首页> 外文OA文献 >Modulation of the mevalonate pathway and cell growth by pravastatin and d-limonene in a human hepatoma cell line (Hep G2).
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Modulation of the mevalonate pathway and cell growth by pravastatin and d-limonene in a human hepatoma cell line (Hep G2).

机译:普伐他汀和d-柠檬烯在人肝癌细胞系(Hep G2)中对甲羟戊酸途径和细胞生长的调节。

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摘要

Modulation of cell growth by a combination of pravastatin [a 3-hydroxy-3-methylglutaryl-coenzyme A (HMG-CoA) reductase inhibitor] and d-limonene (an inhibitor of protein isoprenylation) was studied using Hep G2, a human hepatoma-derived cell line. Pravastatin, at 0.1 mM, produced 85% inhibition of cholesterol biosynthesis in Hep G2 cells. The combination of 0.1 mM pravastatin and 1.0 mM d-limonene had no further effect on the reduction seen with pravastatin alone. Addition of 0.1 mM pravastatin or 1.0 mM d-limonene did not significantly suppress DNA synthesis by the cells, whereas the combination suppressed it to 50% of the control level. Production of m-p21ras was markedly decreased to 35% of the control level by the combination of these two inhibitors. Both the reduction by pravastatin of farnesylpyrophosphate as substrate for protein:farnesyl transferase and inhibition of protein farnesylation by d-limonene seem to be responsible for the profound suppression of m-p21ras formation in the cells. However, dolichol synthesis was not suppressed by the combination of these inhibitors. In human fibroblasts, the combination suppressed m-p21ras production but not DNA synthesis. These findings suggest that the combination of pravastatin and d-limonene acts on cancer cell growth through inhibition of the post-translational processing of cellular proteins including p21ras, rather than through the suppression of cholesterol and dolichol biosynthesis. Thus, the combination of an HMG-CoA reductase inhibitor and an inhibitor of protein isoprenylation offers potential as a new approach for cancer therapy.
机译:使用人类肝癌Hep G2研究了普伐他汀[3-羟基-3-甲基戊二酰辅酶A(HMG-CoA)还原酶抑制剂]和d-柠檬烯(一种蛋白质异戊二烯化抑制剂)的组合对细胞生长的调节作用。衍生细胞系。普伐他汀浓度为0.1 mM,对Hep G2细胞中的胆固醇生物合成产生85%的抑制作用。 0.1 mM普伐他汀和1.0 mM d-柠檬烯的组合对单独使用普伐他汀所见的减少没有进一步影响。添加0.1 mM普伐他汀或1.0 mM d-柠檬烯不会显着抑制细胞合成DNA,而将其抑制至对照水平的50%。通过这两种抑制剂的组合,m-p21ras的产量显着降低至对照水平的35%。普伐他汀还原法呢基焦磷酸作为蛋白质:法呢基转移酶的底物,以及d-柠檬烯对蛋白质法呢基化的抑制,似乎都对细胞中m-p21ras的形成产生了明显的抑制作用。但是,这些抑制剂的组合并不能抑制二元醇的合成。在人成纤维细胞中,该组合抑制了m-p21ras的产生,但没有抑制DNA的合成。这些发现表明,普伐他汀和d-柠檬烯的组合通过抑制包括p21ras在内的细胞蛋白的翻译后加工,而不是通过抑制胆固醇和多环醇的生物合成来作用于癌细胞的生长。因此,HMG-CoA还原酶抑制剂和蛋白质异戊二烯化抑制剂的组合提供了作为癌症治疗新方法的潜力。

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