新型硅糖苷酶抑制剂可抑制腮腺炎病毒的复制和感染。

IF 3.4 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Glycobiology Pub Date : 2024-09-30 DOI:10.1093/glycob/cwae059
Tadanobu Takahashi, Yuuki Kurebayashi, Tadamune Otsubo, Kiyoshi Ikeda, Kobun Konagaya, Shunsuke Suzuki, Mika Yamazaki, Kenya Suzuki, Yutaka Narimichi, Akira Minami, Hideyuki Takeuchi
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引用次数: 0

摘要

流行的人类病原体流行性腮腺炎病毒(MuV;orthorubulavirus parotitidis)会引起各种并发症和严重后遗症,如脑膜炎、脑炎、耳聋和生育能力受损。针对 MuV 的直接作用抗病毒药物(DAAs)可以预防流行性腮腺炎和与流行性腮腺炎相关的并发症和后遗症,但这种药物尚未开发出来。副粘病毒科的成员,如 MuV,具有病毒表面血凝素-神经氨酸酶(HN)蛋白,该蛋白具有糖苷酶活性,可促进病毒的有效复制。因此,为了开发针对 MuV 的 DAAs,我们合成了 MuV sialidase 抑制剂。据推测,病毒 HN 有一个与 N-乙酰神经氨酸(Neu5Ac)结合并具有硅糖苷酶活性的功能位点。此外,已知的 MuV sialidase 抑制剂是 Neu5Ac-2,3-二脱氢-2-脱氧-N-乙酰神经氨酸(DANA)的类似物,缺乏效力。目前还缺乏具有更高的 MuV sialialidase 抑制效力的 DANA 衍生物。MuV-HN-Neu5Ac 结合位点在 Neu5Ac 的 C4 位置附近有一个疏水空腔。利用这一点,我们合成了 C4 位置疏水性增加的 DANA 衍生物,并创造了 3 种新型硅脂酰化酶抑制剂(化合物 1、2 和 3),它们对 MuV-HN 的特异性高于 DANA;与 DANA 相比,它们对 MuV 复制步骤的抑制程度更高。此外,它们还能抑制血凝和 MuV 感染步骤。这 3 种新型 DANA 衍生物在 DANA 的 C4-羟基上具有线性烃基,这一发现有助于开发出对 MuV sialidase 具有高度特异性的强效 sialidase 抑制剂,可作为直接作用的 MuV 特异性抗病毒药物。
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Novel sialidase inhibitors suppress mumps virus replication and infection.

The prevalent human pathogen, mumps virus (MuV; orthorubulavirus parotitidis) causes various complications and serious sequelae, such as meningitis, encephalitis, deafness, and impaired fertility. Direct-acting antivirals (DAAs) targeting MuV which can prevent mumps and mumps-associated complications and sequelae are yet to be developed. Paramyxoviridae family members, such as MuV, possess viral surface hemagglutinin-neuraminidase (HN) protein with sialidase activity which facilitates efficient viral replication. Therefore, to develop DAAs targeting MuV we synthesized MuV sialidase inhibitors. It is proposed that the viral HN has a single functional site for N-acetylneuraminic acid (Neu5Ac) binding and sialidase activity. Further, the known MuV sialidase inhibitor is an analog of Neu5Ac-2,3-didehydro-2-deoxy-N-acetylneuraminic acid (DANA)-which lacks potency. DANA derivatives with higher MuV sialidase inhibitory potency are lacking. The MuV-HN-Neu5Ac binding site has a hydrophobic cavity adjacent to the C4 position of Neu5Ac. Exploiting this, here, we synthesized DANA derivatives with increasing hydrophobicity at its C4 position and created 3 novel sialidase inhibitors (Compounds 1, 2, and 3) with higher specificity for MuV-HN than DANA; they inhibited MuV replication step to greater extent than DANA. Furthermore, they also inhibited hemagglutination and the MuV infection step. The insight-that these 3 novel DANA derivatives possess linear hydrocarbon groups at the C4-hydroxyl group of DANA-could help develop highly potent sialidase inhibitors with high specificity for MuV sialidase, which may function as direct-acting MuV-specific antivirals.

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来源期刊
Glycobiology
Glycobiology 生物-生化与分子生物学
CiteScore
7.50
自引率
4.70%
发文量
73
审稿时长
3 months
期刊介绍: Established as the leading journal in the field, Glycobiology provides a unique forum dedicated to research into the biological functions of glycans, including glycoproteins, glycolipids, proteoglycans and free oligosaccharides, and on proteins that specifically interact with glycans (including lectins, glycosyltransferases, and glycosidases). Glycobiology is essential reading for researchers in biomedicine, basic science, and the biotechnology industries. By providing a single forum, the journal aims to improve communication between glycobiologists working in different disciplines and to increase the overall visibility of the field.
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