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首页> 外文期刊>Journal of Molecular Biology >Sequence-specific conformational dynamics of model transmembrane domains determines their membrane fusogenic function.
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Sequence-specific conformational dynamics of model transmembrane domains determines their membrane fusogenic function.

机译:模型跨膜结构域的序列特异性构象动力学决定了它们的膜融合功能。

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摘要

The transmembrane domains of fusion proteins are known to be functionally important and display an overabundance of helix-destabilizing Ile and Val residues. In an effort to systematically study the relationship of fusogenicity and helix stability, we previously designed LV peptides, a low-complexity model system whose hydrophobic core consists of Leu and Val residues at different ratios. The ability of LV peptides to fuse membranes increases with the content of helix-destabilizing residues. Here, we monitored the kinetics of amide deuterium/hydrogen exchange of LV-peptide helices to probe their conformational dynamics. The kinetics indeed increases strongly with the content of helix-destabilizing residues and is likely to reflect local fluctuations of the helix backbones as all peptides exhibit uncorrelated exchange and contain subpopulations of amide deuterium atoms that exchange with different velocities. Interestingly, helices whose amide deuterium atoms are shifted from slower to faster subpopulations are more fusogenic. Novel peptide variants in which Val residues are concentrated at peripheral or central domains of the hydrophobic core were designed to map functionally relevant helix subdomains. Their structural and functional analysis suggests that dynamic domains close to the helix termini are more relevant for fusogenicity than central domains but cooperate with the latter to achieve strong fusogenicity.
机译:已知融合蛋白的跨膜结构域在功能上很重要,并且显示出过量的螺旋不稳定的Ile和Val残基。为了系统地研究融合性和螺旋稳定性之间的关系,我们先前设计了LV肽,这是一种低复杂度的模型系统,其疏水核心由Leu和Val残基以不同比例组成。 LV肽融合膜的能力随螺旋不稳定残基的含量增加而增加。在这里,我们监测了LV肽螺旋的酰胺氘/氢交换动力学,以探究其构象动力学。动力学确实随着螺旋不稳定残基的含量而强烈增加,并且可能反映出螺旋主链的局部波动,因为所有肽均表现出不相关的交换并包含以不同速度交换的酰胺氘原子亚群。有趣的是,其酰胺氘原子从较慢的亚种群转变为较快的亚种群的螺旋更易融合。 Val残基集中在疏水核心的外围或中心结构域的新型肽变体被设计为定位功能相关的螺旋亚结构域。他们的结构和功能分析表明,靠近螺旋末端的动态域比中部域对融合性更相关,但与中央域协作可实现强融合性。

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