BIOCEV and Department of Cell Biology, Faculty of Science, Charles University, Vestec, 252 50, Czech Republic.
First Faculty of Medicine, Charles University, Prague, 121 08, Czech Republic.
Sci Rep. 2017 Oct 3;7(1):12607. doi: 10.1038/s41598-017-12723-7.
The pulsatile nature of gene activity has recently emerged as a general property of the transcriptional process. It has been shown that the frequency and amplitude of transcriptional bursts can be subjected to extrinsic regulation. Here we have investigated if these parameters were constant throughout the cell cycle using the single molecule RNA FISH technique. We found evidence of transcriptional spikes upon mitotic exit in three different human cell lines. Recording of cell growth prior to hybridization and immuno-RNA FISH analysis revealed that these spikes were short-lived and subsided before completion of cytokinesis. The transient post-mitotic increase in transcriptional output was found to be the result of cells displaying a higher number of active alleles and/or an increased number of nascent transcripts per active allele, indicating that both the burst fraction and the amplitude of individual bursts can be increased upon mitotic exit. Our results further suggest that distinct regulatory mechanisms are at work shortly after mitotic exit and during the rest of interphase. We speculate that transcriptional spikes are associated with chromatin decondensation, a hallmark of post-mitotic cells that might alter the dynamics of transcriptional regulators and effectors.
基因活性的脉冲特性最近已成为转录过程的一个普遍特性。已经表明,转录爆发的频率和幅度可以受到外部调节。在这里,我们使用单分子 RNA FISH 技术研究了这些参数是否在整个细胞周期内保持不变。我们在三种不同的人类细胞系中发现了有丝分裂后出现转录峰的证据。在杂交和免疫 RNA FISH 分析之前记录细胞生长情况表明,这些峰是短暂的,在胞质分裂完成之前就消失了。有丝分裂后转录输出的短暂增加是由于细胞显示出更多的活性等位基因和/或每个活性等位基因的新生转录本数量增加,这表明在有丝分裂后,单个爆发的爆发分数和幅度都可以增加。我们的研究结果进一步表明,在有丝分裂后不久和整个细胞间期,存在不同的调节机制。我们推测转录峰与染色质去凝聚有关,这是有丝分裂后细胞的一个标志,可能改变转录调节剂和效应物的动力学。