Toggle navigation
About
What is Reactome ?
News
Team
Scientific Advisory Board
Editorial Calendar
Statistics
Our Logo
License Agreement
Privacy Notice
Disclaimer
Content
Table of Contents
DOIs
Data Schema
Reactome Research Spotlight
ORCID Integration Project
COVID-19 Disease Pathways
Docs
Userguide
Pathway Browser
How do I search ?
Details Panel
Analysis Tools
Analysis Data
Analysis Gene Expression
Species Comparison
Tissue Distribution
Diseases
ReactomeFIViz
Developer's Zone
Graph Database
Analysis Service
Content Service
Pathways Overview
Pathway Diagrams
Icon Info
EHLD Specs & Guidelines
Icon Library Guidelines
Data Model
Computationally inferred events
Linking to Us
Citing us
Tools
Pathway Browser
Analyse gene list
Analyse gene expression
Species Comparison
Tissue Distribution
Analysis Service
Content Service
ReactomeFIViz
Overlays
DisGeNET
Web
API
Advanced Data Search
Site Search
Community
Icon Library
Outreach
Events
Training
Publications
Partners
Papers Citing Us
Resources Guide
Collaboration
Download
About
What is Reactome ?
News
Team
Scientific Advisory Board
Editorial Calendar
Statistics
Our Logo
License Agreement
Privacy Notice
Disclaimer
Content
Table of Contents
DOIs
Data Schema
Reactome Research Spotlight
ORCID Integration Project
COVID-19 Disease Pathways
Docs
Userguide
Pathway Browser
How do I search ?
Details Panel
Analysis Tools
Analysis Data
Analysis Gene Expression
Species Comparison
Tissue Distribution
Diseases
ReactomeFIViz
Developer's Zone
Graph Database
Analysis Service
Content Service
Pathways Overview
Pathway Diagrams
Icon Info
EHLD Specs & Guidelines
Icon Library Guidelines
Data Model
Computationally inferred events
Linking to Us
Citing us
Tools
Pathway Browser
Analyse gene list
Analyse gene expression
Species Comparison
Tissue Distribution
Analysis Service
Content Service
ReactomeFIViz
Overlays
DisGeNET
Web
API
Advanced Data Search
Site Search
Community
Icon Library
Outreach
Events
Training
Publications
Partners
Papers Citing Us
Resources Guide
Collaboration
Download
Search ...
Go!
PE [endoplasmic reticulum membrane]
Stable Identifier
R-ALL-1500581
Type
Chemical Compound [SimpleEntity]
Compartment
endoplasmic reticulum membrane
Synonyms
phosphatidylethanolamine
Locations in the PathwayBrowser
for Species:
Homo sapiens
Bos taurus
Caenorhabditis elegans
Canis familiaris
Danio rerio
Dictyostelium discoideum
Drosophila melanogaster
Gallus gallus
Mus musculus
Plasmodium falciparum
Rattus norvegicus
Saccharomyces cerevisiae
Schizosaccharomyces pombe
Sus scrofa
Xenopus tropicalis
Expand all
Metabolism (Bos taurus)
Metabolism of lipids (Bos taurus)
Phospholipid metabolism (Bos taurus)
Glycerophospholipid biosynthesis (Bos taurus)
Acyl chain remodelling of PE (Bos taurus)
1-acyl LPE is acylated to PE by LPEAT (Bos taurus)
PE [endoplasmic reticulum membrane]
2-acyl LPE is acylated to PE by LPEAT (Bos taurus)
PE [endoplasmic reticulum membrane]
HRASLS transfer acyl group from PC to PE to form NAPE (Bos taurus)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Bos taurus)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Bos taurus)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Bos taurus)
PE [endoplasmic reticulum membrane]
Synthesis of PC (Bos taurus)
PE is methylated to PC by PEMT (Bos taurus)
PE [endoplasmic reticulum membrane]
Synthesis of PE (Bos taurus)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Bos taurus)
PE [endoplasmic reticulum membrane]
Synthesis of PS (Bos taurus)
PE is converted to PS by PTDSS2 (Bos taurus)
PE [endoplasmic reticulum membrane]
Metabolism of proteins (Bos taurus)
Post-translational protein modification (Bos taurus)
Post-translational modification: synthesis of GPI-anchored proteins (Bos taurus)
Synthesis of glycosylphosphatidylinositol (GPI) (Bos taurus)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Bos taurus)
PE [endoplasmic reticulum membrane]
Metabolism (Caenorhabditis elegans)
Metabolism of lipids (Caenorhabditis elegans)
Phospholipid metabolism (Caenorhabditis elegans)
Glycerophospholipid biosynthesis (Caenorhabditis elegans)
Acyl chain remodelling of PE (Caenorhabditis elegans)
