBL-Plants: tr|G7JB30|G7JB30_MEDTR Phospholipase D; Found in the gene: LotjaGi1g1v0384000
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr1:86745229..86752441) extracted from Lotus japonicus Gifu genome v1.2.

CGTTAACAACTTTGGTCCCTCCCCTCTTTTCCATCCAAAAACTAACGGTTCTAGGGACCAAAAGTGCAATTAAACTAATA AAAGAAATTTTAAAATAAAAATAAAATAAAAACCCAGAAATATTAGTATTGTTCTTCATCATCATCTTCTTCCTCTTCAA TTTCATCATCTTCAAACCCAAAACCCAGAAAAATCTATGAAACCCCAAATTAAGTAAAACCCAAAATACCCACACTTTTT CCCCTCTATCACCCTGTCTCTCATCATTGAATCACTCTCCATCACCTAACCTTTCGAGATCTGGTCATAGTGTGAGAACG ATCACGAAATCAAAAGTGCTTCCAGTGGATGAGGAATCCAAGAACCCAAAATAAGAGAATGAAGAAACCCCATGATTCCA GAATGTAAAATGATTCATATTTTTTCTAAGAAATTGAAGGGAGAAGAGGAAAAGGAGAAGGAGGTAAAACCCACGTCTTC CTTCATCACTTTCAGACTCGGATTTGCGAGAGGAAAATGAAAGGAGAAGAAGAGGTAAAACCCATGGCTTCAATTCGTCC CTTTCAACGACCCAGATATGTTTGATTCCAGATATGGTGGCGGTAGTTTGATTCCAGATATGTTTTCTTTCTTTGGAAAT TTTTTATCCTGTCATTTTTCCATCCAGATCTGTTATTATATCTCCTATCCTTCCAGATTTGTTTGATTTCATATTCCAAA TTGCATCTGTTGTTCTAGATATGCTGCAAAGAAATTACATGTTATGAGTTTTTAATTTGCAAGATTGAAATCTGCAACAA ATAAATTACATGAAATGTTCTGAAAAGATTCAAAGTTTTCCATGGAATGAAGATGATGAAATTGAAGAGGAAGAAGATAA AGAAAGATAAAGAACAATATTCATGTTTTATGAGTTTTAATTTTAATATTTAATTTTTAATTCTTTTTTAGGAGAGAGAA ACGTTTGAAAACTAACGGAATAGAGGGTCCGGACTAAAGTTGCTAACGGAGCATAACGTGGGGGACGCTCCATGCAATAA AATTTTGTTGGGGACCGGAATCGTGCCTTTTGTAATCGTGGGGGACCAAAAGTGCAATTAAGCCTTTTAAGAACTAAGGA GTCCATGTCAGCACCTCCAGTGGTAAAGTTTTTAGTTCTTAGTTCTTAACTCCAAAATAAGAACTAAGAACCTTGCATTG GAGATGCTCTTAGCGTGTTTAACATGTGGCCAGTTACTTCTCGACCAGTTGACCCTTAATAATATTTATGTTTAGTTTCA AAAAAAAATGTGACTAGTTACTTTCAAAAAAAAATACATGTGACTAGTTAATTTGAGAATACATTTAGATTATTTTAATA TTTTATAGGTTTTTTAATTTTTATTGAGCGGCAATATGCCGCTAGCATTTTAGCTCGTGGGCTAAGCGAGGTAGACCTCA TAAAACGTCGATCGATTTATAATGCGTGCTTTTACACCTCGATCCATTAAACCTCGGGCCTAGCTAAGTAAGGCTCAGAC TTAAGTGGATCGAACTAATTCAATACTCAACTCTTTTTTTTTTGATGGAAAATGCAACTTCATTAGATAATAACTGAAAA TACATCTGCTAAAAGCACAGTTTGGATTTGAGTAGGAAAGTTCTCCCACCAACAATGGTTTGGATACTCCGCCGCAAAGC GACGCTAAAATATGGGCTACTTTATTGGCATCCCGCTTAACATGTTGCAGTTTAAAAGTAGGGATATGAGCTGCAAGCAT CGGACAATCTTGAATAATTGGTTCCAGCGTAGGTCGTCCCTTTCCATTATTGAAAGAATTCACCACTGTTAGGGCATCAG ACTCAACAACTACTGTGTCTAGCTCCAAAGCCTGAATTCGTGCAAGTGCCCACCTTAGAGTTGTCGTTTCTGCCATAGCT GGTTCCAACCGGTGTTCTAGAATGGCTGTCTCTACTCAACTCTACTAACACACATAAGCGACAATTATGCGATTTTTCTG TTAAGTGATAATATTGTTCGTATTTAAAATATGAAAATAATAAATCTTATGTTTTCAAAATGACTTGAGGTTATCAAACT AGTCGAGGGAGTCAATTTGGGATGGCCAACAATGGACAAGCATATTTTCAAGCCGATTTGGCCCGAACTAAAATTGATGC AGGCTACTAATTTACAAGTCCAGCCAGCCCGTGCCCCACGAGCTAGCTCATGGGCCATTAATTTTTAAAACTTCACTTGA