Beijing Center for Physical and Chemical Analysis, Beijing 100089, China.
Department of Chemistry, Beijing Key Laboratory for Analytical Methods and Instrumentation, Key Lab of Bioorganic Phosphorus Chemistry and Chemical Biology of Ministry of Education, Tsinghua University, Beijing 100084, China.
Biosens Bioelectron. 2018 Jun 30;109:132-138. doi: 10.1016/j.bios.2018.03.004. Epub 2018 Mar 5.
In this work, a novel and sensitive electrogenerated chemiluminescence (ECL) biosensor for protein kinase A (PKA) activity analysis and relevant inhibitor screening was proposed based on bimetallic catalysis signal amplification and recognition of Au and Pt nanoparticles loaded metal-organic frameworks (Au&Pt@UiO-66) nanocomposite. After being phosphorylated by PKA in the presence of ATP, Au&Pt@UiO-66 probes were specifically chelated to the modified electrode by forming Zr-O-P bonds between the surface defects of UiO-66 and the phosphorylated kemptide. Due to the high synergistic catalysis of Au&Pt@UiO-66 nanocomposites to the luminol-HO reaction, the ECL signal of luminol was greatly enhanced. Moreover, UiO-66 afford numerous Zr defect sites for high efficient phosphate group recognition, and can also prevent the nanoparticles from aggregating during catalytic reactions. Thus, the excellent performance of the ECL biosensor with high sensitivity and superior stability was obtained. Under the optimized conditions, the detection limit for PKA activity was 0.009 UmL (S/N = 3). Meanwhile, the ECL biosensor was successfully applied in inhibitor screening and cell lysates PKA activity analysis, showing great promise in kinase related research.
在这项工作中,提出了一种基于双金属催化信号放大和金和铂纳米粒子负载金属有机骨架(Au&Pt@UiO-66)纳米复合材料识别的新型灵敏电致化学发光(ECL)生物传感器,用于蛋白激酶 A(PKA)活性分析和相关抑制剂筛选。在存在 ATP 的情况下,PKA 对 Au&Pt@UiO-66 探针进行磷酸化后,通过 UiO-66 表面缺陷与磷酸化 Kemptide 之间形成 Zr-O-P 键,探针特异性地螯合到修饰电极上。由于 Au&Pt@UiO-66 纳米复合材料对鲁米诺-HO 反应具有高协同催化作用,因此鲁米诺的 ECL 信号大大增强。此外,UiO-66 为高效磷酸基团识别提供了大量 Zr 缺陷位,并可防止纳米颗粒在催化反应过程中聚集。因此,获得了具有高灵敏度和优越稳定性的 ECL 生物传感器的优异性能。在优化条件下,PKA 活性的检测限为 0.009 UmL(S/N = 3)。同时,该 ECL 生物传感器成功应用于抑制剂筛选和细胞裂解液 PKA 活性分析,在激酶相关研究中具有广阔的应用前景。