Fielding C J, Bist A, Fielding P E
Cardiovascular Research Institute, Department of Physiology, University of California, San Francisco 94143, USA.
Biochemistry. 1999 Feb 23;38(8):2506-13. doi: 10.1021/bi981012o.
Normal human skin fibroblasts maintained in serum-containing medium were synchronized with aphidicolin. After removal of inhibitor, free cholesterol (FC) homeostasis was determined at intervals during the following cell cycle. FC mass per cell doubled following S-phase, and reached its maximum well before mitosis. This increase was mainly the result of stimulation of the rate of selective uptake of FC from medium lipoproteins, and reduction of FC efflux. Rates of cholesterol synthesis, endocytosis of intact low-density lipoprotein, and HDL receptor (CLA-1) activity were relatively low and little changed during the cell cycle. The expression of caveolin (structural protein of cell surface caveolae) and caveolar FC were decreased along with FC efflux. To test the hypothesis that regulation of caveolin expression could contribute to changes in FC efflux during cell division, cells were transfected with human caveolin cDNA, synchronized with aphidicolin, and then allowed to divide. In the transfected cells, caveolar FC and FC efflux were both increased. FC accumulation and entry into mitosis were markedly inhibited compared to controls. The contribution of transcriptional regulation to caveolin mRNA levels was determined with a 705 bp caveolin 5'-flanking sequence ligated to the pGL3 luciferase expression vector. Expression of the reporter gene was downregulated at S-phase of synchronized cells. Deletion of a hybrid E2F/ Sp1-like site between -139 and -150 bp abolished this downregulation. These data are consistent with a role for caveolin in cell cycle kinetics, which may be mediated, at least in part, at the transcriptional level.
在含血清培养基中培养的正常人皮肤成纤维细胞用阿非迪霉素进行同步化处理。去除抑制剂后,在随后的细胞周期中定期测定游离胆固醇(FC)的稳态。每个细胞的FC质量在S期后翻倍,并在有丝分裂前很久就达到最大值。这种增加主要是由于从培养基脂蛋白中选择性摄取FC的速率受到刺激,以及FC流出减少所致。胆固醇合成速率、完整低密度脂蛋白的内吞作用以及高密度脂蛋白受体(CLA-1)活性相对较低,并且在细胞周期中变化不大。小窝蛋白(细胞表面小窝的结构蛋白)的表达和小窝FC随着FC流出而降低。为了验证小窝蛋白表达的调节可能有助于细胞分裂过程中FC流出变化的假说,将细胞用人类小窝蛋白cDNA转染,用阿非迪霉素同步化,然后使其分裂。在转染的细胞中,小窝FC和FC流出均增加。与对照相比,FC积累和进入有丝分裂明显受到抑制。用连接到pGL3荧光素酶表达载体的705 bp小窝蛋白5'-侧翼序列测定转录调节对小窝蛋白mRNA水平的贡献。报告基因的表达在同步化细胞的S期下调。删除-139至-150 bp之间的杂合E2F/Sp1样位点可消除这种下调。这些数据与小窝蛋白在细胞周期动力学中的作用一致,这可能至少部分地在转录水平上介导。