1-palmitoyl-2-oleoyl-sn-glycero-3-phosphoethanolamine

1-palmitoyl-2-oleoyl-sn-glycero-3-phosphoethanolamine

POPE, or 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphoethanolamine, is a semi-synthetic lipid derived from the conjugation of palmitic and oleic acids with glycerol and ethanolamine. This specific molecular composition imparts distinctive characteristics to POPE, making it a valuable asset in membrane studies, particularly in investigations involving lipid bilayer dynamics, membrane protein interactions, and cellular processes.

  • Palmitic and Oleic Acid Derivation: Synthesized from a combination of palmitic and oleic acids, POPE bears a unique blend of saturated and unsaturated acyl chains.

  • Glycerol and Ethanolamine Backbone: POPE is structured with a glycerol backbone esterified with palmitic and oleic acids, and a phosphoethanolamine headgroup. This composition contributes to its amphiphilic nature.

  • Biophysical Flexibility: The combination of saturated and unsaturated acyl chains imparts biophysical flexibility to POPE, allowing it to exist in various lipid phases.

Applications in Membrane Protein Research:

  • Amphiphilic Nature for Membrane Mimicry: POPE's amphiphilic structure allows it to mimic natural lipid bilayers, providing a physiologically relevant environment for studying membrane proteins.

  • Biophysical Studies: POPE is widely employed in biophysical studies, serving as a versatile model lipid for investigations into membrane properties, phase behavior, and lipid-protein interactions.

  • Cellular Process Exploration: Due to its relevance in cellular membranes, POPE finds applications in understanding cellular processes, contributing to research in cell biology and biochemistry.

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TF0083-10mg
 10mg 
TF0083-50mg
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TF0083-25mg
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TRC-P689510-100MG
 100mg 
TRC-P689510-50MG
 50mg 
TRC-R274255-10MG
 10mg 
TRC-R274255-2.5MG
 2.5mg 
TRC-R274255-0.5MG
 0.5mg 
orb1741331-5mg
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orb1741331-10mg
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P516:P416:P616-MIX-25MG
 25MG 
P416-250MG
 250MG 
P516:P416:P616-MIX-50MG
 50MG