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首页> 外文期刊>Biochemistry >Lipid headgroup spacing and peptide penetration, but not peptide oligomerization, modulate peptide-induced fusion.
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Lipid headgroup spacing and peptide penetration, but not peptide oligomerization, modulate peptide-induced fusion.

机译:脂质头基的间隔和肽的渗透,而不是肽的低聚,可调节肽诱导的融合。

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In this study, the mechanism by which an amphipathic negatively charged peptide consisting of 11 amino acids (WAE) induces fusion of liposomal phosphatidylcholine membranes is investigated. WAE-induced fusion, which only occurs when the peptide is covalently attached to the bilayer, shows a highly remarkable dependence on naturally occurring phosphatidylcholine species. The initial rate of fusion increased in the order 1-palmitoyl 2-arachidonoyl PC (PAPC) > 1-palmitoyl 2-oleoyl PC (POPC) > 1-stearoyl 2-oleoyl PC (SOPC) > dioleoyl PC (DOPC) > egg yolk PC. Interestingly, the susceptibility of the various PC species toward WAE-induced fusion matched a similar order of increase in intrinsic lipid headgroup spacing of the target membrane. The degree of spacing, in turn, was found to be related to the extent by which the fluorescence quantum yield of the Trp residue increased, which occurred upon the interaction of WAE with target membranes. Therefore, these results demonstrate an enhanced ability for WAE to engage in hydrophobic interactions when headgroup spacing increases. Thus, this latter parameter most likely regulates the degree of penetration of WAE into the target membrane. Apart from penetrating, WAE oligomerizes at the site of fusion as revealed by monitoring the self-quenching of the fluorescently derivatized lipid anchor to which WAE is attached. Clustering appears specifically related to the process of membrane fusion and not membrane aggregation. This is indicated by the fact that fusion and clustering, but not aggregation, display the same strict temperature dependence. However, evidence is presented indicating that clustering is an accompanying event rather than a prerequisite for fusion. The notion that various biologically relevant fusion phenomena are accompanied by protein clustering and the specific PC-species-dependent regulation of membrane fusion emphasize the biological significance of the peptide in serving as a model for investigating mechanisms of protein-induced fusion.
机译:在这项研究中,研究了由11个氨基酸组成的两亲性带负电荷的肽(WAE)诱导脂质体磷脂酰胆碱膜融合的机制。 WAE诱导的融合仅在肽共价结合到双层时才会发生,它显示出对天然存在的磷脂酰胆碱种类的高度依赖。初始融合速率按以下顺序增加:1-棕榈酰基2-花生四烯酰基PC(PAPC)> 1-棕榈酰基2-油酰基PC(POPC)> 1-硬脂酰基2-油酰基PC(SOPC)>二醇酰基PC(DOPC)>蛋黄电脑有趣的是,各种PC对WAE诱导的融合的敏感性与目标膜的固有脂质头基间距的增加顺序相似。反过来,发现间隔的程度与Trp残基的荧光量子产率增加的程度有关,Trp残基的荧光量子产率在WAE与靶膜相互作用时发生。因此,这些结果表明,当头基间距增加时,WAE参与疏水相互作用的能力增强。因此,后一个参数最有可能调节WAE进入靶膜的渗透程度。除了穿透之外,通过监测附着有WAE的荧光衍生脂质锚的自猝灭,WAE在融合位点发生寡聚。聚集似乎与膜融合过程特别相关,而不与膜聚集过程有关。这由以下事实表明:融合和聚集而不是聚集表现出相同的严格温度依赖性。但是,有证据表明聚类是伴随事件,而不是融合的前提。各种生物学相关的融合现象都伴随着蛋白质聚集和膜融合的特定PC物种依赖性调节的观点强调了该肽在作为研究蛋白质诱导的融合机制的模型中的生物学意义。

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