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Ratiometric Bioluminescent Sensor Proteins Based onIntramolecular Split Luciferase Complementation

机译:基于比例的生物发光传感器蛋白分子内分裂萤光素酶补体

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摘要

Bioluminescent sensor proteins provide attractive tools for applications ranging from in vivo imaging to point-of-care testing. Here we introduce a new class of ratiometric bioluminescent sensor proteins that do not rely on direct modulation of BRET efficiency, but are based on competitive intramolecular complementation of split NanoLuc luciferase. Proof of concept for the feasibility of this sensor principle was provided by developing a blue–red light emitting sensor protein for the detection of anti-HIV1-p17 antibodies with a 500% change in emission ratio and a Kd of 10 pM. The new sensor design also improved the dynamic response of a sensor for the therapeutic antibody cetuximab 4-fold, allowing the direct quantification of this anti-EGFR antibody in undiluted blood plasma. The modular sensor architecture allows easy and systematic tuning of a sensor’s dynamic range and should be generally applicable to allow rational engineering of bioluminescent sensor proteins.
机译:生物发光传感器蛋白为从体内成像到即时检验的各种应用提供了有吸引力的工具。在这里,我们介绍了一类新的比例式生物发光传感器蛋白,该蛋白不依赖于BRET效率的直接调节,而是基于分裂的NanoLuc荧光素酶的竞争性分子内互补。通过开发用于检测抗HIV1-p17抗体的蓝红色发光传感器蛋白,其发射率变化率为500%,Kd为10 pM,为这种传感器原理的可行性提供了概念验证。新的传感器设计还使用于治疗性西妥昔单抗的传感器的动态响应提高了4倍,从而可以在未稀释的血浆中直接定量该抗EGFR抗体。模块化传感器体系结构可以轻松,系统地调整传感器的动态范围,并且通常应适用于合理设计生物发光传感器蛋白。

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