AAATATATTTTTTTTAAGTTTAAGGTAAAAAAGCATTTTTTTCTACGAAATATTTAAAAATAGGTATGAGGATGTATAGG ACGCTACACATTAATCCTAGCAAGCAATGGTAACTTGGGTTATGGACAAGCCACATATCTTTGCAAAACAGGCTCCTAGT CCATTCCAAGTAAGCAAGTGCTCCCTTCAAGCCAAGGAGAAGGAGGGAATCAAATCTAGTTATTGTTCTCCCAAGACACT TCTCTTTCTTCAAACTAAATACTCCTAGATTCCCTCTCCATGTCTCTTTATACATAACTATCAGCTTGAATGTAACCTTT AATTGTTTCCATGCATTTACATTTCCAGAGAAGAAAAAATTCCCATTTTTATCAGCCATCTCCATTAGTCTTTTACATTT TGTGAAAATTGGAATATTATTTGTTATGATACTGATCATAGCATAGGATGCAGGGGAGAAGTATATATAAAATGCAACAC AACAAAATGCCTCAGCTGCTACATGGGAAGCTTAAGGTAACCATATTTGAAGTTGATAGGCTGCAAGCTGGATGTAATTT GGAATTCTTGCGGAAGGTATCTCCATTAAATCTCTCTCTTGTTCAATCAATCATTAAGGGAAAAAAGGAGCAAAAGAAAC TTTTAATGATGAAATGGAATGATGTGCTTGACACATTACTAAAGGAGTTAAAGATGATTTTCAAATTAGGATATATGTTT GAAAATGATGATTCTGTAATTATCTGAATATCAAATTTTAGTCCCCTTTAGTTTCTCAACTTTTTAATTATTGCACATCA AGTCACTCTATCATTACTATTACTATTCTATTCAAAATCATTACAATCTTGTTTTTTAAGAAAAATATTCTCACATTGAA TAAGAGGGTGACCGGTACCAGATGTTTATACGAAAAAATATAACCATTGTATACCTTATTCATATCAAAACTCACTAATC AAAACATTAATTAAAAAAAACCTCGATTTCACACCTCTTTAAATCATAATGCCATATACTAAAAAATCCTTCAAAATTTT AATAACATTTCACTAAATTTTAACTTTTAAATTTTAAAACTACATCATACATCATATCCATCATAACTCTAAATTATTTG GAAATAAAATGAGCACTTAATGATTTTATGCATGTGCAAATTGAGAGAGACCAAATTTGCTTAATTTTTTTCTTTCAAGT TTTTCTTTGCTTAATTTTAGAAAATAAAGAGAATTGATTAGCTCAAAAAAATGTACAAGACCAAATTCACACGGTCTAAA CTAAAAGGACCAAAAATTAAATTAAGCCATAAATATATAATGAAAGAATATACTCGTATTTGACTTTATAATTGCTTTAC CTATGGGTTAATTATTTGTGTGATTTCAAAGTTAGTCATTATATTACTTAGAAAAACCACTCTTCAAGTAAACTTATCCA AAAATATATACTTTCATAAAAATCCAACTTATTTCACATTATTTCTTTGCAACATTGCATGTGTGGATATTAGATACACA ATAGAAAAACACGGAGAGTCAAAATCATGGTAGATAGAAGCAACTTCTTTTAGCTTTTGTTGTTGTTTACCATAATTTTT AGTTTACCTTATTTTAGTTTTTCATTGTGTATCCAAATATGCACTCAAATGCTTTATTGCATCCCTTACGTTTTAATTTG AAGAGAAATTAACGCTCTTTTCAATCTGCCTTTTCATTTTCTTCTATTTTTTTTTTTTTGAGTAAAGGGCACAACACAAA AGGGGAAGAGACTTCTAGCCCAAGTTAAGGGTTGTCTGCTGTGCCGACCTGAGGTATGTTAACTAACTTTTCCACCTTTC TGCACTTCAATTTTTTTCACTTTTGCAGGAAACATGCTTCATTTTCTATACATAAACATATGTGAAAAAAAAATTCTTAT TAGTCATAACATGTACAAACTTCATGAAGATTGTTGGTACAAGACTATATGCAACAGTGGATTTAGACAAAGCAAGGGTT AGAAGGACCAGAATGATAGGAAACCAACCCTCCAACCCCAAGTGGAAGGAGAGCTTTGAAATATATTGTGCTCATCATAT CTCAAACATTATATTCACTGTAAAAGATGATAATCCAATTGGAGCAACTCTAATTGGAAGAGCTTACATCCCTGTTGAGC AAGTCATCAAGACCCCTATAATTAACAGATGGGTTGAGATACTAGATGAAGAAGATCATCGCCCTGTCCCTGGTGGCTCC AAAATTCGTGTCAGTGTGCAATTCTCTAGTGTCACCGAGGACAATGCATGTCTATGGTCCCAAGGAATACATGTGCCATT TTCAGGTGTTCCTCGTACATTTTTCAACCAAAGACAAGGTTGCAGTCTCACTTTGTACCAAGATGCCCATGTCCCTGATG GTTCCACCCCATGGATTCCTATATCAGGAACAAAATATTACGTGCCTGCAAGATGTTGGGAGGACATTTACAGTGCAATC