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pH-triggered, activated-state conformations of the influenza hemagglutinin fusion peptide revealed by NMR

机译:通过NMR显示的pH触发的流感血凝素融合肽激活态构象

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摘要

The highly conserved first 23 residues of the influenza hemagglutinin HA2 subunit constitute the fusion domain, which plays a pivotal role in fusing viral and host-cell membranes. At neutral pH, this peptide adopts a tight helical hairpin wedge structure, stabilized by aliphatic hydrogen bonding and charge-dipole interactions. We demonstrate that at low pH, where the fusion process is triggered, the native peptide transiently visits activated states that are very similar to those sampled by a G8A mutant. This mutant retains a small fraction of helical hairpin conformation, in rapid equilibrium with at least two open structures. The exchange rate between the closed and open conformations of the wild-type fusion peptide is ~40 kHz, with a total open-state population of ~20%. Transitions to these activated states are likely to play a crucial role in formation of the fusion pore, an essential structure required in the final stage of membrane fusion.
机译:流感血凝素HA2亚基的高度保守的前23个残基构成融合结构域,在融合病毒膜和宿主细胞膜中起关键作用。在中性pH下,该肽采用紧密的螺旋发夹楔形结构,并通过脂肪族氢键和电荷-偶极相互作用而稳定。我们证明,在低pH值(触发融合过程)下,天然肽会短暂访问激活状态,该状态与G8A突变体采样的状态非常相似。该突变体与至少两个开放结构保持快速平衡的螺旋状发夹构象的一小部分。野生型融合肽的封闭和开放构象之间的交换速率为〜40 kHz,总开放态种群为〜20%。向这些活化态的转变可能在融合孔的形成中起关键作用,融合孔是膜融合最后阶段所需的基本结构。

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