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Construction of an Enzyme Cascade Based on the Accurate Adjacent Arrangement of Coupled Enzymes Using a Triblock PolyA DNA Probe

Lele Wang, Ruiyan Guo, Lanying Li, Qing Tao, Qin Xu, Xue Yang, Xue Liu, Jiang Li, Lihua Wang, Jinxue Chang, Chengming Cao, Yanli Wen, Shiping Song, Gang Liu

2023JACS Au11 citationsDOIOpen Access PDF

Abstract

Intracellular enzyme cascades are essential for various biological processes, and mimicking their functions in artificial systems has attracted significant research attention. However, achieving convenient and efficient spatial organization of enzymes on interfaces remains a critical challenge. In this work, we designed a simple single-DNA scaffold using triblock polyA single-stranded DNA for the arrangement of coupled enzymes. The scaffold was assembled onto a gold electrode through the affinity of polyA-Au, and two enzymes (glucose oxidase and horseradish peroxidase) were captured through hybridization. The molecular distance between the enzymes was regulated by changing the length of the polyA fragment. As a proof of concept, a glucose biosensor was constructed based on the enzyme cascade amplification. The biosensor exhibited excellent detection capability for glucose in human serum samples with a limit of detection of 1.6 μM. Additionally, a trienzyme cascade reaction was successfully activated, demonstrating the potential scalability of our approach for multienzyme reactions. This study provides a promising platform for the development of easy-to-operate, highly efficient, and versatile enzyme cascade systems using DNA scaffolds.

Topics & Concepts

Glucose oxidaseBiosensorHorseradish peroxidaseEnzymeCascadeDNACombinatorial chemistryChemistryPeroxidaseNanotechnologyBiochemistryBiophysicsMaterials scienceBiologyChromatographyAdvanced biosensing and bioanalysis techniquesBiosensors and Analytical DetectionAnalytical Chemistry and Sensors
Construction of an Enzyme Cascade Based on the Accurate Adjacent Arrangement of Coupled Enzymes Using a Triblock PolyA DNA Probe | Litcius