Baumbach L L, Stein G S, Stein J L
University of Florida College of Medicine, Gainesville 32610.
Biochemistry. 1987 Sep 22;26(19):6178-87. doi: 10.1021/bi00393a034.
The extent to which transcriptional and posttranscriptional regulation contributes to the coupling of histone gene expression and DNA replication was examined during the cell cycle in synchronized HeLa S3 cells. Rates of transcription were determined in vitro in isolated nuclei. A 3-5-fold increase in cell cycle dependent histone gene transcription was observed in early S phase, prior to the peak of DNA synthesis. This result is consistent with a previous determination of histone mRNA synthesis in intact cells [Plumb, M., Stein, J., & Stein, G. (1983) Nucleic Acids Res. 11, 2391]. The transcription of these genes did not change appreciably after inhibition of DNA replication by hydroxyurea treatment, although Northern blot analysis indicated that cellular levels of histone mRNA decreased rapidly in the presence of the drug. Total cellular levels of histone mRNA closely parallel the rate of DNA synthesis as a function of cell cycle progression, reaching a maximal 20-fold increase as compared with non S phase levels. This DNA synthesis dependent accumulation of histone mRNA occurs predominantly in the cytoplasm and appears to be mediated primarily by control of histone mRNA stability. Changes in nuclear histone mRNA levels were less pronounced. These combined observations suggest that both transcriptional regulation and posttranscriptional regulation contribute toward control of the cell cycle dependent accumulation of histone mRNA during S phase, while the stability of histone mRNA throughout S phase and the selective turnover of histone mRNAs, either at the natural termination of S phase or following inhibition of DNA synthesis, are posttranscriptionally regulated.(ABSTRACT TRUNCATED AT 250 WORDS)
在同步化的HeLa S3细胞的细胞周期中,研究了转录和转录后调控对组蛋白基因表达与DNA复制偶联的贡献程度。在分离的细胞核中体外测定转录速率。在DNA合成高峰之前的S期早期,观察到细胞周期依赖性组蛋白基因转录增加了3 - 5倍。这一结果与先前在完整细胞中对组蛋白mRNA合成的测定结果一致[Plumb, M., Stein, J., & Stein, G. (1983) Nucleic Acids Res. 11, 2391]。用羟基脲处理抑制DNA复制后,这些基因的转录没有明显变化,尽管Northern印迹分析表明在药物存在下组蛋白mRNA的细胞水平迅速下降。组蛋白mRNA的总细胞水平与作为细胞周期进程函数的DNA合成速率密切平行,与非S期水平相比,最大增加20倍。这种依赖于DNA合成的组蛋白mRNA积累主要发生在细胞质中,并且似乎主要由组蛋白mRNA稳定性的控制介导。核内组蛋白mRNA水平的变化不太明显。这些综合观察结果表明,转录调控和转录后调控都有助于在S期控制细胞周期依赖性组蛋白mRNA的积累,而在整个S期组蛋白mRNA的稳定性以及在S期自然终止时或DNA合成抑制后组蛋白mRNA的选择性周转是受转录后调控的。(摘要截短至250字)