1-acyl LPE is acylated to PE by LPEAT (Caenorhabditis elegans)
PE [endoplasmic reticulum membrane]
2-acyl LPE is acylated to PE by LPEAT (Caenorhabditis elegans)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Caenorhabditis elegans)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Caenorhabditis elegans)
PE [endoplasmic reticulum membrane]
Synthesis of PE (Caenorhabditis elegans)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Caenorhabditis elegans)
PE [endoplasmic reticulum membrane]
Metabolism of proteins (Caenorhabditis elegans)
Post-translational protein modification (Caenorhabditis elegans)
Post-translational modification: synthesis of GPI-anchored proteins (Caenorhabditis elegans)
Synthesis of glycosylphosphatidylinositol (GPI) (Caenorhabditis elegans)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Caenorhabditis elegans)
PE [endoplasmic reticulum membrane]
Metabolism (Canis familiaris)
Metabolism of lipids (Canis familiaris)
Phospholipid metabolism (Canis familiaris)
Glycerophospholipid biosynthesis (Canis familiaris)
Acyl chain remodelling of PE (Canis familiaris)
1-acyl LPE is acylated to PE by LPEAT (Canis familiaris)
PE [endoplasmic reticulum membrane]
2-acyl LPE is acylated to PE by LPEAT (Canis familiaris)
PE [endoplasmic reticulum membrane]
HRASLS transfer acyl group from PC to PE to form NAPE (Canis familiaris)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Canis familiaris)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Canis familiaris)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Canis familiaris)
PE [endoplasmic reticulum membrane]
Synthesis of PC (Canis familiaris)
PE is methylated to PC by PEMT (Canis familiaris)
PE [endoplasmic reticulum membrane]
Synthesis of PE (Canis familiaris)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Canis familiaris)
PE [endoplasmic reticulum membrane]
Synthesis of PS (Canis familiaris)
PE is converted to PS by PTDSS2 (Canis familiaris)
PE [endoplasmic reticulum membrane]
Metabolism of proteins (Canis familiaris)
Post-translational protein modification (Canis familiaris)
Post-translational modification: synthesis of GPI-anchored proteins (Canis familiaris)
Synthesis of glycosylphosphatidylinositol (GPI) (Canis familiaris)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Canis familiaris)
PE [endoplasmic reticulum membrane]
Metabolism (Danio rerio)
Metabolism of lipids (Danio rerio)
Phospholipid metabolism (Danio rerio)
Glycerophospholipid biosynthesis (Danio rerio)
Acyl chain remodelling of PE (Danio rerio)
1-acyl LPE is acylated to PE by LPEAT (Danio rerio)
PE [endoplasmic reticulum membrane]
2-acyl LPE is acylated to PE by LPEAT (Danio rerio)
PE [endoplasmic reticulum membrane]
HRASLS transfer acyl group from PC to PE to form NAPE (Danio rerio)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Danio rerio)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Danio rerio)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 2-acyl LPE by PLA2G4C (Danio rerio)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Danio rerio)
PE [endoplasmic reticulum membrane]
Synthesis of PC (Danio rerio)
PE is methylated to PC by PEMT (Danio rerio)
PE [endoplasmic reticulum membrane]
Synthesis of PE (Danio rerio)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Danio rerio)
PE [endoplasmic reticulum membrane]
Synthesis of PS (Danio rerio)
PE is converted to PS by PTDSS2 (Danio rerio)
PE [endoplasmic reticulum membrane]
Metabolism of proteins (Danio rerio)
Post-translational protein modification (Danio rerio)
Post-translational modification: synthesis of GPI-anchored proteins (Danio rerio)
Synthesis of glycosylphosphatidylinositol (GPI) (Danio rerio)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Danio rerio)
PE [endoplasmic reticulum membrane]
Metabolism (Dictyostelium discoideum)
Metabolism of lipids (Dictyostelium discoideum)
Phospholipid metabolism (Dictyostelium discoideum)
Glycerophospholipid biosynthesis (Dictyostelium discoideum)
Acyl chain remodelling of PE (Dictyostelium discoideum)
1-acyl LPE is acylated to PE by LPEAT (Dictyostelium discoideum)
PE [endoplasmic reticulum membrane]
