Schmidt R A, Glomset J A, Wight T N, Habenicht A J, Ross R
J Cell Biol. 1982 Oct;95(1):144-53. doi: 10.1083/jcb.95.1.144.
We used two model systems to investigate the effect of compactin, a competitive inhibitor of beta-hydroxy beta-methylglutarylcoenzyme A reductase, on the shape of Swiss 3T3 cells. We maintained cells in a quiescent state in medium deficient in platelet-derived growth factor (PDGF), or we added PDGF to quiescent cells to initiate traverse through a single cell cycle. In both systems, the cells responded to compactin by acquiring a characteristic rounded shape. Cell rounding seemed to depend on an induced deficiency of mevalonic acid (MVA) since the response could be prevented or reversed by adding MVA to the culture medium. Compactin-induced rounding appeared in PDGF-stimulated cells concomitantly with a compactin-mediated inhibition of DNA synthesis, and both effects had similar sensitivities to exogenous compactin and MVA. However, cell rounding seemed to be unrelated to other, previously observed effects of MVA deficiency. Compactin did not influence the total content of cell cholesterol, and little cholesterol was formed when we added radioactive MVA to round cells to effect shape change reversal. Measurement of the dolichol-dependent glycosylation of cell protein revealed no evidence of dolichol deficiency. In addition, reversal of cell rounding by MVA was not prevented by concentrations of tunicamycin that effectively blocked the incorporation of radioactive mannose into cell protein or by concentrations of cycloheximide that blocked protein synthesis. Taken together, our results suggest a new role for MVA or its products in the maintenance of cell shape.
我们使用了两种模型系统来研究β-羟基-β-甲基戊二酰辅酶A还原酶的竞争性抑制剂美伐他汀对瑞士3T3细胞形态的影响。我们将细胞维持在缺乏血小板衍生生长因子(PDGF)的培养基中的静止状态,或者向静止细胞中添加PDGF以启动单个细胞周期的进程。在这两种系统中,细胞对美伐他汀的反应是呈现出特征性的圆形。细胞变圆似乎取决于诱导的甲羟戊酸(MVA)缺乏,因为通过向培养基中添加MVA可以预防或逆转这种反应。美伐他汀诱导的变圆出现在PDGF刺激的细胞中,同时伴随着美伐他汀介导的DNA合成抑制,并且这两种效应对外源美伐他汀和MVA具有相似的敏感性。然而,细胞变圆似乎与先前观察到的MVA缺乏的其他效应无关。美伐他汀不影响细胞胆固醇的总含量,并且当我们向圆形细胞中添加放射性MVA以实现形态变化逆转时,几乎没有形成胆固醇。对细胞蛋白的多萜醇依赖性糖基化的测量没有发现多萜醇缺乏的证据。此外,MVA逆转细胞变圆的作用不会被有效阻断放射性甘露糖掺入细胞蛋白的衣霉素浓度或阻断蛋白质合成的环己酰亚胺浓度所阻止。综上所述,我们的结果表明MVA或其产物在维持细胞形态方面具有新的作用。