Institute of Biotechnology, Chair of Bioprocess Engineering, Technische Universität Berlin ACK 24, Ackerstraße 76, 13355, Berlin, Germany.
BioNukleo GmbH, Ackerstraße 76, 13355, Berlin, Germany.
Chembiochem. 2020 Sep 14;21(18):2604-2610. doi: 10.1002/cbic.202000204. Epub 2020 Jun 18.
The increased interest in (enzymatic) transformations between nucleosides and nucleobases has demanded the development of efficient analytical tools. In this report, we present an update and extension of our recently described method for monitoring these reactions by spectral unmixing. The presented method uses differences in the UV absorption spectra of nucleosides and nucleobases after alkaline quenching to derive their ratio based on spectral shape by fitting normalized reference spectra. It is applicable to a broad compound spectrum comprising more than 35 examples, offers HPLC-like accuracy, ease of handling and significant reductions in both cost and data acquisition time compared to other methods. This contribution details the principle of monitoring reactions by spectral unmixing, gives recommendations regarding solutions to common problems and applications that necessitate special sample treatment. We provide software, workflows and reference spectra that facilitate the straightforward and versatile application of the method.
人们对核苷和碱基之间(酶促)转化的兴趣日益浓厚,这就要求开发有效的分析工具。在本报告中,我们介绍了我们最近描述的一种通过光谱解混来监测这些反应的方法的更新和扩展。所提出的方法利用碱性淬灭后核苷和碱基的紫外吸收光谱之间的差异,通过拟合归一化参考光谱来基于光谱形状推导出它们的比值。它适用于包含 35 多个实例的广泛化合物光谱,与其他方法相比,它具有 HPLC 般的准确性、易于操作以及显著降低成本和数据采集时间的优点。本贡献详细介绍了通过光谱解混监测反应的原理,给出了有关解决常见问题的建议以及需要特殊样品处理的应用。我们提供软件、工作流程和参考光谱,以方便该方法的直接和通用应用。