2-acyl LPE is acylated to PE by LPEAT (Dictyostelium discoideum)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Dictyostelium discoideum)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Dictyostelium discoideum)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 2-acyl LPE by PLA2G4C (Dictyostelium discoideum)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Dictyostelium discoideum)
PE [endoplasmic reticulum membrane]
Synthesis of PC (Dictyostelium discoideum)
PE is methylated to PC by PEMT (Dictyostelium discoideum)
PE [endoplasmic reticulum membrane]
Synthesis of PE (Dictyostelium discoideum)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Dictyostelium discoideum)
PE [endoplasmic reticulum membrane]
Synthesis of PS (Dictyostelium discoideum)
PE is converted to PS by PTDSS2 (Dictyostelium discoideum)
PE [endoplasmic reticulum membrane]
Metabolism of proteins (Dictyostelium discoideum)
Post-translational protein modification (Dictyostelium discoideum)
Post-translational modification: synthesis of GPI-anchored proteins (Dictyostelium discoideum)
Synthesis of glycosylphosphatidylinositol (GPI) (Dictyostelium discoideum)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Dictyostelium discoideum)
PE [endoplasmic reticulum membrane]
Metabolism (Drosophila melanogaster)
Metabolism of lipids (Drosophila melanogaster)
Phospholipid metabolism (Drosophila melanogaster)
Glycerophospholipid biosynthesis (Drosophila melanogaster)
Acyl chain remodelling of PE (Drosophila melanogaster)
1-acyl LPE is acylated to PE by LPEAT (Drosophila melanogaster)
PE [endoplasmic reticulum membrane]
2-acyl LPE is acylated to PE by LPEAT (Drosophila melanogaster)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Drosophila melanogaster)
PE [endoplasmic reticulum membrane]
Synthesis of PE (Drosophila melanogaster)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Drosophila melanogaster)
PE [endoplasmic reticulum membrane]
Metabolism of proteins (Drosophila melanogaster)
Post-translational protein modification (Drosophila melanogaster)
Post-translational modification: synthesis of GPI-anchored proteins (Drosophila melanogaster)
Synthesis of glycosylphosphatidylinositol (GPI) (Drosophila melanogaster)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Drosophila melanogaster)
PE [endoplasmic reticulum membrane]
Metabolism (Gallus gallus)
Metabolism of lipids (Gallus gallus)
Phospholipid metabolism (Gallus gallus)
Glycerophospholipid biosynthesis (Gallus gallus)
Acyl chain remodelling of PE (Gallus gallus)
1-acyl LPE is acylated to PE by LPEAT (Gallus gallus)
PE [endoplasmic reticulum membrane]
2-acyl LPE is acylated to PE by LPEAT (Gallus gallus)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Gallus gallus)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Gallus gallus)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Gallus gallus)
PE [endoplasmic reticulum membrane]
Synthesis of PC (Gallus gallus)
PE is methylated to PC by PEMT (Gallus gallus)
PE [endoplasmic reticulum membrane]
Synthesis of PE (Gallus gallus)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Gallus gallus)
PE [endoplasmic reticulum membrane]
Synthesis of PS (Gallus gallus)
PE is converted to PS by PTDSS2 (Gallus gallus)
PE [endoplasmic reticulum membrane]
Metabolism of proteins (Gallus gallus)
Post-translational protein modification (Gallus gallus)
Post-translational modification: synthesis of GPI-anchored proteins (Gallus gallus)
Synthesis of glycosylphosphatidylinositol (GPI) (Gallus gallus)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Gallus gallus)
PE [endoplasmic reticulum membrane]
Metabolism (Homo sapiens)
Metabolism of lipids (Homo sapiens)
Phospholipid metabolism (Homo sapiens)
Glycerophospholipid biosynthesis (Homo sapiens)
Acyl chain remodelling of PE (Homo sapiens)
1-acyl LPE is acylated to PE by LPEAT (Homo sapiens)
PE [endoplasmic reticulum membrane]
2-acyl LPE is acylated to PE by LPEAT (Homo sapiens)
PE [endoplasmic reticulum membrane]
