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. 2014 May;1838(5):1235-46.
doi: 10.1016/j.bbamem.2014.01.021. Epub 2014 Jan 26.

Flavonoid-membrane interactions: involvement of flavonoid-metal complexes in raft signaling

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Free article

Flavonoid-membrane interactions: involvement of flavonoid-metal complexes in raft signaling

Yury S Tarahovsky et al. Biochim Biophys Acta. 2014 May.
Free article

Abstract

Flavonoids are polyphenolic compounds produced by plants and delivered to the human body through food. Although the epidemiological analyses of large human populations did not reveal a simple correlation between flavonoid consumption and health, laboratory investigations and clinical trials clearly demonstrate the effectiveness of flavonoids in the prevention of cardiovascular, carcinogenic, neurodegenerative and immune diseases, as well as other diseases. At present, the abilities of flavonoids in the regulation of cell metabolism, gene expression, and protection against oxidative stress are well-known, although certain biophysical aspects of their functioning are not yet clear. Most flavonoids are poorly soluble in water and, similar to lipophilic compounds, have a tendency to accumulate in biological membranes, particularly in lipid rafts, where they can interact with different receptors and signal transducers and influence their functioning through modulation of the lipid-phase behavior. In this study, we discuss the enhancement in the lipophilicity and antioxidative activity of flavonoids after their complexation with transient metal cations. We hypothesize that flavonoid-metal complexes are involved in the formation of molecular assemblies due to the facilitation of membrane adhesion and fusion, protein-protein and protein-membrane binding, and other processes responsible for the regulation of cell metabolism and protection against environmental hazards.

Keywords: Cell signaling; Flavonoid; Lipid bilayer; Lipid phase transition; Lipid raft; Transient metal.

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