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源自流感病毒 M2 蛋白的信封形变构抗病毒肽。

Envelope-deforming antiviral peptide derived from influenza virus M2 protein.

机构信息

Department of Integrative Biotechnology, College of Biotechnology and Bioengineering, Sungkyunkwan University, Suwon, 16419, Republic of Korea.

Department of Integrative Biotechnology, College of Biotechnology and Bioengineering, Sungkyunkwan University, Suwon, 16419, Republic of Korea; Biomedical Institute for Convergence, Sungkyunkwan University, Suwon, 16419, Republic of Korea.

出版信息

Biochem Biophys Res Commun. 2019 Sep 24;517(3):507-512. doi: 10.1016/j.bbrc.2019.07.088. Epub 2019 Jul 30.

DOI:10.1016/j.bbrc.2019.07.088
PMID:31375212
Abstract

Molecules interfering with lipid bilayer function exhibit strong antiviral activity against a broad range of enveloped viruses, with a lower risk of resistance development than that for viral protein-targeting drugs. Amphipathic peptides are rich sources of such membrane-interacting antivirals. Here, we report that influenza viruses were effectively inactivated by M2 AH, an amphipathic peptide derived from the M2 protein of the influenza virus. Although overall hydrophobicity () of M2 AH was not related to antiviral activity, modification of the hydrophobic moment (<μH>) of M2 AH dramatically altered the antiviral activity of this peptide. M2 MH, a derivative of M2 AH with a <μH> of 0.874, showed a half maximal inhibitory concentration (IC) of 53.3 nM against the A/PR/8/34 strain (H1N1), which is 16-times lower than that of M2 AH. The selectivity index (IC/CC), where CC is the half maximal cytotoxic concentration, was 360 for M2 MH and 81 for M2 AH. Dynamic light scattering spectroscopy and electron microscopy revealed that M2 AH-derived peptides did not disrupt liposomes but altered the shape of viruses. This result suggests that the shape of virus envelope was closely related to its activity. Thus, we propose that deforming without rupturing the membranes may achieve a high selectivity index for peptide antivirals.

摘要

干扰脂质双层功能的分子对广泛的包膜病毒表现出很强的抗病毒活性,其耐药风险低于针对病毒蛋白的靶向药物。两亲肽是此类膜相互作用抗病毒药物的丰富来源。在这里,我们报告说,流感病毒被 M2 AH 有效灭活,M2 AH 是一种从流感病毒 M2 蛋白衍生而来的两亲肽。虽然 M2 AH 的整体疏水性()与抗病毒活性无关,但 M2 AH 的疏水力矩(<μH>)的修饰极大地改变了该肽的抗病毒活性。M2 MH 是 M2 AH 的衍生物,<μH>为 0.874,对 A/PR/8/34 株(H1N1)的半最大抑制浓度(IC)为 53.3 nM,比 M2 AH 低 16 倍。选择性指数(IC/CC),其中 CC 是半最大细胞毒性浓度,M2 MH 为 360,M2 AH 为 81。动态光散射光谱和电子显微镜显示,M2 AH 衍生肽不会破坏脂质体,但会改变病毒的形状。这一结果表明病毒包膜的形状与其活性密切相关。因此,我们提出,在不破坏膜的情况下使形状变形可能为肽类抗病毒药物提供高的选择性指数。

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