HRASLS transfer acyl group from PC to PE to form NAPE (Homo sapiens)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Homo sapiens)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Homo sapiens)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 2-acyl LPE by PLA2G4C (Homo sapiens)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Homo sapiens)
PE [endoplasmic reticulum membrane]
Synthesis of PC (Homo sapiens)
PE is methylated to PC by PEMT (Homo sapiens)
PE [endoplasmic reticulum membrane]
Synthesis of PE (Homo sapiens)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Homo sapiens)
PE [endoplasmic reticulum membrane]
PE transports from the mitochondrial membrane to the ER (Homo sapiens)
PE [endoplasmic reticulum membrane]
Synthesis of PS (Homo sapiens)
PE is converted to PS by PTDSS2 (Homo sapiens)
PE [endoplasmic reticulum membrane]
Metabolism of proteins (Homo sapiens)
Post-translational protein modification (Homo sapiens)
Post-translational modification: synthesis of GPI-anchored proteins (Homo sapiens)
Synthesis of glycosylphosphatidylinositol (GPI) (Homo sapiens)
mannose (a1-2) mannose (a1-6) (ethanolamineP) mannose (a1-4) glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose (a1-2) mannose (a1-6) (ethanolamineP) mannose (a1-4) glucosaminyl-acyl-PI (acyl-GPI) + diacylglycerol (Homo sapiens)
PE [endoplasmic reticulum membrane]
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Homo sapiens)
PE [endoplasmic reticulum membrane]
Metabolism (Mus musculus)
Metabolism of lipids (Mus musculus)
Phospholipid metabolism (Mus musculus)
Glycerophospholipid biosynthesis (Mus musculus)
Acyl chain remodelling of PE (Mus musculus)
1-acyl LPE is acylated to PE by LPEAT (Mus musculus)
PE [endoplasmic reticulum membrane]
2-acyl LPE is acylated to PE by LPEAT (Mus musculus)
PE [endoplasmic reticulum membrane]
HRASLS transfer acyl group from PC to PE to form NAPE (Mus musculus)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Mus musculus)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Mus musculus)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 2-acyl LPE by PLA2G4C (Mus musculus)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Mus musculus)
PE [endoplasmic reticulum membrane]
Synthesis of PC (Mus musculus)
PE is methylated to PC by PEMT (Mus musculus)
PE [endoplasmic reticulum membrane]
Synthesis of PE (Mus musculus)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Mus musculus)
PE [endoplasmic reticulum membrane]
Synthesis of PS (Mus musculus)
PE is converted to PS by PTDSS2 (Mus musculus)
PE [endoplasmic reticulum membrane]
Metabolism of proteins (Mus musculus)
Post-translational protein modification (Mus musculus)
Post-translational modification: synthesis of GPI-anchored proteins (Mus musculus)
Synthesis of glycosylphosphatidylinositol (GPI) (Mus musculus)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Mus musculus)
PE [endoplasmic reticulum membrane]
Metabolism (Plasmodium falciparum)
Metabolism of lipids (Plasmodium falciparum)
Phospholipid metabolism (Plasmodium falciparum)
Glycerophospholipid biosynthesis (Plasmodium falciparum)
Acyl chain remodelling of PE (Plasmodium falciparum)
1-acyl LPE is acylated to PE by LPEAT (Plasmodium falciparum)
PE [endoplasmic reticulum membrane]
2-acyl LPE is acylated to PE by LPEAT (Plasmodium falciparum)
PE [endoplasmic reticulum membrane]
Synthesis of PE (Plasmodium falciparum)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Plasmodium falciparum)
PE [endoplasmic reticulum membrane]
Synthesis of PS (Plasmodium falciparum)
PE is converted to PS by PTDSS2 (Plasmodium falciparum)
PE [endoplasmic reticulum membrane]
Metabolism (Rattus norvegicus)
Metabolism of lipids (Rattus norvegicus)
Phospholipid metabolism (Rattus norvegicus)
Glycerophospholipid biosynthesis (Rattus norvegicus)
Acyl chain remodelling of PE (Rattus norvegicus)
1-acyl LPE is acylated to PE by LPEAT (Rattus norvegicus)
PE [endoplasmic reticulum membrane]
2-acyl LPE is acylated to PE by LPEAT (Rattus norvegicus)
PE [endoplasmic reticulum membrane]
