Department of Biotechnology, Chair of Bioprocess Engineering, Technische Universität Berlin, Straße des 17. Juni 135, 10623, Berlin, Germany.
BioNukleo GmbH, Ackerstraße 76, 13355, Berlin, Germany.
Chembiochem. 2021 Apr 16;22(8):1385-1390. doi: 10.1002/cbic.202000679. Epub 2021 Jan 26.
The poor solubility of many nucleosides and nucleobases in aqueous solution demands harsh reaction conditions (base, heat, cosolvent) in nucleoside phosphorylase-catalyzed processes to facilitate substrate loading beyond the low millimolar range. This, in turn, requires enzymes that can withstand these conditions. Herein, we report that the pyrimidine nucleoside phosphorylase from Thermus thermophilus is active over an exceptionally broad pH (4-10), temperature (up to 100 °C) and cosolvent space (up to 80 % (v/v) nonaqueous medium), and displays tremendous stability under harsh reaction conditions with predicted total turnover numbers of more than 10 for various pyrimidine nucleosides. However, its use as a biocatalyst for preparative applications is critically limited due to its inhibition by nucleobases at low concentrations, which is unprecedented among nonspecific pyrimidine nucleoside phosphorylases.
许多核苷和碱基在水溶液中的溶解度较差,这就要求在核苷磷酸化酶催化的过程中采用苛刻的反应条件(碱、热、助溶剂),以促进底物加载到低于毫摩尔的范围之外。这反过来又需要能够耐受这些条件的酶。在这里,我们报告说,来自嗜热栖热菌的嘧啶核苷磷酸化酶在非常宽的 pH 值(4-10)、温度(高达 100°C)和助溶剂范围内具有活性,并且在苛刻的反应条件下表现出巨大的稳定性,对于各种嘧啶核苷,预测总周转率超过 10。然而,由于其被低浓度的碱基抑制,其作为制备应用的生物催化剂的使用受到严格限制,这在非特异性嘧啶核苷磷酸化酶中是前所未有的。