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发现新型多杂环神经氨酸酶抑制剂,以 1,3,4-噁二唑硫醚酰胺为核心骨架。

Discovery of novel polyheterocyclic neuraminidase inhibitors with 1,3,4-oxadiazole thioetheramide as core backbone.

机构信息

School of Chemical and Environmental Engineering, Shanghai Institute of Technology, Shanghai, 201418, China.

School of Chemical and Environmental Engineering, Shanghai Institute of Technology, Shanghai, 201418, China.

出版信息

Eur J Med Chem. 2024 Apr 5;269:116305. doi: 10.1016/j.ejmech.2024.116305. Epub 2024 Mar 12.

Abstract

Inspired by our earlier findings regarding neuraminidase (NA) inhibitors interacting with 150-cavity or 430-cavity of NA, sixteen novel polyheterocyclic NA inhibitors with 1,3,4-oxadiazole thioetheramide as core backbone were designed and synthesized based on the lead compound ZINC13401480. Of the synthesized compounds, compound N5 targeting 150-cavity exerts the best inhibitory activity against the wild-type H5N1 NA, with IC value of 0.14 μM, which is superior to oseltamivir carboxylate (OSC) (IC = 0.31 μM). Compound N10 targeting 430-cavity exhibits the best activity against the H5N1-H274Y mutant NA. Although the activity of N10 is comparable to that of OSC for wild-type H5N1 inhibition, it is approximately 60-fold more potent than OSC against the H274Y mutant, suggesting that it is not easy for the virus to develop drug resistance and is attractive for drug development. N10 (EC = 0.11 μM) also exhibits excellent antiviral activity against H5N1, which is superior to the positive control OSC (EC = 1.47 μM). Molecular docking study shows that the occupation of aromatic fused rings and oxadiazole moiety at the active site and the extension of the substituted phenyl to the 150-cavity or 430-cavity make great contributions to the good potency of this series of polyheterocyclic NA inhibitors. Some advancements in the discovery of effective target-specific NA inhibitors in this study may offer some assistance in the development of more potent anti-influenza drugs.

摘要

受我们早期关于神经氨酸酶 (NA) 抑制剂与 150 腔或 430 腔 NA 相互作用的发现的启发,我们以先导化合物 ZINC13401480 为基础,设计并合成了十六种新型多杂环 NA 抑制剂,其核心骨架为 1,3,4-噁二唑硫醚酰胺。在所合成的化合物中,针对 150 腔的化合物 N5 对野生型 H5N1 NA 的抑制活性最好,IC 值为 0.14 μM,优于奥司他韦羧酸盐(OSC)(IC = 0.31 μM)。针对 430 腔的化合物 N10 对 H5N1-H274Y 突变 NA 的活性最好。虽然 N10 对野生型 H5N1 的抑制活性与 OSC 相当,但对 H274Y 突变体的活性约为 OSC 的 60 倍,表明病毒不易产生耐药性,具有很大的开发潜力。N10(EC = 0.11 μM)对 H5N1 也表现出优异的抗病毒活性,优于阳性对照 OSC(EC = 1.47 μM)。分子对接研究表明,芳香稠环和噁二唑部分在活性部位的占据以及取代苯基向 150 腔或 430 腔的延伸对这一系列多杂环 NA 抑制剂的良好活性有很大贡献。本研究中发现有效针对特定 NA 抑制剂的一些进展可能有助于开发更有效的抗流感药物。

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