HRASLS transfer acyl group from PC to PE to form NAPE (Rattus norvegicus)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Rattus norvegicus)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Rattus norvegicus)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 2-acyl LPE by PLA2G4C (Rattus norvegicus)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Rattus norvegicus)
PE [endoplasmic reticulum membrane]
Synthesis of PC (Rattus norvegicus)
PE is methylated to PC by PEMT (Rattus norvegicus)
PE [endoplasmic reticulum membrane]
Synthesis of PE (Rattus norvegicus)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Rattus norvegicus)
PE [endoplasmic reticulum membrane]
Synthesis of PS (Rattus norvegicus)
PE is converted to PS by PTDSS2 (Rattus norvegicus)
PE [endoplasmic reticulum membrane]
Metabolism of proteins (Rattus norvegicus)
Post-translational protein modification (Rattus norvegicus)
Post-translational modification: synthesis of GPI-anchored proteins (Rattus norvegicus)
Synthesis of glycosylphosphatidylinositol (GPI) (Rattus norvegicus)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Rattus norvegicus)
PE [endoplasmic reticulum membrane]
Metabolism (Saccharomyces cerevisiae)
Metabolism of lipids (Saccharomyces cerevisiae)
Phospholipid metabolism (Saccharomyces cerevisiae)
Glycerophospholipid biosynthesis (Saccharomyces cerevisiae)
Acyl chain remodelling of PE (Saccharomyces cerevisiae)
1-acyl LPE is acylated to PE by LPEAT (Saccharomyces cerevisiae)
PE [endoplasmic reticulum membrane]
2-acyl LPE is acylated to PE by LPEAT (Saccharomyces cerevisiae)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Saccharomyces cerevisiae)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 2-acyl LPE by PLA2G4C (Saccharomyces cerevisiae)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Saccharomyces cerevisiae)
PE [endoplasmic reticulum membrane]
Synthesis of PC (Saccharomyces cerevisiae)
PE is methylated to PC by PEMT (Saccharomyces cerevisiae)
PE [endoplasmic reticulum membrane]
Synthesis of PE (Saccharomyces cerevisiae)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Saccharomyces cerevisiae)
PE [endoplasmic reticulum membrane]
Metabolism of proteins (Saccharomyces cerevisiae)
Post-translational protein modification (Saccharomyces cerevisiae)
Post-translational modification: synthesis of GPI-anchored proteins (Saccharomyces cerevisiae)
Synthesis of glycosylphosphatidylinositol (GPI) (Saccharomyces cerevisiae)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Saccharomyces cerevisiae)
PE [endoplasmic reticulum membrane]
Metabolism (Schizosaccharomyces pombe)
Metabolism of lipids (Schizosaccharomyces pombe)
Phospholipid metabolism (Schizosaccharomyces pombe)
Glycerophospholipid biosynthesis (Schizosaccharomyces pombe)
Acyl chain remodelling of PE (Schizosaccharomyces pombe)
1-acyl LPE is acylated to PE by LPEAT (Schizosaccharomyces pombe)
PE [endoplasmic reticulum membrane]
2-acyl LPE is acylated to PE by LPEAT (Schizosaccharomyces pombe)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Schizosaccharomyces pombe)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 2-acyl LPE by PLA2G4C (Schizosaccharomyces pombe)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Schizosaccharomyces pombe)
PE [endoplasmic reticulum membrane]
Synthesis of PC (Schizosaccharomyces pombe)
PE is methylated to PC by PEMT (Schizosaccharomyces pombe)
PE [endoplasmic reticulum membrane]
Synthesis of PE (Schizosaccharomyces pombe)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Schizosaccharomyces pombe)
PE [endoplasmic reticulum membrane]
Metabolism of proteins (Schizosaccharomyces pombe)
Post-translational protein modification (Schizosaccharomyces pombe)
Post-translational modification: synthesis of GPI-anchored proteins (Schizosaccharomyces pombe)
Synthesis of glycosylphosphatidylinositol (GPI) (Schizosaccharomyces pombe)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Schizosaccharomyces pombe)
PE [endoplasmic reticulum membrane]
Metabolism (Sus scrofa)
Metabolism of lipids (Sus scrofa)
Phospholipid metabolism (Sus scrofa)
Glycerophospholipid biosynthesis (Sus scrofa)
Acyl chain remodelling of PE (Sus scrofa)
1-acyl LPE is acylated to PE by LPEAT (Sus scrofa)
PE [endoplasmic reticulum membrane]
2-acyl LPE is acylated to PE by LPEAT (Sus scrofa)
