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首页> 外文期刊>Organic & biomolecular chemistry >Conformationally-locked C-glycosides: tuning aglycone interactions for optimal chaperone behaviour in Gaucher fibroblasts
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Conformationally-locked C-glycosides: tuning aglycone interactions for optimal chaperone behaviour in Gaucher fibroblasts

机译:构象锁定的C-糖苷:调节Gaucher成纤维细胞中最佳伴侣伴侣行为的糖苷配基相互作用

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摘要

A series of conformationally locked C-glycosides based on the 3-aminopyrano[3,2-blpyrrol-2(1H)-one (APP) scaffold has been synthesized. The key step involved a totally stereocontrolled C-Michael addition of a serine-equivalent C-nucleophile to tri-O-benzyl-2-nitro-D-galactal, previously published by the authors. Stereoselective transformations of the Michael adduct allowed us the synthesis of compounds with mono- or diantennated aglycone moieties and different topologies. In vitro screening showed highly selective inhibition of bovine liver p-glucosidase/p-galactosidase and specific inhibition of human p-gluco-cerebrosidase among lysosomal glycosidases for compounds bearing palmitoyl chains in the aglycone, with a marked dependence of the inhibition potency upon their number and location. Molecular dynamics simulations highlighted the paramount importance of an optimal orientation of the hydro-phobic substituent to warrant efficient non-glycone interactions, which are critical for the binding affinity. The results provide a rationale for the strong decrease of the inhibition potency of APP compounds on going from neutral to acidic pH. The best candidate was found to behave as pharmacological chaperone in Gaucher fibroblasts with homozygous N370S and F213I mutations, with enzyme activity enhancements similar to those encountered for the reference compound Ambroxol®.
机译:基于3-氨基吡喃并[3,2-blpyrrol-2(1H)-one(APP)支架,合成了一系列构象锁定的C-糖苷。作者之前曾发表过论文,关键步骤涉及将丝氨酸等效的C-亲核试剂完全立体控制的C-Michael加成至三-O-苄基-2-硝基-D-半乳糖。迈克尔加合物的立体选择性转化使我们能够合成具有单或双天线的糖苷配基部分和不同拓扑结构的化合物。体外筛选显示对糖苷酶中糖苷酶中糖苷配基中的棕榈糖苷酶/β-半乳糖苷酶有高度选择性的抑制作用,对糖苷酶中人β-葡萄糖脑苷脂酶的特异性抑制作用显着地取决于其数目和位置。分子动力学模拟强调了疏水取代基的最佳取向对于保证有效的非糖苷相互作用至关重要,这对于结合亲和力至关重要。该结果为从中性至酸性pH时APP化合物抑制能力的大幅降低提供了依据。在具有纯合N370S和F213I突变的Gaucher成纤维细胞中,发现最佳候选物表现为药理伴侣,其酶活性增强与参考化合物Ambroxol®相似。

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  • 来源
    《Organic & biomolecular chemistry》 |2016年第4期|1473-1484|共12页
  • 作者单位

    Departamento de Quimica and Centro de Investigacion en Sintesis Quimica, Universidad de La Rioja, c/Madre de Dios, 53, 26006 Logrono, Spain;

    Departamento de Quimica and Centro de Investigacion en Sintesis Quimica, Universidad de La Rioja, c/Madre de Dios, 53, 26006 Logrono, Spain;

    Departamento de Quimica Organica, Facultad de Quimica, Universidad de Sevilla, c/Profesor Garcia Gonzalez 1, 41012 Sevilla, Spain;

    Departamento de Quimica and Centro de Investigacion en Sintesis Quimica, Universidad de La Rioja, c/Madre de Dios, 53, 26006 Logrono, Spain;

    Departamento de Quimica and Centro de Investigacion en Sintesis Quimica, Universidad de La Rioja, c/Madre de Dios, 53, 26006 Logrono, Spain;

    Departamento de Quimica and Centro de Investigacion en Sintesis Quimica, Universidad de La Rioja, c/Madre de Dios, 53, 26006 Logrono, Spain;

    Division of Functional Genomics, Research Center for Bioscience and Technology, Tottori University, 86 Nishi-cho, Yonago 683-8503, Japan;

    Division of Functional Genomics, Research Center for Bioscience and Technology, Tottori University, 86 Nishi-cho, Yonago 683-8503, Japan;

    Departamento de Quimica Organica, Facultad de Quimica, Universidad de Sevilla, c/Profesor Garcia Gonzalez 1, 41012 Sevilla, Spain;

    Instituto de Investigaciones Quimicas (IIQ), CSIC - Universidad de Sevilla, Avda, Americo Vespucio 49, 41092 Sevilla, Spain;

    Departamento de Quimica and Centro de Investigacion en Sintesis Quimica, Universidad de La Rioja, c/Madre de Dios, 53, 26006 Logrono, Spain;

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