Mena-Barragán Teresa, García-Moreno M Isabel, Nanba Eiji, Higaki Katsumi, Concia Alda Lisa, Clapés Pere, García Fernández José Manuel, Ortiz Mellet Carmen
Department of Organic Chemistry, Faculty of Chemistry, University of Seville, C/ Profesor García González 1, 41012 Seville, Spain.
Division of Functional Genomics, Research Center for Bioscience and Technology, Tottori University, 86 Nishi-cho, Yonago 683-8503, Japan.
Eur J Med Chem. 2016 Oct 4;121:880-891. doi: 10.1016/j.ejmech.2015.08.038. Epub 2015 Aug 31.
A library of sp(2)-iminosugar conjugates derived from the piperidine iminosugar d-fagomine and the enantiomeric pyrrolidine iminosugars DAB and LAB has been generated in only two steps involving direct coupling of the fully unprotected polyhydroxylated heterocycles with isothiocyanates, to give monocyclic thiourea adducts, and further intramolecular nucleophilic displacement of the δ-located primary hydroxyl group by the thiocarbonyl sulphur atom, affording bicyclic isothioureas. These transformations led to a dramatic shift in the inhibitory selectivity from α- to β-glucosidases, with inhibition potencies that depended strongly on the nature of the aglycone-type moiety in the conjugates. Some of the new derivatives behaved as potent inhibitors of human β-glucocerebrosidase (GCase), the lysosomal enzyme whose dysfunction is responsible for Gaucher disease. Moreover, GCase inhibition was 10-fold weaker at pH 5 as compared to pH 7, which is generally considered as a good property for pharmacological chaperones. Surprisingly, most of the compounds strongly inhibited GCase in wild type fibroblasts at rather low concentrations, showing an unfavourable chaperone/inhibitor balance on disease-associated GCase mutants in cellulo. A structure-activity relationship analysis points to the need for keeping a contiguous triol system in the glycone moiety of the conjugates to elicit a chaperone effect. In any case, the results reported here represent a proof of concept of the utmost importance of implementing diversity-oriented strategies for the identification and optimization of potent and specific glycosidase inhibitors and chaperones.
已通过仅两步反应构建了一个由哌啶亚氨基糖 d-法戈明以及对映体吡咯烷亚氨基糖 DAB 和 LAB 衍生而来的 sp(2)-亚氨基糖缀合物库。这两步反应包括将完全未保护的多羟基化杂环与异硫氰酸酯直接偶联,得到单环硫脲加合物,以及硫羰基硫原子对 δ 位伯羟基进行进一步的分子内亲核取代,从而得到双环异硫脲。这些转化导致抑制选择性从 α-葡萄糖苷酶显著转变为 β-葡萄糖苷酶,其抑制效力在很大程度上取决于缀合物中糖苷配基型部分的性质。一些新衍生物表现为人类β-葡萄糖脑苷脂酶(GCase)的有效抑制剂,GCase 是一种溶酶体酶,其功能障碍会导致戈谢病。此外,与 pH 7 相比,GCase 在 pH 5 时的抑制作用弱 10 倍,这通常被认为是药理伴侣的良好特性。令人惊讶的是,大多数化合物在相当低的浓度下就能强烈抑制野生型成纤维细胞中的 GCase,在细胞内对与疾病相关的 GCase 突变体显示出不利的伴侣/抑制剂平衡。结构-活性关系分析表明,在缀合物的糖部分保持连续的三元醇系统对于产生伴侣效应是必要的。无论如何,此处报道的结果代表了一个概念验证,即实施面向多样性的策略对于鉴定和优化有效且特异性的糖苷酶抑制剂和伴侣至关重要。