Department of Chemistry, Loughborough University, Epinal Way, Loughborough, LE11 3TU, UK.
Department of Biochemistry, Institute for Integrative Biology, University of Liverpool, Liverpool, L69 7ZB, UK.
Org Biomol Chem. 2022 Jan 19;20(3):596-605. doi: 10.1039/d1ob02071d.
Sulfotransferases constitute a ubiquitous class of enzymes which are poorly understood due to the lack of a convenient tool for screening their activity. These enzymes use the anion PAPS (adenosine-3'-phosphate-5'-phosphosulfate) as a donor for a broad range of acceptor substrates, including carbohydrates, producing sulfated compounds and PAP (adenosine-3',5'-diphosphate) as a side product. We present a europium(III)-based probe that binds reversibly to both PAPS and PAP, producing a larger luminescence enhancement with the latter anion. We exploit this greater emission enhancement with PAP to demonstrate the first direct real-time assay of a heparan sulfate sulfotransferase using a multi-well plate format. The selective response of our probe towards PAP over structurally similar nucleoside phosphate anions, and over other anions, is investigated and discussed. This work opens the possibility of investigating more fully the roles played by this enzyme class in health and disease, including operationally simple inhibitor screening.
磺基转移酶是一类普遍存在的酶,由于缺乏筛选其活性的便捷工具,因此其功能仍未被充分了解。这些酶利用阴离子 PAPS(腺苷-3′-磷酸-5′-磷酸硫酸)作为广泛的接受底物(包括碳水化合物)的供体,产生硫酸化化合物和 PAP(腺苷-3′,5′-二磷酸)作为副产物。我们提出了一种基于铕(III)的探针,它可以与 PAPS 和 PAP 可逆结合,后者阴离子会产生更大的发光增强。我们利用 PAP 产生的这种更大的发射增强来证明使用多孔板格式对硫酸乙酰肝素硫酸转移酶进行的首次直接实时分析。我们研究并讨论了探针对 PAP 的选择性反应,与结构相似的核苷磷酸阴离子以及其他阴离子相比。这项工作为更全面地研究该酶类在健康和疾病中的作用提供了可能性,包括操作简单的抑制剂筛选。