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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:探测SP2-Iminosugars朝向人β-葡萄糖脑苷酶的抑制剂与伴侣性质:Gaucher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SP2的亚氨基糖glycomimetics在还原或非还原字符,所述构型图案(d葡糖或1- IDO),该糖基骨架的结构,并且nonglycone取代基的性质不同的已被合成并测定其抑制对商业糖苷酶的性质。上它们对GH1β葡糖苷酶,还原和非还原具有结构互补的与d-葡萄糖羟化轮廓双环衍生物和结合了N'-辛基异脲或异硫脲段亲和力和选择性的基础被选择用于进一步评估它们的针对人葡糖脑苷脂酶(的GCase)的抑制/陪伴潜力。 1-脱氧野尻霉素(DNJ)相关的非还原性偶联物表现为强的GCase抑制剂比减少同行和戈谢成纤维细胞表现出强效的陪伴能力承载神经型G188S / G183W突变,异硫脲衍生物的存在的确是最有效的分子伴侣候选之一报告了到目前为止(70%的活性增强,在20时)。在其最佳浓度,四个选择的化合物促进突变体的GCase活性的增强超过3倍;然而,抑制剂/陪伴平衡在低得多的浓度变成不利于非还原相比减少衍生物。

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