Exploratory Research for Advanced Technology (ERATO), Complex Systems Biology Project, Japan Science and Technology Agency (JST), Tokyo, Japan.
Biophys J. 2013 Mar 5;104(5):1191-202. doi: 10.1016/j.bpj.2013.01.023.
The oscillation of chemoattractant cyclic AMP (cAMP) in Dictyostelium discoideum is a collective phenomenon that occurs when the basal level of extracellular cAMP exceeds a threshold and invokes cooperative mutual excitation of cAMP synthesis and secretion. For pulses to be relayed from cell to cell repetitively, secreted cAMP must be cleared and brought down to the subthreshold level. One of the main determinants of the oscillatory behavior is thus how much extracellular cAMP is degraded by extracellular phosphodiesterase (PDE). To date, the exact nature of PDE gene regulation remains elusive. Here, we performed live imaging analysis of mRNA transcripts for pdsA--the gene encoding extracellular PDE. Our analysis revealed that pdsA is upregulated during the rising phase of cAMP oscillations. Furthermore, by analyzing isolated cells, we show that expression of pdsA is strictly dependent on the presence of extracellular cAMP. pdsA is induced only at ∼1 nM extracellular cAMP, which is almost identical to the threshold concentration for the cAMP relay response. The observed precise regulation of PDE expression together with degradation of extracellular cAMP by PDE form a dual positive and negative feedback circuit, and model analysis shows that this sets the cAMP level near the threshold concentration for the cAMP relay response for a wide range of adenylyl cyclase activity. The overlap of the thresholds could allow oscillations of chemoattractant cAMP to self-organize at various starving conditions, making its development robust to fluctuations in its environment.
聚集的细胞外环腺苷酸 (cAMP) 振荡是一个集体现象,当细胞外 cAMP 的基础水平超过一个阈值时,会引发 cAMP 合成和分泌的协同相互激发。为了使脉冲能够从一个细胞重复传递到另一个细胞,分泌的 cAMP 必须被清除并降低到亚阈值水平。因此,细胞外磷酸二酯酶 (PDE) 降解多少细胞外 cAMP 是决定振荡行为的主要因素之一。迄今为止,PDE 基因调节的确切性质仍然难以捉摸。在这里,我们对编码细胞外 PDE 的 pdsA 基因的 mRNA 转录物进行了实时成像分析。我们的分析表明,pdsA 在 cAMP 振荡的上升阶段被上调。此外,通过分析分离的细胞,我们表明 pdsA 的表达严格依赖于细胞外 cAMP 的存在。pdsA 仅在约 1 nM 细胞外 cAMP 时被诱导,这与 cAMP 中继反应的阈值浓度几乎相同。观察到的 PDE 表达的精确调节与 PDE 对细胞外 cAMP 的降解一起形成了一个正反馈和负反馈的双重回路,模型分析表明,这将 cAMP 水平设置在 cAMP 中继反应的阈值附近,适用于广泛的腺苷酸环化酶活性。阈值的重叠可以使趋化因子 cAMP 的振荡在各种饥饿条件下自我组织,使其发展对环境的波动具有鲁棒性。