PE [endoplasmic reticulum membrane]
HRASLS transfer acyl group from PC to PE to form NAPE (Sus scrofa)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Sus scrofa)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Sus scrofa)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Sus scrofa)
PE [endoplasmic reticulum membrane]
Synthesis of PC (Sus scrofa)
PE is methylated to PC by PEMT (Sus scrofa)
PE [endoplasmic reticulum membrane]
Synthesis of PE (Sus scrofa)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Sus scrofa)
PE [endoplasmic reticulum membrane]
Synthesis of PS (Sus scrofa)
PE is converted to PS by PTDSS2 (Sus scrofa)
PE [endoplasmic reticulum membrane]
Metabolism of proteins (Sus scrofa)
Post-translational protein modification (Sus scrofa)
Post-translational modification: synthesis of GPI-anchored proteins (Sus scrofa)
Synthesis of glycosylphosphatidylinositol (GPI) (Sus scrofa)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Sus scrofa)
PE [endoplasmic reticulum membrane]
Metabolism (Xenopus tropicalis)
Metabolism of lipids (Xenopus tropicalis)
Phospholipid metabolism (Xenopus tropicalis)
Glycerophospholipid biosynthesis (Xenopus tropicalis)
Acyl chain remodelling of PE (Xenopus tropicalis)
1-acyl LPE is acylated to PE by LPEAT (Xenopus tropicalis)
PE [endoplasmic reticulum membrane]
2-acyl LPE is acylated to PE by LPEAT (Xenopus tropicalis)
PE [endoplasmic reticulum membrane]
HRASLS transfer acyl group from PC to PE to form NAPE (Xenopus tropicalis)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Xenopus tropicalis)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Xenopus tropicalis)
PE [endoplasmic reticulum membrane]
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Xenopus tropicalis)
PE [endoplasmic reticulum membrane]
Synthesis of PC (Xenopus tropicalis)
PE is methylated to PC by PEMT (Xenopus tropicalis)
PE [endoplasmic reticulum membrane]
Synthesis of PE (Xenopus tropicalis)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Xenopus tropicalis)
PE [endoplasmic reticulum membrane]
Synthesis of PS (Xenopus tropicalis)
PE is converted to PS by PTDSS2 (Xenopus tropicalis)
PE [endoplasmic reticulum membrane]
Metabolism of proteins (Xenopus tropicalis)
Post-translational protein modification (Xenopus tropicalis)
Post-translational modification: synthesis of GPI-anchored proteins (Xenopus tropicalis)
Synthesis of glycosylphosphatidylinositol (GPI) (Xenopus tropicalis)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Xenopus tropicalis)
PE [endoplasmic reticulum membrane]
External Reference Information
External Reference
phosphatidylethanolamine zwitterion [ChEBI:57613]
Participates
as an input of
mannose (a1-2) mannose (a1-6) (ethanolamineP) mannose (a1-4) glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose (a1-2) mannose (a1-6) (ethanolamineP) mannose (a1-4) glucosaminyl-acyl-PI (acyl-GPI) + diacylglycerol (Mus musculus)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Saccharomyces cerevisiae)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Schizosaccharomyces pombe)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Dictyostelium discoideum)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Caenorhabditis elegans)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Drosophila melanogaster)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Gallus gallus)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Xenopus tropicalis)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Danio rerio)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Sus scrofa)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Bos taurus)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Canis familiaris)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Rattus norvegicus)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Mus musculus)
mannose(a1-4)glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose(al1-4)glucosaminyl-acyl-PI + diacylglycerol (Homo sapiens)
mannose (a1-2) mannose (a1-6) (ethanolamineP) mannose (a1-4) glucosaminyl-acyl-PI + phosphatidylethanolamine -> (ethanolamineP) mannose (a1-2) mannose (a1-6) (ethanolamineP) mannose (a1-4) glucosaminyl-acyl-PI (acyl-GPI) + diacylglycerol (Homo sapiens)
