AkhavanAghdam Zohreh, Sinha Joydeb, Tabbaa Omar P, Hao Nan
Section of Molecular Biology, Division of Biological Sciences, University of California, San Diego, La Jolla, United States.
Elife. 2016 Sep 30;5:e18458. doi: 10.7554/eLife.18458.
Many transcription factors co-express with their homologs to regulate identical target genes, however the advantages of such redundancies remain elusive. Using single-cell imaging and microfluidics, we study the yeast general stress response transcription factor Msn2 and its seemingly redundant homolog Msn4. We find that gene regulation by these two factors is analogous to logic gate systems. Target genes with fast activation kinetics can be fully induced by either factor, behaving as an 'OR' gate. In contrast, target genes with slow activation kinetics behave as an 'AND' gate, requiring distinct contributions from both factors, upon transient stimulation. Furthermore, such genes become an 'OR' gate when the input duration is prolonged, suggesting that the logic gate scheme is not static but rather dependent on the input dynamics. Therefore, Msn2 and Msn4 enable a time-based mode of combinatorial gene regulation that might be applicable to homologous transcription factors in other organisms.
许多转录因子与其同源物共同表达以调控相同的靶基因,然而这种冗余的优势仍不明确。利用单细胞成像和微流控技术,我们研究了酵母一般应激反应转录因子Msn2及其看似冗余的同源物Msn4。我们发现这两个因子的基因调控类似于逻辑门系统。具有快速激活动力学的靶基因可由任一因子完全诱导,表现为“或”门。相反,具有缓慢激活动力学的靶基因表现为“与”门,在短暂刺激时需要两个因子的不同贡献。此外,当输入持续时间延长时,此类基因会变成“或”门,这表明逻辑门方案不是固定不变的,而是依赖于输入动态。因此,Msn2和Msn4实现了一种基于时间的组合基因调控模式,这种模式可能适用于其他生物体中的同源转录因子。