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首页> 外文期刊>Biochemistry >Effect of Cholesterol on the Interaction of the HIV GP41 Fusion Peptide with Model Membranes.Importance of the Membrane Dipole Potential
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Effect of Cholesterol on the Interaction of the HIV GP41 Fusion Peptide with Model Membranes.Importance of the Membrane Dipole Potential

机译:胆固醇对HIV GP41融合肽与模型膜相互作用的影响。膜偶极电位的重要性

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Fusion of viral and cell membranes is a key event in the process by which the human immunodeficiency virus (HIV) enters the target cell.Membrane fusion is facilitated by the interaction of the viral gp41 fusion peptide with the cell membrane.Using synthetic peptides and model membrane systems,it has been established that the sequence of events implies the binding of the peptide to the membrane,followed by a conformational change (transformation of unordered and helical structures into beta-aggregates) which precedes lipid mixing.It is known that this process can be influenced by the membrane lipid composition.In the present work we have undertaken a systematic study in order to determine the influence of cholesterol (abundant in the viral membrane) in the sequence of events leading to lipid mixing.Besides its effect on membrane fluidity,cholesterol can affect a less known physical parameter,the membrane dipole potential.Using the dipole potential fluorescent sensor di-8-ANEPPS together with other biophysical techniques,we show that cholesterol increases the affinity of the fusion peptide for the model membranes,and although it lowers the extent of lipid mixing,it increases the mixing rate.The influence of cholesterol on the peptide affinity and the lipid mixing rate are shown to be mainly due to its influence of the membrane dipole potential,whereas the lipid mixing extent and peptide conformational changes seem to be more dependent on other membrane parameters such as membrane fluidity and hydration.
机译:病毒和细胞膜融合是人类免疫缺陷病毒(HIV)进入靶细胞的过程中的关键事件。病毒gp41融合肽与细胞膜的相互作用促进了膜融合。使用合成肽和模型在膜系统中,已经确定事件的顺序暗示​​了肽与膜的结合,随后是脂质混合之前的构象变化(无序和螺旋结构转化为β-聚集体)。众所周知,该过程在本研究中,我们进行了系统的研究,以确定胆固醇(病毒膜中丰富)对导致脂质混合的事件顺序的影响。此外,胆固醇对膜流动性的影响,胆固醇会影响一个鲜为人知的物理参数,膜偶极电位。将偶极电位荧光传感器di-8-ANEPPS一起使用结合其他生物物理技术,我们发现胆固醇增加了融合肽对模型膜的亲和力,尽管降低了脂质混合的程度,但增加了混合速率。胆固醇对肽亲和力和脂质混合率的影响结果显示,这主要是由于其对膜偶极电位的影响,而脂质的混合程度和肽的构象变化似乎更依赖于其他膜参数,例如膜的流动性和水合作用。

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