Osaka University, Department of Bioinformatics Engineering, Graduate School of Information Science and Technology, Osaka, Japan.
IET Syst Biol. 2010 Jan;4(1):82-9. doi: 10.1049/iet-syb.2008.0158.
Gene regulatory dynamics involves several stochastic chemical reactions. As a consequence, the copy number of given protein varies greatly among cells even in the case of isogeneic cells. Recently, the characteristics of noise in gene expressions were studied by using simple artificial gene networks. However, the noise characteristics in natural regulatory networks having complex interactions still remain unclear. In this study, we have focused on the noise in natural regulatory networks to understand the relationship between the characteristics of the noise and the structures of regulatory interactions. We targeted the expressions of genes related to amino acid biosynthesis (AAB) because of their well known regulatory structures. By measuring the noise of AAB genes in isogeneic Escherichia coli cells using flow cytometry, we found the noise amplitude in AAB genes to depend on the structure of the regulatory network. We categorised the regulatory networks with feedback regulation into two cases. In one case, the gene expression is negatively regulated by the final products of the AAB pathway known as feedback repression, whereas in another case, the gene expression is negatively regulated as a result of depletion of the substrate that is located upstream of the AAB pathway and activates the expression of the corresponding gene. Our data revealed that the noise amplitude of AAB genes in the former case is significantly smaller than the noise amplitude in the latter case. Furthermore, we found that the response time as a result of environmental changes is generally longer in the former case. This result provides a basis for understanding the role of natural regulatory networks better.
基因调控动力学涉及几个随机化学反应。因此,即使是同基因细胞,给定蛋白质的拷贝数在细胞之间也会有很大差异。最近,通过使用简单的人工基因网络研究了基因表达中的噪声特性。然而,具有复杂相互作用的自然调控网络中的噪声特征仍然不清楚。在这项研究中,我们专注于自然调控网络中的噪声,以了解噪声特征与调控相互作用结构之间的关系。我们的目标是与氨基酸生物合成(AAB)相关的基因表达,因为它们具有众所周知的调控结构。通过使用流式细胞术测量同基因大肠杆菌细胞中 AAB 基因的噪声,我们发现 AAB 基因的噪声幅度取决于调控网络的结构。我们将具有反馈调节的调控网络分为两种情况。在一种情况下,基因表达受到 AAB 途径的终产物的负调控,称为反馈抑制,而在另一种情况下,基因表达受到 AAB 途径上游的底物耗竭的负调控,而该底物激活了相应基因的表达。我们的数据表明,在前一种情况下,AAB 基因的噪声幅度明显小于后一种情况下的噪声幅度。此外,我们发现,由于环境变化引起的响应时间通常在前一种情况下更长。这个结果为更好地理解自然调控网络的作用提供了基础。