Matches in SemOpenAlex for { <https://semopenalex.org/work/W2035697025> ?p ?o ?g. }
- W2035697025 endingPage "63" @default.
- W2035697025 startingPage "57" @default.
- W2035697025 abstract "What distinguishes polyunsaturated fatty acids (PUFAs) from less unsaturated fatty acids is the presence of a repeating CH–CH2–CH unit that produces an extremely flexible structure rapidly isomerizing through conformational states. Docosahexaenoic acid (DHA) with 6 double bonds is the most extreme example. The focus of this review is the profound impact that the high disorder of DHA has on its interaction with cholesterol when the PUFA is incorporated into membrane phospholipids. Results from a battery of biophysical techniques are described. They demonstrate an aversion of DHA for the sterol that drives the lateral segregation of DHA-containing phospholipids into liquid disordered (ld) domains that are depleted in cholesterol. These domains are compositionally and organizationally the antithesis of lipid rafts, the much-studied liquid ordered (lo) domain that is enriched in predominantly saturated sphingolipids and cholesterol. We hypothesize that the introduction of DHA-rich domains into the plasma membrane where they coexist with lipid rafts is the origin, in part, of the astonishing diversity of health benefits that accrue from dietary consumption of DHA. According to our model, changes in the conformation of signaling proteins when they move between these disparate domains have the potential to modulate cell function." @default.
- W2035697025 created "2016-06-24" @default.
- W2035697025 creator A5006621736 @default.
- W2035697025 creator A5021654065 @default.
- W2035697025 date "2008-05-01" @default.
- W2035697025 modified "2023-10-01" @default.
- W2035697025 title "Docosahexaenoic acid domains: the ultimate non-raft membrane domain" @default.
- W2035697025 cites W1528780481 @default.
- W2035697025 cites W1544752000 @default.
- W2035697025 cites W1967720543 @default.
- W2035697025 cites W1972875125 @default.
- W2035697025 cites W1974226146 @default.
- W2035697025 cites W1978482234 @default.
- W2035697025 cites W1981633834 @default.
- W2035697025 cites W1989067104 @default.
- W2035697025 cites W1990926659 @default.
- W2035697025 cites W1992468993 @default.
- W2035697025 cites W1995093903 @default.
- W2035697025 cites W1996177794 @default.
- W2035697025 cites W1997036377 @default.
- W2035697025 cites W2000154875 @default.
- W2035697025 cites W2001052983 @default.
- W2035697025 cites W2004313693 @default.
- W2035697025 cites W2014812148 @default.
- W2035697025 cites W2015943547 @default.
- W2035697025 cites W2026724032 @default.
- W2035697025 cites W2030560811 @default.
- W2035697025 cites W2037735248 @default.
- W2035697025 cites W2038434242 @default.
- W2035697025 cites W2039348731 @default.
- W2035697025 cites W2042574278 @default.
- W2035697025 cites W2048550135 @default.
- W2035697025 cites W2049382860 @default.
- W2035697025 cites W2050917405 @default.
- W2035697025 cites W2057809752 @default.
- W2035697025 cites W2058273629 @default.
- W2035697025 cites W2061357370 @default.
- W2035697025 cites W2065158535 @default.
- W2035697025 cites W2065886456 @default.
- W2035697025 cites W2065895117 @default.
- W2035697025 cites W2068913774 @default.
- W2035697025 cites W2072069399 @default.
- W2035697025 cites W2072558995 @default.
- W2035697025 cites W2080263214 @default.
- W2035697025 cites W2082987636 @default.
- W2035697025 cites W2089353780 @default.
- W2035697025 cites W2093823024 @default.
- W2035697025 cites W2108364101 @default.
- W2035697025 cites W2114906740 @default.
- W2035697025 cites W2117022351 @default.
- W2035697025 cites W2118661259 @default.
- W2035697025 cites W2119810192 @default.
- W2035697025 cites W2121936687 @default.
- W2035697025 cites W2122143736 @default.
- W2035697025 cites W2122882997 @default.
- W2035697025 cites W2125331812 @default.
- W2035697025 cites W2139887680 @default.
- W2035697025 cites W2141764344 @default.
- W2035697025 cites W2143729332 @default.
- W2035697025 cites W2151519197 @default.
- W2035697025 cites W2158603948 @default.
- W2035697025 cites W2186864484 @default.
- W2035697025 cites W2436333795 @default.
- W2035697025 cites W4233030048 @default.
- W2035697025 cites W4239562814 @default.
- W2035697025 cites W4246509584 @default.
- W2035697025 cites W81206062 @default.
- W2035697025 doi "https://doi.org/10.1016/j.chemphyslip.2008.02.010" @default.
- W2035697025 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/18343224" @default.
- W2035697025 hasPublicationYear "2008" @default.
- W2035697025 type Work @default.
- W2035697025 sameAs 2035697025 @default.
- W2035697025 citedByCount "180" @default.
- W2035697025 countsByYear W20356970252012 @default.
- W2035697025 countsByYear W20356970252013 @default.
- W2035697025 countsByYear W20356970252014 @default.
- W2035697025 countsByYear W20356970252015 @default.
- W2035697025 countsByYear W20356970252016 @default.
- W2035697025 countsByYear W20356970252017 @default.
- W2035697025 countsByYear W20356970252018 @default.
- W2035697025 countsByYear W20356970252019 @default.
- W2035697025 countsByYear W20356970252020 @default.
- W2035697025 countsByYear W20356970252021 @default.
- W2035697025 countsByYear W20356970252022 @default.
- W2035697025 countsByYear W20356970252023 @default.
- W2035697025 crossrefType "journal-article" @default.
- W2035697025 hasAuthorship W2035697025A5006621736 @default.
- W2035697025 hasAuthorship W2035697025A5021654065 @default.
- W2035697025 hasConcept C12554922 @default.
- W2035697025 hasConcept C15920480 @default.
- W2035697025 hasConcept C178790620 @default.
- W2035697025 hasConcept C185592680 @default.
- W2035697025 hasConcept C19038510 @default.
- W2035697025 hasConcept C2777171753 @default.
- W2035697025 hasConcept C2778163477 @default.
- W2035697025 hasConcept C2778718757 @default.
- W2035697025 hasConcept C41625074 @default.
- W2035697025 hasConcept C521977710 @default.