Jiangsu Key Laboratory for Carbon-based Functional Materials and Devices, Institute of Functional Nano and Soft Materials (FUNSOM), Soochow University, Suzhou, Jiangsu, 215123, China.
Nanoscale. 2017 Jun 22;9(24):8410-8417. doi: 10.1039/c7nr02285a.
The research field in enzyme-based biotechnology urgently requires the discovery of new materials and methods with high-performance. Here we report that highly crystalline graphite dots (GDs) can modulate enzyme activities, and simultaneously allow for real-time measurements on enzyme kinetics in combination with mass spectrometry (MS). A well-defined modulation of lipolytic activities from inhibition to enhancement can be realized by selectively coupling lipase enzymes with GDs containing specific functional groups on the surface. As a unique feature of our approach, GDs in the enzyme reaction can simultaneously serve as a versatile matrix for rapid and sensitive detection of the residual enzyme substrate, the intermediate or final product of lipolytic digestion using MS technology. Therefore, enzyme kinetic data can be collected in a real-time, high-throughput format. This work provides a new platform for enzymological research in hybrid bio-catalytic processes with advanced nanotechnology.
基于酶的生物技术的研究领域迫切需要发现具有高性能的新材料和方法。在这里,我们报告高度结晶的石墨点 (GDs) 可以调节酶的活性,并结合质谱 (MS) 同时允许实时测量酶动力学。通过选择性地将脂肪酶与表面含有特定官能团的 GDs 偶联,可以实现从抑制到增强的脂肪酶活性的良好调节。作为我们方法的一个独特特点,GDs 在酶反应中可以同时作为一种通用基质,使用 MS 技术快速、灵敏地检测脂肪酶消化的残留酶底物、中间产物或终产物。因此,可以实时、高通量地收集酶动力学数据。这项工作为具有先进纳米技术的混合生物催化过程中的酶学研究提供了一个新平台。