Lorieau Justin L, Louis John M, Bax Ad
Laboratory of Chemical Physics, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD 20892, USA.
Biopolymers. 2013 Mar;99(3):189-95. doi: 10.1002/bip.22102. Epub 2012 Sep 26.
A peptide comprising no fewer than the first 20 residues of the influenza hemagglutinin HA2 subunit suffices to induce lipid mixing between the membranes of different unilamellar vesicles. This 20-residue peptide was previously reported to adopt an open "boomerang" structure that differs significantly from the closed helical-hairpin structure of a fusion peptide consisting of the first 23 residues of the HA2 sequence. This study investigates the structural and dynamic features of fusion peptides of different length and subtype. Lacking key interactions that stabilize the closed, helical-hairpin structure, the 20-residue peptide is in a dynamic equilibrium between closed and open states, adopting a ca. 11% population of the former when solubilized by DPC micelles. Peptides shorter than 20 residues would have even fewer interactions to stabilize a helical hairpin fold, resulting in a vanishing hairpin population. Considering the conserved nature of hairpin-stabilizing interactions across all serotypes, and the minimum of 20 residues needed for fusion, we postulate that the closed state plays an essential role in the fusion process. However, opening of this hairpin structure may be essential to the formation of a membrane pore at the final stage of the fusion process.
一种包含至少流感血凝素HA2亚基前20个残基的肽足以诱导不同单层囊泡膜之间的脂质混合。先前报道这种20个残基的肽呈现出一种开放的“回飞棒”结构,这与由HA2序列的前23个残基组成的融合肽的封闭螺旋发夹结构有显著差异。本研究调查了不同长度和亚型的融合肽的结构和动态特征。由于缺乏稳定封闭螺旋发夹结构的关键相互作用,这种20个残基的肽处于封闭状态和开放状态之间的动态平衡中,当被DPC胶束溶解时,约11%的分子处于前一种状态。短于20个残基的肽稳定螺旋发夹折叠的相互作用更少,导致发夹结构的分子数量趋近于零。考虑到所有血清型中发夹稳定相互作用的保守性质以及融合所需的最少20个残基,我们推测封闭状态在融合过程中起关键作用。然而,这种发夹结构的打开对于融合过程最后阶段膜孔的形成可能至关重要。