首页> 外文期刊>Journal of Biomolecular NMR >Detection of closed influenza virus hemagglutinin fusion peptide structures in membranes by backbone ~(13)CO-~(15)N rotational-echo double-resonance solid-state NMR
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Detection of closed influenza virus hemagglutinin fusion peptide structures in membranes by backbone ~(13)CO-~(15)N rotational-echo double-resonance solid-state NMR

机译:骨架〜(13)CO-〜(15)N旋转回波双共振固态NMR检测膜中封闭的流感病毒血凝素融合肽结构

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摘要

The influenza virus fusion peptide is the Nterminal ~20 residues of the HA2 subunit of the hemagglutinin protein and this peptide plays a key role in the fusion of the viral and endosomal membranes during initial infection of a cell. The fusion peptide adopts N-helix/turn/C-helix structure in both detergent and membranes with reports of both open and closed interhelical topologies. In the present study, backbone ~(13)CO-~(15)N REDOR solid-state NMR was applied to the membrane-associated fusion peptide to detect the distribution of interhelical distances. The data clearly showed a large fraction of closed and semi-closed topologies and were best-fitted to a mixture of two structures that do not exchange. One of the earlier open structural models may have incorrect G13 dihedral angles derived from TALOS analysis of experimentally correct ~(13)C shifts.
机译:流感病毒融合肽是血凝素蛋白HA2亚基的N端约20个残基,在细胞初始感染过程中,该肽在病毒膜和内体膜的融合中起关键作用。该融合肽在去污剂和膜中均采用N-螺旋/转角/ C-螺旋结构,并报告了螺旋形和闭合螺旋形之间的拓扑结构。在本研究中,将骨架〜(13)CO-〜(15)N REDOR固态NMR应用于与膜相关的融合肽,以检测螺旋间距的分布。数据清楚地显示出大部分封闭和半封闭拓扑,并且最适合两种不交换的结构的混合物。一种较早的开放式结构模型可能具有不正确的G13二面角,该不正确的G13二面角源自实验正确的〜(13)C位移的TALOS分析。

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