Technical University of Applied Sciences Wildau, Biosystems Technology, Hochschulring 1, 15745 Wildau (Deutschland).
Angew Chem Int Ed Engl. 2014 May 26;53(22):5676-9. doi: 10.1002/anie.201310437. Epub 2014 Apr 11.
A supramolecular multicomponent protein architecture on electrodes is developed that allows the establishment of bidirectional electron transfer cascades based on interprotein electron exchange. The architecture is formed by embedding two different enzymes (laccase and cellobiose dehydrogenase) and a redox protein (cytochrome c) by means of carboxy-modified silica nanoparticles in a multiple layer format. The construct is designed as a switchable dual analyte detection device allowing the measurement of lactose and oxygen, respectively. As the switching force we apply the electrode potential, which ensures control of the redox state of cytochrome c. The two signal chains are operating in a non-separated matrix and are not disturbed by the other biocatalyst.
开发了一种在电极上的超分子多组分蛋白质结构,该结构允许基于蛋白质间电子交换建立双向电子转移级联。该结构是通过将两种不同的酶(漆酶和纤维二糖脱氢酶)和一种氧化还原蛋白(细胞色素 c)嵌入到多层羧基修饰的硅纳米粒子中来形成的。该构建体被设计为可切换的双分析物检测装置,分别允许测量乳糖和氧气。作为切换力,我们施加电极电势,从而确保细胞色素 c 的氧化还原状态得到控制。这两个信号链在非分离的基质中运行,并且不受其他生物催化剂的干扰。