ATGGATGCTAAGCACTTTATTTACATAGCAGGGTGGTCAGTTTACACTGAAATAAACTTGGTTAGAGACCCAAAGAATTT AGGTTCAGAAAGCGTCATCACCCTTGGGGAACTTCTCAAAATGAAAGCTGATGGTGGTGTTAATGTTCTCATGCTTGTTT GGGATGACAGAACCTCTGTTCCAGATTTCAAGAAAGATGGCTTGATGGCAACCCATGATCAGGAAACTGCACAGTACTTT AGGAACACAAAGGTTCATTGTGTGTTGTGCCCACGTAACCCAGATAATGGAAGAAGCATTGTTCAAGGTCTTCAAATCTC AACAATGTTCACTCATCACCAAAAGACTATAGTTCTTGACAGTCAAGTTACAGGATTAGAGAAGCGAAGTGTGACAAGTT TTATAGGTGGACTTGATCTTTGTGATGGGAGATATGATACCCGTGAACATCCTTTGTTCTCAACTCTGAACACAGTCCAT CATGCTGATTTCCATCAACCAAATTTCCCAGGAGCTTCCATTAAGAAAGGTGGTCCAAGAGAGCCATGGCATGACATTCA TTGCAAGCTGGAAGGGCCTATTGCATGGGATGTGTTGTTCAATTTTGAGCAAAGGTGGGAAAAGCAAGTGGGGAAGCAAT TCTTGATGTCAATTGATGAGCTTGATCGATTTCTGGTGCATCCATCTGATGCAATGGTATCAGAAGAGGATAAGGACACA TGGAGTGTTCAGTTGTTCAGATCCATTGATGGGGGTGCTGTTTCTAGCTTCCCCCAAGCCCCAGATGAAGTTGCTGAATT CGGCCTCATTAGTGGCAAGGATAATGTCATTGACAGAAGCATTCAGGATGCATACATAAATGCTATTCGACGAGCAAAGA AATTCATCTACATTGAAAATCAATATTTCCTAGGGAGTTCATATGGTTGGAAAAGTTCTGATATCAAAGTTGAGGATATC AATGCTTTGCATCTGATACCAAAGGAGTTGTCATTGAAGATTGTGAGCAAGATTGAAGCAGGGGAAAGGTTTGTTGTGTA TGTAGTGATCCCAATGTGGCCAGAAGGTATGCCTGAAAGTGCTTCAGTTCAGGCAATACTAGATTGGCAAAGGAGGACCA TGGAGATGATGTATTCTGACATTGCTGATGCCATCAAGAAGAAGAATATTGAAGCACACCCCAGAGATTATTTGACATTC TTTTGCCTTGGCAAGAGGGAGAGTAAGATAGAAGGAGAATACACTCCTCCAGAGGAACCAGAGCCTGACAGTGACTACCG AAGAGCACAAAATGCTAGGAGGTTCATGATCTATGTTCATTCCAAGATGATGATAGGTAAGAGATCATTACTTCTATAAA TCATATGTTCTTGCTCGTACAAATTAAGTGTATTTAATTTCATGCAAATTAGGGATATGTAGTTTCCTAGTTTTGATTAA ATATAAGCACACATGTGAGTCCAAAACCCATAAGTTAGTACACATTATTTATAAGCACACATGTGAGTCCAAAACCCATA AATTAGTATTTTCACTTTCTTGTTAAGGGAATGTAAGCAAGATTACTCAAAGAGATAATCAAACACACTCTTAGACATAA ATTTAGCTAAAAAAAGTTAGTCCTATGTTAATTATACACATGGCTAATGTAATTCTCATAAAAAGTATAAGAATCCTAAT ATTTAAACTAAATTTAGGGTAAATTTGTACCTGAATTCTAAAATAGTATCAAAGTTTATTCTAATCCTACCGAAGAGTGT CTTGAAGCTCTGCATTGACAAAAATAATAATTTAGAGGTAGACTAATTTATGAGTTCTAACATAAGTTAATCAAAATAAA CTCAAAATAATTTTCACTTATATCGCTAATGTCAAGTTGAGCATTAATTGAACCCTAACATTGGTGAATTGCTTTGTTGT TTCAGTGGATGATGAATACATCATCATCGGTTCCGCCAACATCAACCAAAGATCAATGGATGGTGGAAGAGATACAGAGA TAGCAATGGGAGCATTCCAACCGCATCATCTAGCATCAAACGGTCCACAAAGGCCACAAGGCCAGATTTACGGGTTTCGG CGAGCATTGTGGTACGAGCATATTGGGTATGCTCACGATGTGTTCGACGAGCCTGAGAGTGAGGAATGTGTGAAACTAGT GAATCGCATTGCTGAGACGAATTGGGAATTATACACGAAGGACACGGTTGATGAAAGTGTAGCATCGGTTCACATTTTAC GATATCCTGTAGAAATTGCTGAAGATGGAACCATAACGACACCGCCAGGACATGAATTTTTTCCTGACACCAAGGCTCGT ATTCTTGGTGCAAAATCTGATTACCTTCCTCCAATTCTTACAACTTAACTAACACATTGTGAATATAAACTCGAAATTAT GTGATGGCCAAAAATAAAAATAAAAATAAACTTGAAATTCTGCTCTATTCGTAATGAATACTCTTACTATATTTTCTCTT TCAAAAAGAAAAC 

