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Biochemical and Biodiversity Insights into Heavy Metal Ion-Responsive Transcription Regulators for Synthetic Biological Heavy Metal Sensors

机译:用于合成生物重金属传感器的重金属离子响应转录调节剂的生化和生物多样性洞察

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To adapt to environmental changes and to maintain cellular homeostasis, microorganisms adjust the intracellular concentrations of biochemical compounds, including metal ions; these are essential for the catalytic function of many enzymes in cells, but excessive amounts of essential metals and heavy metals cause cellular damage. Metal-responsive transcriptional regulators play pivotal roles in metal uptake, pumping out, sequestration, and oxidation or reduction to a less toxic status via regulating the expression of the detoxification-related genes. The sensory and regulatory functions of the metalloregulators have made them as attractive biological parts for synthetic biology, and the exceptional sensitivity and selectivity of metalloregulators toward metal ions have been used in heavy metal biosensors to cope with prevalent heavy metal contamination. Due to their importance, substantial efforts have been made to characterize heavy metal-responsive transcriptional regulators and to develop heavy metal-sensing biosensors. In this review, we summarize the biochemical data for the two major metalloregulator families, SmtB/ArsR and MerR, to describe their metal-binding sites, specific chelating chemistry, and conformational changes. Based on our understanding of the regulatory mechanisms, previously developed metal biosensors are examined to point out their limitations, such as high background noise and a lack of well-characterized biological parts. We discuss several strategies to improve the functionality of the metal biosensors, such as reducing the background noise and amplifying the output signal. From the perspective of making heavy metal biosensors, we suggest that the characterization of novel metalloregulators and the fabrication of exquisitely designed genetic circuits will be required.
机译:为了适应环境变化并维持细胞稳态,微生物调节细胞内浓度的生化化合物,包括金属离子;这些对于细胞中许多酶的催化功能至关重要,但过量的基本金属和重金属导致细胞损伤。金属响应转录调节剂在金属摄取,泵出,螯合,氧化和氧化或氧化或降低到较小的毒性状态,通过调节解毒相关基因的表达。 Metalloregulators的感官和调节功能使它们作为合成生物学的吸引力和生物零件,并且用于金属离子的常见敏感性和选择性已用于重金属生物传感器以应对普遍的重金属污染。由于它们的重要性,已经进行了大量努力,以表征重金属响应性转录调节剂并开发重金属传感的生物传感器。在本文中,我们总结了两种主要的梅金属种族家族,SMTB / ARSR和MERR的生物化学数据,以描述其金属结合位点,特定的螯合化学和构象变化。基于我们对监管机制的理解,检查了以前开发的金属生物传感器以指出它们的局限性,例如高背景噪音和缺乏良好的生物零件。我们讨论了改善金属生物传感器功能的几种策略,例如减少背景噪声并放大输出信号。从制造重金属生物传感器的角度来看,我们建议需要新的孔牙调用仪和制造精美设计的遗传电路的制造。

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