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Bacterial transmembrane signalling systems and their engineering for biosensing

机译:细菌跨膜信号系统及其生物传感工程

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摘要

Every living cell possesses numerous transmembrane signalling systems that receive chemical and physical stimuli from the environment and transduce this information into an intracellular signal that triggers some form of cellular response. As unicellular organisms, bacteria require these systems for survival in rapidly changing environments. The receptors themselves act as ‘sensory organs’, while subsequent signalling circuits can be regarded as forming a ‘neural network’ that is involved in decision making, adaptation and ultimately in ensuring survival. Bacteria serve as useful biosensors in industry and clinical diagnostics, in addition to producing drugs for therapeutic purposes. Therefore, there is a great demand for engineered bacterial strains that contain transmembrane signalling systems with high molecular specificity, sensitivity and dose dependency. In this review, we address the complexity of transmembrane signalling systems and discuss principles to rewire receptors and their signalling outputs.
机译:每个活细胞都拥有众多跨膜信号系统,这些系统从环境中接收化学和物理刺激,并将该信息转换为触发某种形式的细胞反应的细胞内信号。作为单细胞生物,细菌需要这些系统才能在瞬息万变的环境中生存。受体本身充当“感觉器官”,而随后的信号回路可被视为形成“神经网络”,该神经网络参与决策,适应和最终确保生存。除生产用于治疗目的的药物外,细菌还可用作工业和临床诊断中的有用生物传感器。因此,非常需要包含具有高分子特异性,敏感性和剂量依赖性的跨膜信号传导系统的工程菌菌株。在这篇综述中,我们讨论了跨膜信号系统的复杂性,并讨论了重新连接受体及其信号输出的原理。

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