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Conformational transitions of membrane-bound HIV-1 fusion peptide

机译:膜结合HIV-1融合肽的构象转变

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摘要

The human immunodeficiency virus type-1 (HIV-1) fusion peptide (FP) functions as a non-constitutive membrane anchor that translocates into membranes during envelope glycoprotein-induced fusion. Here, by means of infrared spectroscopy (IR) and of various bilayer-perturbation assays, we describe the peptide conformations that are accessible to its membrane-bound state and the transitions occurring between them. The peptide underwent a conformational transition from a predominantly α-helical structure to extended β-type strands by increasing peptide concentration in 1-palmitoyl-2-oleoylphosphatidylglycerol (POPG) vesicles. A comparable transition was observed at a fixed 1:100 peptide-to-lipid ratio when calcium was added to vesicles containing prebound α-helical peptide. Cation binding induced an increase in the amount of H-bonded carbonyls within the interfacial region of POPG. Calcium-promoted α→β conversion in membranes correlated with the closure of preformed lytic pores and took place in dispersed (nonaggregated) vesicles doped with poly(ethylene glycol)-lipid conjugates, showing that the conformational transition was independent of vesicle aggregation. We conclude that the target membrane conditions modulate the eventual structure adopted by the HIV-1 FP.C Conformational polymorphism of the inserted peptide may contribute to the flexibility of the fusogenic complex during the fusion reaction cycle, and/or may be related to target membrane perturbation at the fusion locus.
机译:人类1型免疫缺陷病毒(HIV-1)融合肽(FP)充当非组成性膜锚,在包膜糖蛋白诱导的融合过程中转移到膜中。在这里,通过红外光谱(IR)和各种双层扰动测定法,我们描述了可接近其膜结合状态的肽构象以及它们之间发生的过渡。通过增加1-棕榈酰基-2-油酰基磷脂酰甘油(POPG)囊泡中的肽浓度,使肽从主要的α螺旋结构到延伸的β型链发生构象转变。当将钙添加到含有预结合的α-螺旋肽的囊泡中时,在固定的1:100肽与脂质比率下观察到了类似的过渡。阳离子结合引起POPG界面区域内H键合羰基数量的增加。膜中钙促进的α→β转化与预先形成的裂解孔的关闭有关,发生在掺有聚(乙二醇)-脂质共轭物的分散(未聚集)囊泡中,表明构象转变与囊泡聚集无关。我们得出结论,目标膜条件调节了HIV-1 FP所采用的最终结构。C插入肽的构象多态性可能有助于融合反应周期中融合复合物的柔性,和/或可能与目标膜有关在融合点处发生扰动。

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