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基于合成开关模块的可推广蛋白质生物传感器。

Generalizable Protein Biosensors Based on Synthetic Switch Modules.

机构信息

CSIRO-QUT Synthetic Biology alliance, Centre for Tropical Crops and Biocommodities, School of Earth, Environmental and Biological Sciences , Queensland University of Technology , Brisbane , QLD 4001 , Australia.

Australian Institute for Bioengineering and Nanotechnology , The University of Queensland , Brisbane , QLD 4072 , Australia.

出版信息

J Am Chem Soc. 2019 May 22;141(20):8128-8135. doi: 10.1021/jacs.8b12298. Epub 2019 May 10.

Abstract

Allosteric protein switches are key controllers of information and energy processing in living organisms and are desirable engineered control tools in synthetic systems. Here we present a generally applicable strategy for construction of allosteric signaling systems with inputs and outputs of choice. We demonstrate conversion of constitutively active enzymes into peptide-operated synthetic allosteric ON switches by insertion of a calmodulin domain into rationally selected sites. Switches based on EGFP, glucose dehydrogenase, NanoLuciferase, and dehydrofolate reductase required minimal optimization and demonstrated a dynamic response ranging from 1.8-fold in the former case to over 200-fold in the latter case. The peptidic nature of the calmodulin ligand enables incorporation of such synthetic switch modules into higher order sensory architectures. Here, a ligand-mediated increase in proximity of the allosteric switch and the engineered activator peptide modulates biosensor's activity. Created biosensors were used to measure concentrations of clinically relevant drugs and biomarkers in plasma, saliva, and urine with accuracy comparable to that of the currently used clinical diagnostic assays. The approach presented is generalizable as it allows rapid construction of efficient protein switches that convert binding of a broad range of analytes into a biochemical activity of choice enabling construction of artificial signaling and metabolic circuits of potentially unlimited complexity.

摘要

变构蛋白开关是生物体内信息和能量处理的关键控制器,也是合成系统中理想的工程控制工具。在这里,我们提出了一种通用的策略,用于构建具有所需输入和输出的变构信号系统。我们通过在合理选择的位点插入钙调蛋白结构域,将组成型激活酶转化为肽操作的合成变构 ON 开关。基于 EGFP、葡萄糖脱氢酶、NanoLuciferase 和二氢叶酸还原酶的开关仅需最小的优化,其动态响应范围从前者的 1.8 倍到后者的 200 倍以上。钙调蛋白配体的肽性质使得可以将这种合成开关模块纳入更高阶的感觉结构中。在这里,配体介导的变构开关和工程激活肽的接近度增加调节了生物传感器的活性。所创建的生物传感器可用于测量血浆、唾液和尿液中临床相关药物和生物标志物的浓度,其准确性可与目前使用的临床诊断测定相媲美。所提出的方法具有通用性,因为它允许快速构建高效的蛋白质开关,将广泛的分析物结合转化为所需的生化活性,从而能够构建具有潜在无限复杂性的人工信号和代谢电路。

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