CDS sequence (LotjaGi1g1v0384000.5) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGAAGATTGTTGGTACAAGACTATATGCAACAGTGGATTTAGACAAAGCAAGGGTTAGAAGGACCAGAATGATAGGAAA CCAACCCTCCAACCCCAAGTGGAAGGAGAGCTTTGAAATATATTGTGCTCATCATATCTCAAACATTATATTCACTGTAA AAGATGATAATCCAATTGGAGCAACTCTAATTGGAAGAGCTTACATCCCTGTTGAGCAAGTCATCAAGACCCCTATAATT AACAGATGGGTTGAGATACTAGATGAAGAAGATCATCGCCCTGTCCCTGGTGGCTCCAAAATTCGTGTCAGTGTGCAATT CTCTAGTGTCACCGAGGACAATGCATGTCTATGGTCCCAAGGAATACATGTGCCATTTTCAGGTGTTCCTCGTACATTTT TCAACCAAAGACAAGGTTGCAGTCTCACTTTGTACCAAGATGCCCATGTCCCTGATGGTTCCACCCCATGGATTCCTATA TCAGGAACAAAATATTACGTGCCTGCAAGATGTTGGGAGGACATTTACAGTGCAATCATGGATGCTAAGCACTTTATTTA CATAGCAGGGTGGTCAGTTTACACTGAAATAAACTTGGTTAGAGACCCAAAGAATTTAGGTTCAGAAAGCGTCATCACCC TTGGGGAACTTCTCAAAATGAAAGCTGATGGTGGTGTTAATGTTCTCATGCTTGTTTGGGATGACAGAACCTCTGTTCCA GATTTCAAGAAAGATGGCTTGATGGCAACCCATGATCAGGAAACTGCACAGTACTTTAGGAACACAAAGGTTCATTGTGT GTTGTGCCCACGTAACCCAGATAATGGAAGAAGCATTGTTCAAGGTCTTCAAATCTCAACAATGTTCACTCATCACCAAA AGACTATAGTTCTTGACAGTCAAGTTACAGGATTAGAGAAGCGAAGTGTGACAAGTTTTATAGGTGGACTTGATCTTTGT GATGGGAGATATGATACCCGTGAACATCCTTTGTTCTCAACTCTGAACACAGTCCATCATGCTGATTTCCATCAACCAAA TTTCCCAGGAGCTTCCATTAAGAAAGGTGGTCCAAGAGAGCCATGGCATGACATTCATTGCAAGCTGGAAGGGCCTATTG CATGGGATGTGTTGTTCAATTTTGAGCAAAGGTGGGAAAAGCAAGTGGGGAAGCAATTCTTGATGTCAATTGATGAGCTT GATCGATTTCTGGTGCATCCATCTGATGCAATGGTATCAGAAGAGGATAAGGACACATGGAGTGTTCAGTTGTTCAGATC CATTGATGGGGGTGCTGTTTCTAGCTTCCCCCAAGCCCCAGATGAAGTTGCTGAATTCGGCCTCATTAGTGGCAAGGATA ATGTCATTGACAGAAGCATTCAGGATGCATACATAAATGCTATTCGACGAGCAAAGAAATTCATCTACATTGAAAATCAA TATTTCCTAGGGAGTTCATATGGTTGGAAAAGTTCTGATATCAAAGTTGAGGATATCAATGCTTTGCATCTGATACCAAA GGAGTTGTCATTGAAGATTGTGAGCAAGATTGAAGCAGGGGAAAGGTTTGTTGTGTATGTAGTGATCCCAATGTGGCCAG AAGGTATGCCTGAAAGTGCTTCAGTTCAGGCAATACTAGATTGGCAAAGGAGGACCATGGAGATGATGTATTCTGACATT GCTGATGCCATCAAGAAGAAGAATATTGAAGCACACCCCAGAGATTATTTGACATTCTTTTGCCTTGGCAAGAGGGAGAG TAAGATAGAAGGAGAATACACTCCTCCAGAGGAACCAGAGCCTGACAGTGACTACCGAAGAGCACAAAATGCTAGGAGGT TCATGATCTATGTTCATTCCAAGATGATGATAGTGGATGATGAATACATCATCATCGGTTCCGCCAACATCAACCAAAGA TCAATGGATGGTGGAAGAGATACAGAGATAGCAATGGGAGCATTCCAACCGCATCATCTAGCATCAAACGGTCCACAAAG GCCACAAGGCCAGATTTACGGGTTTCGGCGAGCATTGTGGTACGAGCATATTGGGTATGCTCACGATGTGTTCGACGAGC CTGAGAGTGAGGAATGTGTGAAACTAGTGAATCGCATTGCTGAGACGAATTGGGAATTATACACGAAGGACACGGTTGAT GAAAGTGTAGCATCGGTTCACATTTTACGATATCCTGTAGAAATTGCTGAAGATGGAACCATAACGACACCGCCAGGACA TGAATTTTTTCCTGACACCAAGGCTCGTATTCTTGGTGCAAAATCTGATTACCTTCCTCCAATTCTTACAACTTAA 