PE is methylated to PC by PEMT (Saccharomyces cerevisiae)
PE is methylated to PC by PEMT (Schizosaccharomyces pombe)
PE is methylated to PC by PEMT (Dictyostelium discoideum)
PE is methylated to PC by PEMT (Gallus gallus)
PE is methylated to PC by PEMT (Xenopus tropicalis)
PE is methylated to PC by PEMT (Danio rerio)
PE is methylated to PC by PEMT (Sus scrofa)
PE is methylated to PC by PEMT (Bos taurus)
PE is methylated to PC by PEMT (Canis familiaris)
PE is methylated to PC by PEMT (Rattus norvegicus)
PE is methylated to PC by PEMT (Mus musculus)
PE is methylated to PC by PEMT (Homo sapiens)
HRASLS transfer acyl group from PC to PE to form NAPE (Xenopus tropicalis)
HRASLS transfer acyl group from PC to PE to form NAPE (Danio rerio)
HRASLS transfer acyl group from PC to PE to form NAPE (Sus scrofa)
HRASLS transfer acyl group from PC to PE to form NAPE (Bos taurus)
HRASLS transfer acyl group from PC to PE to form NAPE (Canis familiaris)
HRASLS transfer acyl group from PC to PE to form NAPE (Rattus norvegicus)
HRASLS transfer acyl group from PC to PE to form NAPE (Mus musculus)
HRASLS transfer acyl group from PC to PE to form NAPE (Homo sapiens)
PE is converted to PS by PTDSS2 (Plasmodium falciparum)
PE is converted to PS by PTDSS2 (Dictyostelium discoideum)
PE is converted to PS by PTDSS2 (Gallus gallus)
PE is converted to PS by PTDSS2 (Xenopus tropicalis)
PE is converted to PS by PTDSS2 (Danio rerio)
PE is converted to PS by PTDSS2 (Sus scrofa)
PE is converted to PS by PTDSS2 (Bos taurus)
PE is converted to PS by PTDSS2 (Canis familiaris)
PE is converted to PS by PTDSS2 (Rattus norvegicus)
PE is converted to PS by PTDSS2 (Mus musculus)
PE is hydrolyzed to 2-acyl LPE by PLA2G4C (Saccharomyces cerevisiae)
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Saccharomyces cerevisiae)
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Saccharomyces cerevisiae)
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Schizosaccharomyces pombe)
PE is hydrolyzed to 2-acyl LPE by PLA2G4C (Schizosaccharomyces pombe)
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Schizosaccharomyces pombe)
PE is hydrolyzed to 2-acyl LPE by PLA2G4C (Dictyostelium discoideum)
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Dictyostelium discoideum)
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Dictyostelium discoideum)
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Dictyostelium discoideum)
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Caenorhabditis elegans)
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Caenorhabditis elegans)
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Drosophila melanogaster)
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Gallus gallus)
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Gallus gallus)
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Gallus gallus)
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Xenopus tropicalis)
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Xenopus tropicalis)
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Xenopus tropicalis)
PE is hydrolyzed to 2-acyl LPE by PLA2G4C (Danio rerio)
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Danio rerio)
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Danio rerio)
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Danio rerio)
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Sus scrofa)
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Sus scrofa)
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Homo sapiens)
PE is hydrolyzed to 2-acyl LPE by PLA2G4C (Homo sapiens)
PE is converted to PS by PTDSS2 (Homo sapiens)
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Homo sapiens)
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Mus musculus)
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Mus musculus)
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Mus musculus)
PE is hydrolyzed to 2-acyl LPE by PLA2G4C (Mus musculus)
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Homo sapiens)
