Affinity for α-tocopherol transfer protein as a determinant of the biological activities of vitamin E analogs

α-Tocopherol transfer protein (αTTP), a product of the gene which causes familial isolated vitamin E deficiency, plays an important role in determining the plasma vitamin E level. We examined the structural characteristics of vitamin E analogs required for recognition by αTTP. Ligand specificity was...

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Veröffentlicht in:FEBS letters 1997-06, Vol.409 (1), p.105-108
Hauptverfasser: Hosomi, Akihiro, Arita, Makoto, Sato, Yuji, Kiyose, Chikako, Ueda, Tadahiko, Igarashi, Osamu, Arai, Hiroyuki, Inoue, Keizo
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Sprache:eng
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Zusammenfassung:α-Tocopherol transfer protein (αTTP), a product of the gene which causes familial isolated vitamin E deficiency, plays an important role in determining the plasma vitamin E level. We examined the structural characteristics of vitamin E analogs required for recognition by αTTP. Ligand specificity was assessed by evaluating the competition of non-labeled vitamin E analogs and α-[ 3H]tocopherol for transfer between membranes in vitro. Relative affinities ( RRR-α-tocopherol=100%) calculated from the degree of competition were as follows: β-tocopherol, 38%; γ-tocopherol, 9%; δ-tocopherol, 2%; α-tocopherol acetate, 2%; α-tocopherol quinone, 2%; SRR-α-tocopherol, 11%; α-tocotrienol, 12%; trolox, 9%. Interestingly, there was a linear relationship between the relative affinity and the known biological activity obtained from the rat resorption-gestation assay. From these observations, we conclude that the affinity of vitamin E analogs for αTTP is one of the critical determinants of their biological activity.
ISSN:0014-5793
1873-3468
DOI:10.1016/S0014-5793(97)00499-7