Sukys Augustinas, Grima Ramon
School of Biological Sciences, University of Edinburgh, Edinburgh EH9 3JH, United Kingdom.
The Alan Turing Institute, London NW1 2DB, United Kingdom.
Nucleic Acids Res. 2025 Apr 10;53(7). doi: 10.1093/nar/gkaf295.
Bursty gene expression is characterized by two intuitive parameters, burst frequency and burst size, the cell-cycle dependence of which has not been extensively profiled at the transcriptome level. In this study, we estimate the burst parameters per allele in the G1 and G2/M cell-cycle phases for thousands of mouse genes by fitting mechanistic models of gene expression to messenger RNA count data, obtained by sequencing of single cells whose cell-cycle position has been inferred using a deep-learning method. We find that upon DNA replication, the median burst frequency approximately halves, while the burst size remains mostly unchanged. Genome-wide distributions of the burst parameter ratios between the G2/M and G1 phases are broad, indicating substantial heterogeneity in transcriptional regulation. We also observe a significant negative correlation between the burst frequency and size ratios, suggesting that regulatory processes do not independently control the burst parameters. We show that to accurately estimate the burst parameter ratios, mechanistic models must explicitly account for gene copy number variation and extrinsic noise due to the coupling of transcription to cell age across the cell cycle, but corrections for technical noise due to imperfect capture of RNA molecules in sequencing experiments are less critical.
爆发式基因表达由两个直观参数表征,即爆发频率和爆发大小,其细胞周期依赖性在转录组水平上尚未得到广泛描述。在本研究中,我们通过将基因表达的机制模型拟合到信使RNA计数数据,估计了数千个小鼠基因在G1和G2/M细胞周期阶段每个等位基因的爆发参数,这些数据是通过对单细胞进行测序获得的,其细胞周期位置已使用深度学习方法推断出来。我们发现,在DNA复制时,中位数爆发频率大约减半,而爆发大小基本保持不变。G2/M期和G1期之间爆发参数比率的全基因组分布很广,表明转录调控存在显著异质性。我们还观察到爆发频率和大小比率之间存在显著负相关,这表明调控过程并非独立控制爆发参数。我们表明,为了准确估计爆发参数比率,机制模型必须明确考虑基因拷贝数变异以及由于转录与整个细胞周期中的细胞年龄耦合而产生的外在噪声,但对测序实验中由于RNA分子捕获不完全而产生的技术噪声进行校正则不太关键。