Miyashiro Tim, Goulian Mark
Departments of Biology and Physics, University of Pennsylvania, Philadelphia, PA 19104, USA.
Proc Natl Acad Sci U S A. 2008 Nov 11;105(45):17457-62. doi: 10.1073/pnas.0807278105. Epub 2008 Nov 5.
We examined the effect of positive autoregulation on the steady-state behavior of the PhoQ/PhoP two-component signaling system in Escherichia coli. We found that autoregulation has no effect on the steady-state output for a large range of input stimulus, which was modulated by varying the concentration of magnesium in the growth medium. We provide an explanation for this finding with a simple model of the PhoQ/PhoP circuit. The model predicts that even when autoregulation is manifest across a range of stimulus levels, the effects of positive feedback on the steady-state output emerge only in the limit that the system is strongly stimulated. Consistent with this prediction, amplification associated with autoregulation was observed in growth-limiting levels of magnesium, a condition that strongly activates PhoQ/PhoP. In a further test of the model, we found that strains harboring a phosphatase-defective PhoQ showed strong positive feedback and considerable cell-to-cell variability under growth conditions where the wild-type circuit did not show this behavior. Our results demonstrate a simple and general mechanism for regulating the positive feedback associated with autoregulation within a bacterial signaling circuit to boost response range and maintain a relatively uniform and graded output.
我们研究了正向自动调节对大肠杆菌中PhoQ/PhoP双组分信号系统稳态行为的影响。我们发现,对于通过改变生长培养基中镁的浓度来调节的大范围输入刺激,自动调节对稳态输出没有影响。我们用一个简单的PhoQ/PhoP回路模型对这一发现作出了解释。该模型预测,即使自动调节在一系列刺激水平上都很明显,但正反馈对稳态输出的影响仅在系统受到强烈刺激的极限情况下才会出现。与这一预测一致的是,在限制生长的镁水平下观察到了与自动调节相关的放大作用,这种条件会强烈激活PhoQ/PhoP。在对该模型的进一步测试中,我们发现,在野生型回路未表现出这种行为的生长条件下,携带磷酸酶缺陷型PhoQ的菌株表现出强烈的正反馈和相当大的细胞间变异性。我们的结果证明了一种简单而通用的机制,用于调节细菌信号回路中与自动调节相关的正反馈,以扩大响应范围并维持相对均匀和分级的输出。