Darnell R B
Mol Cell Biol. 1984 May;4(5):829-39. doi: 10.1128/mcb.4.5.829-839.1984.
Sodium butyrate alters the growth and gene expression of a variety of differentiating and neoplastic cell types. For example, addition of 5 mM butyrate to HeLa cells is reported to both induce gonadotropin alpha subunit biosynthesis and block cell cycling in G1. We have studied these two actions of butyrate on HeLa cells and found that they are regulated in distinct ways. The induction of alpha subunit synthesis was due to an increase in the rate of transcription of the alpha gene. Using synchronized populations of HeLa cells, we determined that butyrate stimulates alpha transcription throughout the cell cycle. In contrast, treated cells arrest in G1 only if exposed to butyrate for a discrete period during the previous S phase. We conclude that butyrate inhibits DNA synthesis through a cell cycle-specific action that is independent from its direct action to stimulate transcription of the gonadotropin alpha gene.
丁酸钠可改变多种分化细胞和肿瘤细胞类型的生长及基因表达。例如,据报道,向HeLa细胞中添加5 mM丁酸钠既能诱导促性腺激素α亚基的生物合成,又能阻断细胞在G1期的循环。我们研究了丁酸钠对HeLa细胞的这两种作用,发现它们的调节方式不同。α亚基合成的诱导是由于α基因转录速率的增加。利用同步化的HeLa细胞群体,我们确定丁酸钠在整个细胞周期中都能刺激α转录。相比之下,只有在前一个S期的离散时间段内暴露于丁酸钠,处理过的细胞才会在G1期停滞。我们得出结论,丁酸钠通过一种细胞周期特异性作用抑制DNA合成,这种作用与其直接刺激促性腺激素α基因转录的作用无关。