Hitchener W R, Cenedella R J
J Lipid Res. 1985 Dec;26(12):1455-63.
All cells of the avascular ocular lens derive from a monolayer of epithelial cells located on only the anterior surface of this organ. The source of the cholesterol required for the growth and division of these cells was studied by using cultures of bovine lens epithelial cells. Cells were in active growth during the third to fourth day of subculture following seeding. Absolute rates of cholesterol synthesis were estimated for the cultured cells from incorporation of [3H]water. Rates were estimated on the assumption that 0.81 atoms of 3H of [3H]water were incorporated into cholesterol per carbon atom of cholesterol, a situation where all of the NADPH would be generated by oxidative enzymatic processes. We tested this assumption by measuring the changes in sterol mass per dish of cells grown in lipoprotein-deficient media over day 3 to 4 of subculture and by simultaneously measuring the rates of incorporation of [3H]water into sterols during this period. In this situation, the increases in sterol mass should be attributable solely to de novo sterol synthesis. We calculated that an average of 0.79 atoms of 3H of [3H]water were incorporated by these cells into cholesterol per carbon atom of cholesterol. Sterol synthesis was only modestly decreased (about 30%) when the cells were cultured in media prepared with whole calf serum. Growth rates of the cells were also little affected by the absence of lipoproteins. In spite of the capacity to furnish its sterol requirements by de novo synthesis, the lens epithelial cells readily degraded 125I-labeled bovine LDL, and LDL greatly decreased sterol synthesis when added to the media at low levels.(ABSTRACT TRUNCATED AT 250 WORDS)
无血管眼晶状体的所有细胞均来源于仅位于该器官前表面的单层上皮细胞。利用牛晶状体上皮细胞培养物研究了这些细胞生长和分裂所需胆固醇的来源。接种后传代培养的第三天至第四天,细胞处于活跃生长状态。通过[3H]水的掺入来估计培养细胞中胆固醇合成的绝对速率。速率是在假设[3H]水中0.81个3H原子掺入每个胆固醇碳原子的情况下估计的,即所有NADPH都由氧化酶促过程产生。我们通过测量传代培养第3至4天在脂蛋白缺乏培养基中生长的每皿细胞中甾醇质量的变化,并同时测量这段时间内[3H]水掺入甾醇的速率,来检验这一假设。在这种情况下,甾醇质量的增加应仅归因于甾醇的从头合成。我们计算出,这些细胞平均将[3H]水中0.79个3H原子掺入每个胆固醇碳原子的胆固醇中。当细胞在含有全小牛血清制备的培养基中培养时,甾醇合成仅适度下降(约30%)。细胞的生长速率也几乎不受脂蛋白缺乏的影响。尽管晶状体上皮细胞有能力通过从头合成来满足其甾醇需求,但它们很容易降解125I标记的牛低密度脂蛋白,并且当以低水平添加到培养基中时,低密度脂蛋白会大大降低甾醇合成。(摘要截短于250字)