Docosahexaenoic and eicosapentaenoic acids segregate differently between raft and nonraft domains.

Abstract:

:Omega-3 polyunsaturated fatty acids (n-3 PUFA), enriched in fish oils, are increasingly recognized to have potential benefits for treating many human afflictions. Despite the importance of PUFA, their molecular mechanism of action remains unclear. One emerging hypothesis is that phospholipids containing n-3 PUFA acyl chains modify the structure and composition of membrane rafts, thus affecting cell signaling. In this study the two major n-3 PUFA found in fish oils, eicosapentaenoic (EPA) and docosahexaenoic (DHA) acids, are compared. Using solid-state (2)H NMR spectroscopy we explored the molecular organization of 1-[(2)H(31)]palmitoyl-2-eicosapentaenoylphosphatidylcholine (PEPC-d(31)) and 1-[(2)H(31)]palmitoyl-2-docosahexaenoylphosphatidylcholine (PDPC-d(31)) in mixtures with sphingomyelin (SM) and cholesterol (chol). Our results indicate that whereas both PEPC-d(31) and PDPC-d(31) can accumulate into SM-rich/chol-rich raftlike domains, the tendency for DHA to incorporate into rafts is more than twice as great as for EPA. We propose that DHA may be the more bioactive component of fish oil that serves to disrupt lipid raft domain organization. This mechanism represents an evolution in the view of how PUFA remodel membrane architecture.

journal_name

Biophys J

journal_title

Biophysical journal

authors

Williams JA,Batten SE,Harris M,Rockett BD,Shaikh SR,Stillwell W,Wassall SR

doi

10.1016/j.bpj.2012.06.016

subject

Has Abstract

pub_date

2012-07-18 00:00:00

pages

228-37

issue

2

eissn

0006-3495

issn

1542-0086

pii

S0006-3495(12)00672-8

journal_volume

103

pub_type

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