首页> 美国卫生研究院文献>other >The Influenza M2 Cytoplasmic Tail Changes the Proton-Exchange Equilibria and the Backbone Conformation of the Transmembrane Histidine Residue to Facilitate Proton Conduction
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The Influenza M2 Cytoplasmic Tail Changes the Proton-Exchange Equilibria and the Backbone Conformation of the Transmembrane Histidine Residue to Facilitate Proton Conduction

机译:流感M2细胞质尾改变质子交换平衡和跨膜组氨酸残基的骨架构型以促进质子传导

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摘要

The influenza M2 protein forms an acid-activated tetrameric proton channel important for the virus lifecycle. Residue His37 in the transmembrane domain is responsible for channel activation and proton selectivity. While the structure and dynamics of His37 have been well studied in TM peptide constructs, it has not been investigated in the presence of the full cytoplasmic domain, which increases the proton conductivity by 2-fold compared to the TM peptide. We report here 13C and 15N chemical shifts of His37 in the cytoplasmic-containing M2(21-97), and show that cationic histidines are already present at neutral pH, in contrast to the TM peptide, indicating that the cytoplasmic domain shifts the protonation equilibria. Quantification of the imidazole 15N intensities yielded two resolved proton dissociation constants (pKa’s) of 7.1 and 5.4, which differ from the TM result but resemble the M2(18–60) result, suggesting cooperative proton binding. The average His37 pKa is higher for M2(21–97) than for the shorter constructs. We attribute this higher pKa to direct and indirect effects of the cytoplasmic domain, which is rich in acidic residues. 2D 13C-13C correlation spectra reveal seven His37 Cα-Cβ cross peaks at different pH, some of which are unique to the cytoplasmic-containing M2 and correspond to more ideal α-helical conformations. Based on the pH at which these chemical shifts appear and their sidechain structures, we assign these conformations to His37 in differently charged tetramers. Thus, the cytoplasmic domain facilitates proton conduction through the transmembrane pore by modifying the His37-water proton-exchange equilibria and the His37 backbone conformational distribution.
机译:流行性感冒M2蛋白形成酸激活的四聚体质子通道,对病毒的生命周期至关重要。跨膜域中的残基His37负责通道激活和质子选择性。虽然在TM肽构建体中对His37的结构和动力学进行了很好的研究,但尚未在完整的胞质域存在下进行研究,与TM肽相比,完整的胞质结构域使质子传导性提高了2倍。我们在这里报告了含胞质的M2(21-97)中His37的 13 C和 15 N化学位移,并表明阳离子组氨酸在中性pH下已经存在,与TM肽相反,表明胞质结构域改变了质子化平衡。咪唑 15 N强度的定量产生了两个解析的质子解离常数(pKa's),分别为7.1和5.4,这与TM结果不同,但与M2(18-60)结果相似,表明协作性质子结合。 M2(21–97)的平均His37 pKa高于较短的构建体。我们将此较高的pKa归因于富含酸性残基的胞质域的直接和间接作用。二维 13 C- 13 C相关光谱显示在不同pH值下有七个His37Cα-Cβ交叉峰,其中一些峰是含细胞质M2所独有的,对应于更理想的α-螺旋构象。根据这些化学位移出现时的pH值及其侧链结构,我们将这些构象分配给带不同电荷的四聚体中的His37。因此,胞质结构域通过修饰His37-水质子交换平衡和His37骨架构象分布,促进质子通过跨膜孔的传导。

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