Protein sequence (LotjaGi1g1v0384000.5) extracted from Lotus japonicus Gifu v1.2 Proteins.

MKIVGTRLYATVDLDKARVRRTRMIGNQPSNPKWKESFEIYCAHHISNIIFTVKDDNPIGATLIGRAYIPVEQVIKTPII NRWVEILDEEDHRPVPGGSKIRVSVQFSSVTEDNACLWSQGIHVPFSGVPRTFFNQRQGCSLTLYQDAHVPDGSTPWIPI SGTKYYVPARCWEDIYSAIMDAKHFIYIAGWSVYTEINLVRDPKNLGSESVITLGELLKMKADGGVNVLMLVWDDRTSVP DFKKDGLMATHDQETAQYFRNTKVHCVLCPRNPDNGRSIVQGLQISTMFTHHQKTIVLDSQVTGLEKRSVTSFIGGLDLC DGRYDTREHPLFSTLNTVHHADFHQPNFPGASIKKGGPREPWHDIHCKLEGPIAWDVLFNFEQRWEKQVGKQFLMSIDEL DRFLVHPSDAMVSEEDKDTWSVQLFRSIDGGAVSSFPQAPDEVAEFGLISGKDNVIDRSIQDAYINAIRRAKKFIYIENQ YFLGSSYGWKSSDIKVEDINALHLIPKELSLKIVSKIEAGERFVVYVVIPMWPEGMPESASVQAILDWQRRTMEMMYSDI ADAIKKKNIEAHPRDYLTFFCLGKRESKIEGEYTPPEEPEPDSDYRRAQNARRFMIYVHSKMMIVDDEYIIIGSANINQR SMDGGRDTEIAMGAFQPHHLASNGPQRPQGQIYGFRRALWYEHIGYAHDVFDEPESEECVKLVNRIAETNWELYTKDTVD ESVASVHILRYPVEIAEDGTITTPPGHEFFPDTKARILGAKSDYLPPILTT 

