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与传统的 M2 蛋白相比,蝙蝠流感 A 病毒的 M2 蛋白显示出非典型特征。

The M2 proteins of bat influenza A viruses reveal atypical features compared to conventional M2 proteins.

机构信息

Institute of Virology and Immunology , Mittelhäusern, Switzerland.

Graduate School for Cellular and Biomedical Sciences, University of Bern , Bern, Switzerland.

出版信息

J Virol. 2023 Aug 31;97(8):e0038823. doi: 10.1128/jvi.00388-23. Epub 2023 Aug 4.

Abstract

The influenza A virus (IAV) M2 protein has proton channel activity, which plays a role in virus uncoating and may help to preserve the metastable conformation of the IAV hemagglutinin (HA). In contrast to the highly conserved M2 proteins of conventional IAV, the primary sequences of bat IAV H17N10 and H18N11 M2 proteins show remarkable divergence, suggesting that these proteins may differ in their biological function. We, therefore, assessed the proton channel activity of bat IAV M2 proteins and investigated its role in virus replication. Here, we show that the M2 proteins of bat IAV did not fully protect acid-sensitive HA of classical IAV from low pH-induced conformational change, indicating low proton channel activity. Interestingly, the N31S substitution not only rendered bat IAV M2 proteins sensitive to inhibition by amantadine but also preserved the metastable conformation of acid-sensitive HA to a greater extent. In contrast, the acid-stable HA of H18N11 did not rely on such support by M2 protein. When mutant M2(N31S) protein was expressed in the context of chimeric H18N11/H5N1(6:2) encoding HA and NA of avian IAV H5N1, amantadine significantly inhibited virus entry, suggesting that ion channel activity supported virus uncoating. Finally, the cytoplasmic domain of the H18N11 M2 protein mediated rapid internalization of the protein from the plasma membrane leading to low-level expression at the cell surface. However, cell surface levels of H18N11 M2 protein were significantly enhanced in cells infected with the chimeric H18N11/H5N1(6:2) virus. The potential role of the N1 sialidase in arresting M2 internalization is discussed. IMPORTANCE Bat IAV M2 proteins not only differ from the homologous proteins of classical IAV by their divergent primary sequence but are also unable to preserve the metastable conformation of acid-sensitive HA, indicating low proton channel activity. This unusual feature may help to avoid M2-mediated cytotoxic effects and inflammation in bats infected with H17N10 or H18N11. Unlike classical M2 proteins, bat IAV M2 proteins with the N31S substitution mediated increased protection of HA from acid-induced conformational change. This remarkable gain of function may help to understand how single point mutations can modulate proton channel activity. In addition, the cytoplasmic domain was found to be responsible for the low cell surface expression level of bat IAV M2 proteins. Given that the M2 cytoplasmic domain of conventional IAV is well known to participate in virus assembly at the plasma membrane, this atypical feature might have consequences for bat IAV budding and egress.

摘要

甲型流感病毒(IAV)M2 蛋白具有质子通道活性,在病毒脱壳中发挥作用,并有助于维持 IAV 血凝素(HA)的亚稳构象。与传统 IAV 的高度保守的 M2 蛋白不同,蝙蝠 IAV H17N10 和 H18N11 M2 蛋白的一级序列显示出明显的差异,表明这些蛋白的生物学功能可能不同。因此,我们评估了蝙蝠 IAV M2 蛋白的质子通道活性,并研究了其在病毒复制中的作用。在这里,我们表明,蝙蝠 IAV 的 M2 蛋白不能完全保护经典 IAV 的酸敏感 HA 免受低 pH 诱导的构象变化,表明质子通道活性较低。有趣的是,N31S 取代不仅使蝙蝠 IAV M2 蛋白对金刚烷胺的抑制敏感,而且更能维持酸敏感 HA 的亚稳构象。相比之下,H18N11 的酸稳定 HA 并不依赖于 M2 蛋白的这种支持。当突变的 M2(N31S)蛋白在嵌合 H18N11/H5N1(6:2)编码的 HA 和来自禽源 IAV H5N1 的 NA 的背景下表达时,金刚烷胺显著抑制病毒进入,表明离子通道活性支持病毒脱壳。最后,H18N11 M2 蛋白的细胞质结构域介导该蛋白从质膜的快速内化,导致细胞表面的低水平表达。然而,在用嵌合 H18N11/H5N1(6:2)病毒感染的细胞中,H18N11 M2 蛋白的细胞表面水平显著增强。讨论了 N1 神经氨酸酶在阻止 M2 内化中的潜在作用。重要性蝙蝠 IAV M2 蛋白不仅因其不同的一级序列与经典 IAV 的同源蛋白不同,而且不能维持酸敏感 HA 的亚稳构象,表明质子通道活性较低。这种不寻常的特征可能有助于避免感染 H17N10 或 H18N11 的蝙蝠中由 M2 介导的细胞毒性和炎症。与经典 M2 蛋白不同,带有 N31S 取代的蝙蝠 IAV M2 蛋白对 HA 酸诱导构象变化的保护作用增强。这种显著的功能获得可能有助于理解单一点突变如何调节质子通道活性。此外,发现细胞质结构域负责蝙蝠 IAV M2 蛋白的低细胞表面表达水平。鉴于经典 IAV 的 M2 细胞质结构域众所周知参与质膜处的病毒组装,这种非典型特征可能会对蝙蝠 IAV 的出芽和逸出产生影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fa3/10506471/a5e25d7866a9/jvi.00388-23.f001.jpg

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