Roy R, Bélanger A
MRC Group in Molecular Endocrinology, Le Centre Hospitalier de l'Université Laval, Ste-Foy, Québec, Canada.
J Steroid Biochem. 1989;34(1-6):559-61. doi: 10.1016/0022-4731(89)90145-3.
The association between lipoproteins, cholesterol and cholesteryl esters is very well known to facilitate both the transport in plasma and the entry of these non-polar compounds into the cellular compartment. However, recent observations suggest that in addition to cholesterol, lipoproteins contain several other steroids in their lipoidal metabolite forms which may be transported in the very low, low and high density lipoproteins in human serum. Using the important androgen and oestrogen precursor, dehydroepiandrosterone (DHEA), the biosynthetic formation of lipoidal DHEA was demonstrated in human serum. Serum was also fractionated into its lipoprotein components during the course of its incubation with tritiated DHEA. A progressive movement of the label from the fraction containing the conventional steroid binding-proteins to the lipoproteins was observed with the fraction containing the low density lipoproteins demonstrating the greatest incorporation of the label. This displacement occurred simultaneous to an extensive esterification of the labelled DHEA in serum. After 6 h of incubation, approx. 90% of the radioactivity in all the lipoprotein fractions was in the lipoidal form. Very little labelled lipoidal DHEA was associated with the serum protein fraction throughout the duration of incubation. These data suggest that lipoproteins act as the carriers of lipoidal DHEA following its formation from the non-conjugate parent steroid in serum.
脂蛋白、胆固醇和胆固醇酯之间的关联广为人知,有助于这些非极性化合物在血浆中的运输以及进入细胞区室。然而,最近的观察结果表明,除胆固醇外,脂蛋白还含有几种其他以脂质代谢物形式存在的类固醇,它们可能在人血清的极低密度、低密度和高密度脂蛋白中运输。利用重要的雄激素和雌激素前体脱氢表雄酮(DHEA),在人血清中证实了脂质DHEA的生物合成形成。在用氚标记的DHEA孵育人血清的过程中,血清也被分离成其脂蛋白成分。观察到标记物从含有传统类固醇结合蛋白的组分逐渐转移到脂蛋白中,其中含有低密度脂蛋白的组分显示出最大程度的标记物掺入。这种置换与血清中标记的DHEA的广泛酯化同时发生。孵育6小时后,所有脂蛋白组分中约90%的放射性处于脂质形式。在整个孵育期间,很少有标记的脂质DHEA与血清蛋白组分相关联。这些数据表明,脂蛋白在血清中非共轭母体类固醇形成脂质DHEA后充当其载体。