Gwynne J T, Mahaffee D D
Department of Medicine, University of North Carolina, Chapel Hill 27514.
J Biol Chem. 1987 Dec 5;262(34):16349-56.
Addition of high density lipoprotein 3 (HDL3) isolated from human plasma of d greater than 1.125 g/ml which had been preincubated for 24 h at 37 degrees C enhanced steroidogenesis by cultured rat adrenal cells only 38% as well as HDL3 isolated from unincubated plasma. Loss of steroidogenic activity due to preincubation was associated with a decrease in the percent HDL3 cholesterol remaining unesterified. Inhibition of lecithin-cholesterol acyltransferase activity by heating (60 degrees C, 1 h) or addition of dithionitrobenzoic acid (1.4 mM) prevented esterification of cholesterol in HDL and also prevented loss of steroidogenic activity. Although incubation of plasma of d greater than 1.125 g/ml prior to isolation caused cholesterol esterification, there was no change in the ratio of total cholesterol to protein in HDL, size and shape of the HDL particle as assayed by measurement of sedimentation velocity, nor affinity for the putative HDL receptor. Addition of unesterified cholesterol to preincubated HDL restored steroidogenic activity. These results indicate that unesterified cholesterol in HDL is preferentially used as substrate for rat adrenal steroidogenesis. The effects of nonlipoprotein serum proteins on HDL action in the adrenal were also examined. The ability of HDL3 to enhance rat adrenal steroidogenesis was not significantly less in serum-free media than in media supplemented with lipoprotein-poor fetal calf serum or human plasma of d greater than 1.21 g/ml, suggesting that rat adrenal uptake of HDL cholesterol does not depend on participation of plasma enzymes or transport proteins.
从密度大于1.125 g/ml的人血浆中分离出的高密度脂蛋白3(HDL3),在37℃下预孵育24小时后,其增强培养的大鼠肾上腺细胞类固醇生成的能力仅为从未孵育血浆中分离出的HDL3的38%。预孵育导致类固醇生成活性丧失与未酯化的HDL3胆固醇百分比降低有关。通过加热(60℃,1小时)或添加二硫代硝基苯甲酸(1.4 mM)抑制卵磷脂胆固醇酰基转移酶活性可防止HDL中胆固醇的酯化,也可防止类固醇生成活性的丧失。尽管在分离前对密度大于1.125 g/ml的血浆进行孵育会导致胆固醇酯化,但HDL中总胆固醇与蛋白质的比例、通过沉降速度测量所测定的HDL颗粒大小和形状以及对假定的HDL受体的亲和力均无变化。向预孵育的HDL中添加未酯化胆固醇可恢复类固醇生成活性。这些结果表明,HDL中的未酯化胆固醇优先用作大鼠肾上腺类固醇生成的底物。还研究了非脂蛋白血清蛋白对肾上腺中HDL作用的影响。在无血清培养基中,HDL3增强大鼠肾上腺类固醇生成的能力并不显著低于添加了贫脂蛋白胎牛血清或密度大于1.21 g/ml的人血浆的培养基,这表明大鼠肾上腺对HDL胆固醇的摄取不依赖于血浆酶或转运蛋白的参与。