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Probing the acceptor substrate binding site of Trypanosoma cruzi trans-sialidase with systematically modified substrates and glycoside libraries

机译:用系统修饰的底物和糖苷库探究克氏锥虫反唾液酸酶的受体底物结合位点

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摘要

Systematically modified octyl galactosides and octyl N-acetyllactosamines were assessed as inhibitors of, and substrates for, T. cruzi trans-sialidase (TcTS) in the context of exploring its acceptor substrate binding site. These studies show that TcTS, which catalyses the alpha-(2 -> 3)-sialylation of non-reducing terminal beta-galactose residues, is largely intolerant of substitution of the galactose 2 and 4 positions whereas substitution of the galactose 6 position is well tolerated. Further studies show that even the addition of a bulky sugar residue (glucose, galactose) does not impact negatively on TcTS binding and turnover, which highlights the potential of 'internal' 6-substituted galactose residues to serve as TcTS acceptor substrates. Results from screening a 93-membered thiogalactoside library highlight a number of structural features (notably imidazoles and indoles) that are worthy of further investigation in the context of TcTS inhibitor development.
机译:在探索其受体底物结合位点的背景下,评估了系统修饰的辛基半乳糖苷和辛基N-乙酰基乳糖胺作为克氏锥虫反唾液酸酶(TcTS)的抑制剂和底物。这些研究表明,催化非还原性末端β-半乳糖残基的α-(2-> 3)唾液酸化的TcTS在很大程度上不耐受半乳糖2和4位的取代,而对半乳糖6位的取代是很好的宽容的。进一步的研究表明,即使添加大量的糖残基(葡萄糖,半乳糖)也不会对TcTS的结合和周转产生负面影响,这突出了“内部” 6-取代的半乳糖残基作为TcTS受体底物的潜力。筛选具有93个成员的硫代半乳糖苷文库的结果突出了许多结构特征(尤其是咪唑和吲哚),值得在TcTS抑制剂开发过程中进行进一步研究。

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