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Gluco-1H-imidazole: A New Class of Azole-Type β-Glucosidase Inhibitor

机译:Gluco-1H-咪唑:新型的Azole型β-葡萄糖苷酶抑制剂

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摘要

Gluco-azoles competitively inhibit glucosidases by transition-state mimicry and their ability to interact with catalytic acid residues in glucosidase active sites. We noted that no azole-type inhibitors described, to date, possess a protic nitrogen characteristic for 1H -imidazoles. Here, we present gluco-1H -imidazole, a gluco-azole bearing a 1H -imidazole fused to a glucopyranose-configured cyclitol core, and three close analogues as new glucosidase inhibitors. All compounds inhibit human retaining β-glucosidase, GBA1, with the most potent ones inhibiting this enzyme (deficient in Gaucher disease) on a par with glucoimidazole. None inhibit glucosylceramide synthase, cytosolic β-glucosidase GBA2 or α-glucosidase GAA. Structural, physical and computational studies provide first insights into the binding mode of this conceptually new class of retaining β-glucosidase inhibitors.
机译:葡糖唑类通过过渡态模仿及其与葡糖苷酶活性位点中的催化酸残基相互作用的能力竞争性抑制葡糖苷酶。我们注意到,迄今为止,没有描述的唑型抑制剂具有1 H-咪唑的质子氮特征。在这里,我们提出了葡萄糖-1 H-咪唑,带有1 H-咪唑的葡萄糖-吡唑,其与葡萄糖吡喃糖构成的环糖醇核心融合,以及作为新的葡萄糖苷酶抑制剂的三个紧密类似物。所有化合物均能抑制人体内保留的β-葡萄糖苷酶GBA1,而最有效的化合物可抑制该酶(在高雪氏病中缺乏),与葡糖咪唑同等。没有一种可以抑制葡萄糖基神经酰胺合酶,胞质β-葡萄糖苷酶GBA2或α-葡萄糖苷酶GAA。结构,物理和计算研究为这种概念上新型的保留β-葡萄糖苷酶抑制剂的结合模式提供了第一见解。

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  • 来源
    《Journal of the American Chemical Society》 |2018年第15期|5045-5048|共4页
  • 作者单位

    Department of Bioorganic Synthesis and Department of Medical Biochemistry, Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, 2333 CC Leiden, The Netherlands;

    Department of Chemistry, York Structural Biology Laboratory, University of York, Heslington, York YO10 5DD, United Kingdom;

    Department of Bioorganic Synthesis and Department of Medical Biochemistry, Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, 2333 CC Leiden, The Netherlands;

    Department of Bioorganic Synthesis and Department of Medical Biochemistry, Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, 2333 CC Leiden, The Netherlands;

    Department of Chemistry, York Structural Biology Laboratory, University of York, Heslington, York YO10 5DD, United Kingdom;

    Department of Bioorganic Synthesis and Department of Medical Biochemistry, Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, 2333 CC Leiden, The Netherlands;

    Department of Bioorganic Synthesis and Department of Medical Biochemistry, Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, 2333 CC Leiden, The Netherlands;

    Department of Bioorganic Synthesis and Department of Medical Biochemistry, Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, 2333 CC Leiden, The Netherlands;

    Department of Bioorganic Synthesis and Department of Medical Biochemistry, Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, 2333 CC Leiden, The Netherlands;

    Department of Bioorganic Synthesis and Department of Medical Biochemistry, Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, 2333 CC Leiden, The Netherlands;

    Department of Chemistry, York Structural Biology Laboratory, University of York, Heslington, York YO10 5DD, United Kingdom;

    Department of Bioorganic Synthesis and Department of Medical Biochemistry, Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, 2333 CC Leiden, The Netherlands;

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