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Rattus norvegicus)
PE is hydrolyzed to 2-acyl LPE by PLA2G4C (Rattus norvegicus)
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Rattus norvegicus)
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Rattus norvegicus)
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Canis familiaris)
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Canis familiaris)
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Canis familiaris)
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Bos taurus)
PE is hydrolyzed to 2-acyl LPE by PLA2[4] (Bos taurus)
PE is hydrolyzed to 1-acyl LPE by PLA2[3] (Bos taurus)
PE is hydrolyzed to 1-acyl LPE by PLA2[2] (Sus scrofa)
as an output of
PE transports from the mitochondrial membrane to the ER (Rattus norvegicus)
2-acyl LPE is acylated to PE by LPEAT (Plasmodium falciparum)
1-acyl LPE is acylated to PE by LPEAT (Plasmodium falciparum)
1-acyl LPE is acylated to PE by LPEAT (Saccharomyces cerevisiae)
2-acyl LPE is acylated to PE by LPEAT (Saccharomyces cerevisiae)
2-acyl LPE is acylated to PE by LPEAT (Schizosaccharomyces pombe)
1-acyl LPE is acylated to PE by LPEAT (Schizosaccharomyces pombe)
2-acyl LPE is acylated to PE by LPEAT (Dictyostelium discoideum)
1-acyl LPE is acylated to PE by LPEAT (Dictyostelium discoideum)
2-acyl LPE is acylated to PE by LPEAT (Caenorhabditis elegans)
1-acyl LPE is acylated to PE by LPEAT (Caenorhabditis elegans)
2-acyl LPE is acylated to PE by LPEAT (Drosophila melanogaster)
1-acyl LPE is acylated to PE by LPEAT (Drosophila melanogaster)
1-acyl LPE is acylated to PE by LPEAT (Gallus gallus)
2-acyl LPE is acylated to PE by LPEAT (Gallus gallus)
1-acyl LPE is acylated to PE by LPEAT (Xenopus tropicalis)
2-acyl LPE is acylated to PE by LPEAT (Xenopus tropicalis)
1-acyl LPE is acylated to PE by LPEAT (Danio rerio)
2-acyl LPE is acylated to PE by LPEAT (Danio rerio)
1-acyl LPE is acylated to PE by LPEAT (Sus scrofa)
2-acyl LPE is acylated to PE by LPEAT (Sus scrofa)
2-acyl LPE is acylated to PE by LPEAT (Homo sapiens)
PE transports from the mitochondrial membrane to the ER (Homo sapiens)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Homo sapiens)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Mus musculus)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Rattus norvegicus)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Canis familiaris)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Bos taurus)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Sus scrofa)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Danio rerio)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Xenopus tropicalis)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Gallus gallus)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Drosophila melanogaster)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Caenorhabditis elegans)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Dictyostelium discoideum)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Schizosaccharomyces pombe)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Saccharomyces cerevisiae)
CDP-ETA and DAG are converted to PE by CEPT1/EPT1 (Plasmodium falciparum)
1-acyl LPE is acylated to PE by LPEAT (Homo sapiens)
1-acyl LPE is acylated to PE by LPEAT (Mus musculus)
2-acyl LPE is acylated to PE by LPEAT (Mus musculus)
2-acyl LPE is acylated to PE by LPEAT (Rattus norvegicus)
1-acyl LPE is acylated to PE by LPEAT (Rattus norvegicus)
1-acyl LPE is acylated to PE by LPEAT (Canis familiaris)
2-acyl LPE is acylated to PE by LPEAT (Canis familiaris)
2-acyl LPE is acylated to PE by LPEAT (Bos taurus)
1-acyl LPE is acylated to PE by LPEAT (Bos taurus)
Other forms of this molecule
PE [plasma membrane]
PE [endoplasmic reticulum lumen]
PE [cytoplasmic side of plasma membrane]
PE [external side of plasma membrane]
PE [photoreceptor disc membrane]
PE [mitochondrial inner membrane]
PE [autophagosome membrane]
PE [phagophore assembly site membrane]
© 2023
Reactome
Cite Us!
Cite Us!
Cite Us!
Warning!
Unable to extract citation. Please try again later.
Download As:
BibTeX
RIS
Text