Shopera Tatenda, Henson William R, Moon Tae Seok
Department of Energy, Environmental and Chemical Engineering, Washington University in St. Louis, St. Louis, MO, 63130, USA.
Nucleic Acids Res. 2017 Jul 7;45(12):7515-7526. doi: 10.1093/nar/gkx465.
Gene regulatory cascades are ubiquitous in biology. Because regulatory cascades are integrated within complex networks, their quantitative analysis is challenging in native systems. Synthetic biologists have gained quantitative insights into the properties of regulatory cascades by building simple circuits, but sequestration-based regulatory cascades remain relatively unexplored. Particularly, it remains unclear how the cascade components collectively control the output dynamics. Here, we report the construction and quantitative analysis of the longest sequestration-based cascade in Escherichia coli. This cascade consists of four Pseudomonas aeruginosa protein regulators (ExsADCE) that sequester their partner. Our computational analysis showed that the output dynamics are controlled in a complex way by the concentration of the unbounded transcriptional activator ExsA. By systematically varying the cascade length and the synthesis rate of each regulator, we experimentally verified the computational prediction that ExsC plays a role in rapid circuit responses by sequestering the anti-activator ExsD, while ExsD increases response times by decreasing the free ExsA concentration. In contrast, when additional ExsD was introduced to the cascade via indirect negative feedback, the response time was significantly reduced. Sequestration-based regulatory cascades with negative feedback are often found in biology, and thus our finding provides insights into the dynamics of this recurring motif.
基因调控级联在生物学中无处不在。由于调控级联整合于复杂网络之中,对其进行定量分析在天然系统中具有挑战性。合成生物学家通过构建简单回路对调控级联的特性获得了定量认识,但基于隔离的调控级联仍相对未被探索。特别是,尚不清楚级联组件如何共同控制输出动态。在此,我们报告了大肠杆菌中最长的基于隔离的级联的构建及定量分析。该级联由四个铜绿假单胞菌蛋白调节因子(ExsADCE)组成,它们隔离各自的伙伴。我们的计算分析表明,输出动态由未结合的转录激活因子ExsA的浓度以复杂方式控制。通过系统改变级联长度和每个调节因子的合成速率,我们通过实验验证了计算预测,即ExsC通过隔离抗激活因子ExsD在快速回路响应中起作用,而ExsD通过降低游离ExsA浓度增加响应时间。相比之下,当通过间接负反馈将额外的ExsD引入级联时,响应时间显著缩短。基于隔离且带有负反馈的调控级联在生物学中经常出现,因此我们的发现为这一反复出现的基序的动态特性提供了见解。