de Andrade Peterson, Ahmadipour Sanaz, Field Robert A
Manchester Institute of Biotechnology and Department of Chemistry, University of Manchester, 131 Princess Street, Manchester M1 7DN, UK.
Iceni Glycoscience Ltd, Norwich Research Park NR4 7GJ, UK.
Beilstein J Org Chem. 2022 Feb 17;18:208-216. doi: 10.3762/bjoc.18.24. eCollection 2022.
Sialic acid is the natural substrate for sialidases and its chemical modification has been a useful approach to generate potent and selective inhibitors. Aiming at advancing the discovery of selective -sialidase (TcTS) inhibitors, we have synthesised a small series of anomeric 1,2,3-triazole-linked sialic acid derivatives in good yields and high purity via copper-catalysed azide-alkyne cycloaddition (CuAAC, click chemistry) and evaluated their activity towards TcTS and neuraminidase. Surprisingly, the compounds showed practically no TcTS inhibition, whereas ca. 70% inhibition was observed for neuraminidase in relation to the analogues bearing hydrophobic substituents and ca. 5% for more polar substituents. These results suggest that polarity changes are less tolerated by neuraminidase due to the big difference in impact of hydrophobicity upon inhibition, thus indicating a simple approach to differentiate both enzymes. Moreover, such selectivity might be reasoned based on a possible steric hindrance caused by a bulky hydrophobic loop that sits over the TcTS active site and may prevent the hydrophobic inhibitors from binding. The present study is a step forward in exploiting subtle structural differences in sialidases that need to be addressed in order to achieve selective inhibition.
唾液酸是唾液酸酶的天然底物,对其进行化学修饰是一种获得强效和选择性抑制剂的有效方法。为了推进选择性唾液酸酶(TcTS)抑制剂的发现,我们通过铜催化的叠氮化物-炔烃环加成反应(CuAAC,点击化学),以良好的产率和高纯度合成了一小系列端基异构的1,2,3-三唑连接的唾液酸衍生物,并评估了它们对TcTS和神经氨酸酶的活性。令人惊讶的是,这些化合物几乎没有表现出对TcTS的抑制作用,而对于带有疏水取代基的类似物,对神经氨酸酶的抑制率约为70%,对于极性更强的取代基,抑制率约为5%。这些结果表明,由于疏水性对抑制作用的影响差异很大,神经氨酸酶对极性变化的耐受性较低,从而表明了一种区分这两种酶的简单方法。此外,这种选择性可能是基于一个位于TcTS活性位点上方的庞大疏水环可能造成的空间位阻来解释的,该空间位阻可能会阻止疏水抑制剂结合。本研究在利用唾液酸酶细微的结构差异方面向前迈进了一步,为实现选择性抑制,这些差异需要得到解决。