Luu B, Moog C
Laboratoire de Chimie Organique des Substances Naturelles, URA31, CNRS, Strasbourg, France.
Biochimie. 1991 Oct;73(10):1317-20. doi: 10.1016/0300-9084(91)90095-i.
To improve the understanding of the various biological activities of oxysterols (oxygenated derivatives of cholesterol), studies of their physicochemical properties have been undertaken. Oxysterols modify membrane dynamic properties which consequently trigger several biological effects. Despite the presence of at least one oxygenated group in addition to the C3 beta-hydroxyl, oxysterols insert perfectly into the lipidic bilayer of the membrane inducing a condensing effect similar to, but less potent than, that of cholesterol. In biological membranes oxysterols probably interact with membrane components as they are not easily exchanged after their incorporation into the cell membrane. These lipid-protein interactions are probably crucial for the expression of the biological activities of the oxysterols.
为了增进对氧化甾醇(胆固醇的氧化衍生物)各种生物活性的理解,人们对其物理化学性质展开了研究。氧化甾醇会改变膜的动态特性,从而引发多种生物效应。尽管除了C3β - 羟基外至少还存在一个含氧基团,但氧化甾醇能完美地插入膜的脂质双层中,诱导出一种与胆固醇类似但效力较弱的凝聚效应。在生物膜中,氧化甾醇掺入细胞膜后不易交换,因此可能与膜成分相互作用。这些脂质 - 蛋白质相互作用可能对氧化甾醇生物活性的表达至关重要。