Kaspar Felix, Giessmann Robert T, Krausch Niels, Neubauer Peter, Wagner Anke, Gimpel Matthias
Bioprocess Engineering, Department of Biotechnology, Technische Universität Berlin, Ackerstraße 76, ACK24, D-13355 Berlin, Germany.
BioNukleo GmbH, Ackerstraße 76, D-13355 Berlin, Germany.
Methods Protoc. 2019 Jul 15;2(3):60. doi: 10.3390/mps2030060.
Efficient reaction monitoring is crucial for data acquisition in kinetic and mechanistic studies. However, for conversions of nucleosides to their corresponding nucleobases, as observed in enzymatically catalyzed nucleoside phosphorylation reactions, the current analytical arsenal does not meet modern requirements regarding cost, speed of analysis and high throughput. Herein, we present a UV/Vis spectroscopy-based assay employing an algorithm for spectral unmixing in a 96-well plate format. The algorithm relies on fitting of reference spectra of nucleosides and their bases to experimental spectra and allows determination of nucleoside/nucleobase ratios in solution with high precision. The experimental procedure includes appropriate dilution of a sample into aqueous alkaline solution, transfer to a multi-well plate, measurement of a UV/Vis spectrum and subsequent in silico spectral unmixing. This enables data collection in a high-throughput fashion and reduces costs compared to state-of-the-art HPLC analyses by approximately 5-fold while being 20-fold faster and offering comparable precision. Additionally, the method is robust regarding dilution and sample transfer errors as it only considers spectral form and not absolute intensity. It can be applied to all natural nucleosides and nucleobases and even unnatural ones as demonstrated by several examples.
高效的反应监测对于动力学和机理研究中的数据采集至关重要。然而,在酶催化的核苷磷酸化反应中观察到的核苷向其相应碱基的转化,目前的分析方法在成本、分析速度和高通量方面不符合现代要求。在此,我们提出一种基于紫外/可见光谱的检测方法,该方法采用一种算法以96孔板形式进行光谱解混。该算法依赖于将核苷及其碱基的参考光谱与实验光谱进行拟合,并能够高精度地测定溶液中核苷/碱基的比例。实验步骤包括将样品适当稀释到碱性水溶液中,转移到多孔板中,测量紫外/可见光谱,随后进行计算机光谱解混。这使得能够以高通量方式收集数据,与目前最先进的高效液相色谱分析相比,成本降低了约5倍,速度快20倍,且精度相当。此外,该方法对于稀释和样品转移误差具有鲁棒性,因为它只考虑光谱形式而不考虑绝对强度。如几个例子所示,它可应用于所有天然核苷和碱基,甚至非天然的核苷和碱基。