da Silva Luiz Guilherme S, Yvinec Romain, Prata Guilherme, Dhar Varshant, Reinitz John, Ramos Alexandre F
Escola de Artes, Ciências e Humanidades, Universidade de São Paulo, Av. Arlindo Béttio, 1000, São Paulo, 03828-000 SP Brazil.
Centro Universitário Lusiada - UNILUS, Santos, 11015-101 SP Brazil.
Braz J Phys. 2025;55(4):150. doi: 10.1007/s13538-025-01785-y. Epub 2025 May 8.
In vivo measurements of gene expression in single cells show behavior that has been interpreted as stochastic bursts of transcription. In one case, these data have been interpreted as random ON-OFF transitions of the gene, but there is no experimental measurements or theoretical treatment of the number of transcripts produced at each burst event. In another case, such data have been interpreted to indicate multiple underlying transcriptional states. Here, we place both of these experiments in a common theoretical framework. In it, we couple two stochastic processes, one for synthesis of transcripts and one for their removal. Analysis of the resulting model is greatly aided by the existence of exact solutions of the master equation. We find the bursting limit of the exact solutions for our two-state gene expression model and show the occurrence of bursts of multiple sizes and durations by exact stochastic simulations. We also demonstrate that data from interpreted in terms of multiple underlying transcription states is fully compatible with underlying two-state ON or OFF transcriptional behavior. We discuss what experimental data is required to unambiguously determine the number of underlying promoter states.
对单细胞中基因表达的体内测量显示出的行为被解释为转录的随机爆发。在一种情况下,这些数据被解释为基因的随机开-关转换,但对于每个爆发事件产生的转录本数量没有实验测量或理论处理。在另一种情况下,此类数据被解释为表明存在多种潜在的转录状态。在此,我们将这两个实验置于一个共同的理论框架中。在该框架中,我们耦合了两个随机过程,一个用于转录本的合成,另一个用于其去除。主方程精确解的存在极大地辅助了对所得模型的分析。我们找到了两态基因表达模型精确解的爆发极限,并通过精确的随机模拟展示了多种大小和持续时间的爆发的出现。我们还证明,从多种潜在转录状态角度解释的数据与潜在的两态开或关转录行为完全兼容。我们讨论了明确确定潜在启动子状态数量所需的实验数据。