Becskei A, Séraphin B, Serrano L
European Molecular Biology Laboratory, Meyerhofstrasse 1, D-69012 Heidelberg, Germany.
EMBO J. 2001 May 15;20(10):2528-35. doi: 10.1093/emboj/20.10.2528.
Feedback is a ubiquitous control mechanism of gene networks. Here, we have used positive feedback to construct a synthetic eukaryotic gene switch in Saccharomyces cerevisiae. Within this system, a continuous gradient of constitutively expressed transcriptional activator is translated into a cell phenotype switch when the activator is expressed autocatalytically. This finding is consistent with a mathematical model whose analysis shows that continuous input parameters are converted into a bimodal probability distribution by positive feedback, and that this resembles analog-digital conversion. The autocatalytic switch is a robust property in eukaryotic gene expression. Although the behavior of individual cells within a population is random, the proportion of the cell population displaying either low or high expression states can be regulated. These results have implications for understanding the graded and probabilistic mechanisms of enhancer action and cell differentiation.
反馈是基因网络中一种普遍存在的控制机制。在此,我们利用正反馈在酿酒酵母中构建了一个合成真核基因开关。在这个系统中,当组成型表达的转录激活因子以自催化方式表达时,其持续梯度会转化为细胞表型开关。这一发现与一个数学模型一致,该模型分析表明,连续的输入参数通过正反馈被转化为双峰概率分布,且这类似于模拟 - 数字转换。自催化开关是真核基因表达中的一种稳健特性。尽管群体中单个细胞的行为是随机的,但显示低表达或高表达状态的细胞群体比例可以被调控。这些结果对于理解增强子作用和细胞分化的分级及概率机制具有重要意义。