Kershaw Neil M, Byrne Dominic P, Parsons Hollie, Berry Neil G, Fernig David G, Eyers Patrick A, Cosstick Richard
Department of Chemistry, University of Liverpool Liverpool L69 7ZD UK
Department of Biochemistry, Institute of Integrative Biology, University of Liverpool Liverpool L69 7ZB UK.
RSC Adv. 2019 Oct 9;9(55):32165-32173. doi: 10.1039/c9ra07567d. eCollection 2019 Oct 7.
Sulfotransferases (STs) catalyse the transfer of a sulfonyl group ('sulfation') from the enzyme co-factor 3'-phosphoadenosine 5'-phosphosulfate (PAPS) to a variety of biomolecules. Tyrosine sulfation of proteins and carbohydrate sulfation play a crucial role in many protein-protein interactions and cell signalling pathways in the extracellular matrix. This is catalysed by several membrane-bound STs, including tyrosylprotein sulfotransferase 1 (TPST1) and heparan sulfate 2--sulfotransferase (HS2ST1). Recently, involvement of these enzymes and their post-translational modifications in a growing number of disease areas has been reported, including inflammation, cancer and Alzheimer's disease. Despite their growing importance, the development of small molecules to probe the biological effect of TPST and carbohydrate ST inhibition remains in its infancy. We have used a structure-based approach and molecular docking to design a library of adenosine 3',5'-diphosphate (PAP) and PAPS mimetics based upon 2'-deoxyadenosine and using 2'-deoxy-PAP as a benchmark. The use of allyl groups as masked methyl esters was exploited in the synthesis of PAP-mimetics, and click chemistry was employed for the divergent synthesis of a series of PAPS-mimetics. A suite of assays employing TPST1 and HS2ST, and a kinase counter screen, were used to evaluate inhibitory parameters and relative specificity for the STs.
磺基转移酶(STs)催化将磺酰基(“硫酸化”)从酶辅因子3'-磷酸腺苷5'-磷酸硫酸酯(PAPS)转移到多种生物分子上。蛋白质的酪氨酸硫酸化和碳水化合物硫酸化在细胞外基质中的许多蛋白质-蛋白质相互作用和细胞信号通路中起着关键作用。这是由几种膜结合的STs催化的,包括酪氨酰蛋白磺基转移酶1(TPST1)和硫酸乙酰肝素2-O-磺基转移酶(HS2ST1)。最近,已有报道称这些酶及其翻译后修饰参与了越来越多的疾病领域,包括炎症、癌症和阿尔茨海默病。尽管它们的重要性日益增加,但用于探测TPST和碳水化合物ST抑制的生物学效应的小分子的开发仍处于起步阶段。我们采用基于结构的方法和分子对接,以2'-脱氧腺苷为基础设计了一组3',5'-二磷酸腺苷(PAP)和PAPS模拟物库,并以2'-脱氧-PAP为基准。在PAP模拟物的合成中利用烯丙基作为掩蔽的甲酯,并采用点击化学法进行一系列PAPS模拟物的发散合成。使用一组针对TPST1和HS2ST的测定以及激酶反筛选来评估STs的抑制参数和相对特异性。