Lee Heonjoon, Xie Tian, Yu Xinjie, Schaffter Samuel W, Schulman Rebecca
Biomedical Engineering, Johns Hopkins University School of Medicine, Baltimore, MD 21218.
Biochemistry and Molecular Biology, Johns Hopkins Bloomberg School of Public Health, Baltimore, MD 21205.
bioRxiv. 2023 Aug 14:2023.08.10.552680. doi: 10.1101/2023.08.10.552680.
Molecular biosensors that accurately measure protein concentrations without external equipment are critical for solving numerous problems in diagnostics and therapeutics. Modularly transducing the binding of protein antibodies, protein switches or aptamers into a useful output remains challenging. Here, we develop a biosensing platform based on aptamer-regulated transcription in which aptamers integrated into transcription templates serve as inputs to molecular circuits that can be programmed to a produce a variety of responses. We modularly design molecular biosensors using this platform by swapping aptamer domains for specific proteins and downstream domains that encode different RNA transcripts. By coupling aptamer-regulated transcription with diverse transduction circuits, we rapidly construct analog protein biosensors or digital protein biosensors with detection ranges that can be tuned over two orders of magnitude. Aptamer-regulated transcription is a straightforward and inexpensive approach for constructing programmable protein biosensors suitable for diverse research and diagnostic applications.
无需外部设备就能精确测量蛋白质浓度的分子生物传感器对于解决诊断和治疗中的众多问题至关重要。将蛋白质抗体、蛋白质开关或适配体的结合模块化地转化为有用的输出仍然具有挑战性。在这里,我们开发了一种基于适配体调控转录的生物传感平台,其中整合到转录模板中的适配体作为分子电路的输入,这些分子电路可以被编程以产生各种反应。我们通过将适配体结构域替换为特定蛋白质和编码不同RNA转录本的下游结构域,使用该平台模块化地设计分子生物传感器。通过将适配体调控转录与不同的转导电路相结合,我们快速构建了检测范围可在两个数量级内调节的模拟蛋白质生物传感器或数字蛋白质生物传感器。适配体调控转录是一种直接且廉价的方法,用于构建适用于各种研究和诊断应用的可编程蛋白质生物传感器。