Key Laboratory of Analytical Chemistry for Biology and Medicine (Ministry of Education), College of Chemistry and Molecular Sciences, Wuhan University, Wuhan, 430072, China.
Anal Bioanal Chem. 2018 Nov;410(29):7591-7598. doi: 10.1007/s00216-018-1398-7. Epub 2018 Oct 1.
Multi-protein (or enzyme) conjugates play a vital role in biosensing due to the integrated function of each component, such as biological recognition and signal amplification. In this work, a green self-assembled method for the synthesis of multi-functional protein-enzyme nanoflowers has been developed, in which no chemical modification and coupling reaction is needed to fabricate the fluorescent signal probe. The self-assembled protein-enzyme conjugates streptavidin (SA) -β-galactosidase (β-Gal)-CaHPO nanoflowers load sufficient enzymes without damaging their activity, which meets the requirements of signal tags for biosensing. Through integrated multi-function of biorecognition (SA) and signal amplification (β-Gal), the SA-β-Gal-CaHPO hybrid nanoflower-based fluorescent sensor exhibited an ultrasensitive detection of protein biomarker alpha-fetoprotein (AFP), with limits of detection at the fM level. The presented self-assembled strategy can be extensively applied to develop on-demand protein-enzyme conjugates according to the specific requirements in a variety of applications including biosensors, bioimaging, and biomedicine. Graphical abstract A self-assembled method has been presented for the facile and green synthesis of SA-β-Gal-CaHPO nanocomplexes with flower-like shape and high activity, and further employed as signal tag for fluorescent sensing of protein biomarker.
多蛋白(或酶)缀合物由于每个组件的集成功能,如生物识别和信号放大,在生物传感中起着至关重要的作用。在这项工作中,开发了一种绿色的自组装方法来合成多功能蛋白-酶纳米花,其中不需要进行化学修饰和偶联反应来制备荧光信号探针。自组装的蛋白-酶缀合物链霉亲和素(SA)-β-半乳糖苷酶(β-Gal)-CaHPO 纳米花负载了足够的酶,而不会损害其活性,这满足了生物传感中信号标签的要求。通过生物识别(SA)和信号放大(β-Gal)的集成多功能性,基于 SA-β-Gal-CaHPO 杂化纳米花的荧光传感器对蛋白生物标志物甲胎蛋白(AFP)表现出超灵敏的检测,检测限达到 fM 水平。所提出的自组装策略可以根据各种应用(包括生物传感器、生物成像和生物医学)中的特定要求,广泛应用于按需合成蛋白-酶缀合物。