亚氨基糖
葡萄糖脑苷酶
内质网
化学
溶酶体
酶
生物化学
突变体
部分
糖苷水解酶
化学伴侣
细胞生物学
生物
立体化学
未折叠蛋白反应
基因
作者
Teresa Mena‐Barragán,Aya Narita,Dino Matias,Gustavo Tiscórnia,Eiji Nanba,Kousaku Ohno,Yoshiyuki Suzuki,Kazutaka Higaki,José M. Garcı́a Fernández,Carmen Ortiz Mellet
标识
DOI:10.1002/anie.201505147
摘要
A general approach is reported for the design of small-molecule competitive inhibitors of lysosomal glycosidases programmed to 1) promote correct folding of mutant enzymes at the endoplasmic reticulum, 2) facilitate trafficking, and 3) undergo dissociation and self-inactivation at the lysosome. The strategy is based on the incorporation of an orthoester segment into iminosugar conjugates to switch the nature of the aglycone moiety from hydrophobic to hydrophilic in the pH 7 to pH 5 window, which has a dramatic effect on the enzyme binding affinity. As a proof of concept, new highly pH-responsive glycomimetics targeting human glucocerebrosidase or α-galactosidase with strong potential as pharmacological chaperones for Gaucher or Fabry disease, respectively, were developed.
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