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‘Forcing the issue’ - Aromatic tuning facilitates stimulus-independent modulation of a two-component signaling circuit

机译:“强制问题” - 芳香调谐有助于双组分信号电路的激励无关调制

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摘要

Two-component signaling circuits allow bacteria to detect and respond to external stimuli. Unfortunately, the input stimulus remains unidentified for the majority of these circuits. Therefore, development of a synthetic method for stimulus-independent modulation of these circuits is highly desirable because particular physiological or developmental processes could be controlled for biotechnological purposes without the need to identify the stimulus itself. Here, we demonstrate that aromatic tuning, i.e., repositioning the aromatic residues commonly found at the cytoplasmic end of the receptor (EnvZ) transmembrane domain, facilitates stimulus-independent modulation of signal output from the EnvZ/OmpR osmosensing circuit of Escherichia coli. We found that these osmosensing circuits retained the ability to respond appropriately to increased external osmolarity, suggesting that the tuned receptors were not locked in a single conformation. We also noted that circuits containing aromatically tuned variants became more sensitive to changes in the receptor concentration than their wild-type counterpart, suggesting a new way to study mechanisms underpinning receptor concentration-dependent robustness. We believe that aromatic tuning has several advantages compared to previous methods aimed at stimulus-independent modulation of receptors and that it will be generally applicable to a wide-range of two-component circuits.
机译:两成分的信号传导电路使细菌能够检测并响应外部刺激。不幸的是,对于这些电路中的大多数,输入激励仍然无法识别。因此,迫切需要开发用于这些电路的与刺激无关的调制的合成方法,因为可以出于生物技术目的控制特定的生理或发育过程,而无需识别刺激本身。在这里,我们证明了芳香调节,即重新定位通常在受体(EnvZ)跨膜结构域的细胞质末端发现的芳香残基,可促进大肠杆菌EnvZ / OmpR渗透传感电路输出信号的独立于刺激的调节。我们发现这些渗透压回路保留了对增加的外部渗透压适当响应的能力,这表明调谐的受体并未锁定在单一构象中。我们还注意到,含有芳香族修饰变体的电路比其野生型对应物对受体浓度的变化更敏感,这表明研究支撑受体浓度依赖性鲁棒性机制的新方法。我们认为,与以前的旨在独立于受体的刺激无关的调制方法相比,芳香族调音具有几个优势,并且它通常可适用于广泛的两分量电路。

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