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Bioisosteric modification of known fucosidase inhibitors to discover a novel inhibitor of a-L-fucosidase

机译:已知岩藻糖苷酶抑制剂的生物等排修饰以发现新的α-L-岩藻糖苷酶抑制剂

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摘要

Bioisosteric modification of known fucosidase inhibitors A and B, resulted in three new types of molecules, 4b, 5c and 6a (belonging to furopyridinedione, thiohydantoin and hydantoin chemotypes) that could potentially bind to a-L-fucosidase (bovine kidney origin). Molecular docking revealed and compared the putative binding interaction between 4b, 5c and 6a with A and B against the active site of a homology model of a-L-fucosidase. Based on this initial investigation, design and synthesis of a library of small molecules based on furopyridinedione, thiohydantoin and hydantoin, followed by their in vitro screening\udagainst a-L-fucosidase (bovine kidney origin) generated a potent inhibitor (compound 4e) with IC50 of �0.7 mM. Compound 4e possessed no cytotoxic properties when tested against healthy mammalian COS-1 cells. Reaction kinetics study suggested it to be a mixed inhibitor. Finally compounds 4a, b, e and f, bearing the furopyridinedione motif also exhibited substantial inhibition of the proliferation of MCF 7 breast cancer cells.
机译:已知岩藻糖苷酶抑制剂A和B的生物立体异构修饰产生了三种新类型的分子,分别为4b,5c和6a(属于呋喃吡啶二酮,硫代乙内酰脲和乙内酰脲化学分型),它们可能与α-L-岩藻糖苷酶(牛肾来源)结合。分子对接揭示并比较了4b,5c和6a与A和B之间的假定结合相互作用与a-L-岩藻糖苷酶同源模型的活性位点。基于此初步研究,设计和合成了基于呋喃并吡啶二酮,硫代乙内酰脲和乙内酰脲的小分子文库,然后对其进行体外筛选\抗αL-岩藻糖苷酶(牛肾来源),产生了有效的抑制剂(化合物4e),IC50为0.7毫米当针对健康的哺乳动物COS-1细胞进行测试时,化合物4e不具有细胞毒性。反应动力学研究表明它是一种混合抑制剂。最后,带有呋喃吡啶二酮基序的化合物4a,b,e和f也显示出对MCF 7乳腺癌细胞增殖的实质性抑制。

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