Stauffert Fabien, Serra-Vinardell Jenny, Gómez-Grau Marta, Michelakakis Helen, Mavridou Irene, Grinberg Daniel, Vilageliu Lluïsa, Casas Josefina, Bodlenner Anne, Delgado Antonio, Compain Philippe
Laboratoire de Synthèse Organique et Molécules Bioactives (SYBIO), Université de Strasbourg/CNRS (UMR 7509), Ecole Européenne de Chimie, Polymères et Matériaux (ECPM), 25 rue Becquerel, 67087 Strasbourg, France.
Org Biomol Chem. 2017 May 3;15(17):3681-3705. doi: 10.1039/c7ob00443e.
A library of dimers and heterodimers of both enantiomers of 2-O-alkylated iminoxylitol derivatives has been synthesised and evaluated on β-glucocerebrosidase (GCase), the enzyme responsible for Gaucher disease (GD). Although the objective was to target simultaneously the active site and a secondary binding site of the glucosidase, the (-)-2-iminoxylitol moiety seemed detrimental for imiglucerase inhibition and no significant enhancement was obtained in G202R, N370S and L444P fibroblasts. However, all compounds having at least one (+)-2-O-alkyl iminoxylitol are GCase inhibitors in the nano molar range and are significant GCase activity enhancers in G202R fibroblats, as confirmed by a decrease of glucosylceramide levels and by co-localization studies.
已经合成了2-O-烷基化亚胺木糖醇衍生物对映体的二聚体和异二聚体文库,并在β-葡萄糖脑苷脂酶(GCase)上进行了评估,该酶是导致戈谢病(GD)的原因。尽管目标是同时靶向葡糖苷酶的活性位点和二级结合位点,但(-)-2-亚胺木糖醇部分似乎对伊米苷酶抑制有害,并且在G202R、N370S和L444P成纤维细胞中未获得显著增强。然而,所有具有至少一个(+)-2-O-烷基亚胺木糖醇的化合物都是纳摩尔范围内的GCase抑制剂,并且在G202R成纤维细胞中是显著的GCase活性增强剂,这通过葡糖神经酰胺水平的降低和共定位研究得到证实。