Lycan D E, Osley M A, Hereford L M
Mol Cell Biol. 1987 Feb;7(2):614-21. doi: 10.1128/mcb.7.2.614-621.1987.
We analyzed the role of posttranscriptional mechanisms in the regulation of histone gene expression in Saccharomyces cerevisiae. The rapid drop in histone RNA levels associated with the inhibition of ongoing DNA replication was postulated to be due to posttranscriptional degradation of histone transcripts. However, in analyzing the sequences required for this response, we showed that the coupling of histone RNA levels to DNA replication was due mostly, if not entirely, to transcriptional regulatory mechanisms. Furthermore, deletions which removed the negative, cell cycle control sequences from the histone promoter also uncoupled histone transcription from DNA replication. We propose that the arrest of DNA synthesis prematurely activates the regulatory pathway used in the normal cell cycle to repress transcription. Although posttranscriptional regulation did not appear to play a significant role in coupling histone RNA levels to DNA replication, it did affect the levels of histone RNA in the cell cycle. Posttranscriptional regulation could apparently restore much of the periodicity of histone RNA accumulation in cells which constitutively transcribed the histone genes. Unlike transcriptional regulation, periodic posttranscriptional regulation appears to operate on a clock which is independent of events in the mitotic DNA cycle. Posttranscriptional recognition of histone RNA must require either sequences in the 3' end of the RNA or an intact three-dimensional structure since H2A- and H2B-lacZ fusion transcripts, containing only 5' histone sequences, were insensitive to posttranscriptional controls.
我们分析了转录后机制在酿酒酵母组蛋白基因表达调控中的作用。与正在进行的DNA复制受到抑制相关的组蛋白RNA水平的快速下降被假定是由于组蛋白转录本的转录后降解所致。然而,在分析这种反应所需的序列时,我们发现组蛋白RNA水平与DNA复制的偶联主要(如果不是完全)是由于转录调控机制。此外,从组蛋白启动子中去除负性细胞周期控制序列的缺失也使组蛋白转录与DNA复制解偶联。我们提出,DNA合成的停滞过早地激活了正常细胞周期中用于抑制转录的调控途径。虽然转录后调控在组蛋白RNA水平与DNA复制的偶联中似乎没有发挥重要作用,但它确实影响了细胞周期中组蛋白RNA的水平。转录后调控显然可以恢复在组成型转录组蛋白基因的细胞中组蛋白RNA积累的大部分周期性。与转录调控不同,周期性转录后调控似乎是在一个独立于有丝分裂DNA周期事件的时钟上运行。组蛋白RNA的转录后识别必须需要RNA 3'端的序列或完整的三维结构,因为仅包含5'组蛋白序列的H2A-和H2B-lacZ融合转录本对转录后控制不敏感。