Pei Rui, Ye Li, Jing Chuanyong
Shandong Key Laboratory of Environmental Processes and Health, School of Environmental Science and Engineering, Shandong University, Qingdao, 266237, China.
Shandong Key Laboratory of Environmental Processes and Health, School of Environmental Science and Engineering, Shandong University, Qingdao, 266237, China; State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China.
Biosens Bioelectron. 2023 Jun 1;229:115244. doi: 10.1016/j.bios.2023.115244. Epub 2023 Mar 21.
Antimonite (Sb) is a naturally occurring contaminant demanding on-site ultrasensitive detection. The enzyme-based electrochemical (EC) biosensors are promising, but the lack of specific Sb oxidizing enzymes hindered the past efforts. Herein, we modulated the specificity of arsenite oxidase AioAB toward Sb by regulating its spatial conformation from tight to loose using the metal-organic framework ZIF-8. The constructed EC biosensor, AioAB@ZIF-8, exhibited the substrate specificity toward Sb at 12.8 s μM, an order of magnitude higher than that of As (1.1 s μM). Relaxing AioAB structure in ZIF-8 was evidenced by the break of the S-S bond and the conversion of α helix to the random coil as suggested by Raman spectroscopy. Our AioAB@ZIF-8 EC sensor exhibited a dynamic linear range in 0.041-4.1 μM at a response time of 5 s, and the detection limit at 0.041 μM at a high sensitivity of 1894 nA μM. The insights into tuning the specificity of an enzyme shed new light on biosensing metal(loid)s without specific proteins.
亚锑酸盐(Sb)是一种需要现场超灵敏检测的天然污染物。基于酶的电化学(EC)生物传感器很有前景,但缺乏特异性的Sb氧化酶阻碍了过去的研究进展。在此,我们使用金属有机框架ZIF-8将亚砷酸盐氧化酶AioAB的空间构象从紧密调节为松散,从而调节其对Sb的特异性。构建的EC生物传感器AioAB@ZIF-8对Sb表现出底物特异性,其值为12.8 s μM,比As(1.1 s μM)高一个数量级。拉曼光谱表明,ZIF-8中AioAB结构的松弛表现为S-S键的断裂以及α螺旋向无规卷曲的转变。我们的AioAB@ZIF-8 EC传感器在5 s的响应时间内,动态线性范围为0.041 - 4.1 μM,检测限为0.041 μM,灵敏度高达1894 nA μM。对调节酶特异性的深入了解为无需特定蛋白质的生物传感金属(类金属)提供了新的思路。