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Probing the Inhibitor versus Chaperone Properties of sp2-Iminosugars towards Human β-Glucocerebrosidase: A Picomolar Chaperone for Gaucher Disease

机译:探究sp2-氨基糖对人β-葡萄糖脑苷脂酶的抑制剂与伴侣性质:一种针对高雪氏病的皮摩尔伴侣

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摘要

A series of sp2-iminosugar glycomimetics differing in the reducing or nonreducing character, the configurational pattern (d-gluco or l-ido), the architecture of the glycone skeleton, and the nature of the nonglycone substituent has been synthesized and assayed for their inhibition properties towards commercial glycosidases. On the basis of their affinity and selectivity towards GH1 β-glucosidases, reducing and nonreducing bicyclic derivatives having a hydroxylation profile of structural complementarity with d-glucose and incorporating an N′-octyl-isourea or -isothiourea segment were selected for further evaluation of their inhibitory/chaperoning potential against human glucocerebrosidase (GCase). The 1-deoxynojirimycin (DNJ)-related nonreducing conjugates behaved as stronger GCase inhibitors than the reducing counterparts and exhibited potent chaperoning capabilities in Gaucher fibroblasts hosting the neuronopathic G188S/G183W mutation, the isothiourea derivative being indeed one of the most efficient chaperone candidates reported up to date (70% activity enhancement at 20 pM). At their optimal concentration, the four selected compounds promoted mutant GCase activity enhancements over 3-fold; yet, the inhibitor/chaperoning balance became unfavorable at much lower concentration for nonreducing as compared to reducing derivatives.
机译:一系列sp 2 -亚氨基糖糖模拟物,其还原或非还原特性,构型模式(d-葡萄糖或l-ido),配糖骨架的结构以及非糖苷配基的性质不同已经合成并测定了它们对商业糖苷酶的抑制特性。基于它们对GH1β-葡萄糖苷酶的亲和力和选择性,选择具有与d-葡萄糖结构互补的羟基化特征并且结合了N'-辛基-异脲或-异硫脲链段的还原和非还原双环衍生物。对人葡糖脑苷脂酶(GCase)的抑制/陪伴潜力。 1-deoxynojirimycin(DNJ)相关的非还原偶联物表现出比还原性对应物更强的GCase抑制剂,并且在寄养神经性G188S / G183W突变的Gaucher成纤维细胞中表现出强大的伴侣功能,异硫脲衍生物确实是报告的最有效伴侣伴侣之一迄今为止(在20 pM时,活性提高了70%)。在它们的最佳浓度下,四种选择的化合物将突变型GCase活性提高了3倍以上。然而,与还原性衍生物相比,在非还原性浓度低得多的情况下,抑制剂/分子伴侣的平衡变得不利。

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