Domain prediction

Data for domain prediction are obtained with InterProScan, and merged with InterPro data obtained from the EB-eye REST service.

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Domains

Sorting

Prediction algorithm Identifier Start End Length E-value InterPro ID
PIRSF 1 771 771 0.0
PANTHER 2 771 770 0.0
CDD 2 107 106 2.53524E-47
PANTHER 2 771 770 0.0
SMART 3 83 81 1.6E-4
Gene3D 5 119 115 3.8E-12
SUPERFAMILY 8 109 102 3.27E-16
Pfam 8 85 78 7.1E-13
SUPERFAMILY 126 395 270 1.19E-29
ProSiteProfiles 287 323 37 10.457
SMART 287 323 37 0.26
Pfam 287 323 37 5.0E-8
Gene3D 425 661 237 3.5E-22
SUPERFAMILY 460 699 240 2.27E-28
SMART 614 641 28 1.9E-8
ProSiteProfiles 614 641 28 15.45
Pfam 615 641 27 1.6E-7
Pfam 689 761 73 1.3E-25

Gene function (GO predictions)

GO predictions are based solely on the InterPro-to-GO mappings published by EMBL-EBI, which are in turn based on the mapping of predicted domains to the InterPro dataset. The InterPro-to-GO mapping was last updated on , while the GO metadata was last updated on .

GO term Namespace Name Definition Relationships
Molecular function Catalytic activity Catalysis of a biochemical reaction at physiological temperatures. In biologically catalyzed reactions, the reactants are known as substrates, and the catalysts are naturally occurring macromolecular substances known as enzymes. Enzymes possess specific binding sites for substrates, and are usually composed wholly or largely of protein, but RNA that has catalytic activity (ribozyme) is often also regarded as enzymatic.
Molecular function Phospholipase D activity Catalysis of the reaction: a phosphatidylcholine + H2O = choline + a phosphatidate.
Molecular function Calcium ion binding Interacting selectively and non-covalently with calcium ions (Ca2+).
Cellular component Membrane A lipid bilayer along with all the proteins and protein complexes embedded in it an attached to it.
Biological process Phosphatidylcholine metabolic process The chemical reactions and pathways involving phosphatidylcholines, any of a class of glycerophospholipids in which the phosphatidyl group is esterified to the hydroxyl group of choline. They are important constituents of cell membranes.

Expression data

Expression pattern

Expression pattern of LotjaGi1g1v0384000.5, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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