Exploring the Mutated Kinases for Chemoenzymatic Synthesis of N4-Modified Cytidine Monophosphates

Martyna Koplūnaitė, Kamilė Butkutė, J. Stankevičiūtė, R. Meškys
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Abstract

Nucleosides, nucleotides, and their analogues are an important class of molecules that are used as substrates in research of enzymes and nucleic acid, or as antiviral and antineoplastic agents. Nucleoside phosphorylation is usually achieved with chemical methods; however, enzymatic phosphorylation is a viable alternative. Here, we present a chemoenzymatic synthesis of modified cytidine monophosphates, where a chemical synthesis of novel N4-modified cytidines is followed by an enzymatic phosphorylation of the nucleosides by nucleoside kinases. To enlarge the substrate scope, multiple mutant variants of Drosophila melanogaster deoxynucleoside kinase (DmdNK) (EC:2.7.1.145) and Bacillus subtilis deoxycytidine kinase (BsdCK) (EC:2.7.1.74) have been created and tested. It has been determined that certain point mutations in the active sites of the kinases alter their substrate specificities noticeably and allow phosphorylation of compounds that had been otherwise not phosphorylated by the wild-type DmdNK or BsdCK.
探索变异激酶对 N4 改性胞苷单磷酸的化学合成作用
核苷、核苷酸及其类似物是一类重要的分子,可用作酶和核酸研究的底物,或用作抗病毒和抗肿瘤药物。核苷磷酸化通常通过化学方法实现,但酶法磷酸化也是一种可行的替代方法。在这里,我们提出了一种化学酶法合成修饰胞嘧啶单磷酸盐的方法,即在化学合成新型 N4 修饰胞嘧啶之后,由核苷激酶对核苷进行酶法磷酸化。为了扩大底物的范围,我们创建并测试了黑腹果蝇脱氧核苷激酶(DmdNK)(EC:2.7.1.145)和枯草芽孢杆菌脱氧胞苷激酶(BsdCK)(EC:2.7.1.74)的多种突变体。结果表明,激酶活性位点上的某些点突变明显改变了它们的底物特异性,使野生型 DmdNK 或 BsdCK 无法磷酸化的化合物发生磷酸化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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