Stampolaki Marianna, Cherian Varkey Abel, Nimerovsky Evgeny, Leonov Andrei, Becker Stefan, Andreas Loren B
Department of NMR Based Structural Biology, Max Planck Institute for Multidisciplinary Sciences, Am Fassberg 11, Göttingen, Germany.
Chemistry. 2025 Jan 14;31(3):e202403129. doi: 10.1002/chem.202403129. Epub 2024 Dec 4.
The currently circulating S31N variant of the M2 proton channel of influenza A is resistant to antiviral drugs. Recently, there has been a growing concern regarding the impact of the lipid environment on the structural features of the S31N variant. The native symmetry of the M2 tetramer remains controversial. Here we show that S31N M2 persists in a dimer-of-dimers structure in different lipid preparations independent of the amount of solvating lipids up to at least 180 lipids per tetramer. NMR spectra clearly detect the characteristic resonances of the dimer-of-dimers of M2 (residues 18-60 or 18-62) reconstituted in lipids. NMR-based distance measurements indicate that two isoleucine residues with upfield shifted alpha carbon resonances, typical of extended conformations, are compatible with a particular side-chain rotameric state and helical backbone geometry. These chemical shifts are therefore compatible with the expected native transmembrane helical fold. Symmetry breaking at the pH sensing H37 residues, detected via peak doubling, is a stable feature of S31N M2 based on the reference strain Udorn/1972(H3N2). By contrast, the spectrum is dramatically altered for Columbia/2014/(H3N2) M2, which differs in sequence in the amphipathic helices. This highlights an allosteric coupling between the amphipathic helices and the pH sensing residues.
目前流行的甲型流感病毒M2质子通道的S31N变体对抗病毒药物具有抗性。最近,脂质环境对S31N变体结构特征的影响受到越来越多的关注。M2四聚体的天然对称性仍存在争议。在此,我们表明,S31N M2在不同脂质制剂中以二聚体二聚体结构存在,与溶剂化脂质的量无关,每个四聚体至少有180个脂质。核磁共振光谱清楚地检测到脂质中重构的M2(残基18 - 60或18 - 62)二聚体二聚体的特征共振。基于核磁共振的距离测量表明,两个异亮氨酸残基的α碳共振向高场移动,这是伸展构象的典型特征,与特定的侧链旋转异构体状态和螺旋主链几何结构兼容。因此,这些化学位移与预期的天然跨膜螺旋折叠兼容。基于参考毒株乌东/1972(H3N2),通过峰加倍检测到的pH感应H37残基处的对称性破坏是S31N M2的一个稳定特征。相比之下,哥伦比亚/2014/(H3N2)M2的光谱发生了显著变化,其两亲性螺旋的序列不同。这突出了两亲性螺旋与pH感应残基之间的变构耦合。