首页> 美国卫生研究院文献>Journal of Virology >Sphingolipid-dependent fusion of Semliki Forest virus with cholesterol-containing liposomes requires both the 3-hydroxyl group and the double bond of the sphingolipid backbone.
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Sphingolipid-dependent fusion of Semliki Forest virus with cholesterol-containing liposomes requires both the 3-hydroxyl group and the double bond of the sphingolipid backbone.

机译:Semliki Forest病毒与含胆固醇的脂质体的鞘脂依赖性融合需要鞘脂骨架的3-羟基和双键。

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摘要

Low-pH-induced membrane fusion of Semliki Forest virus (SFV) in a model system is mediated by sphingolipids in the target membrane; ceramide is the sphingolipid minimally required (J. L. Nieva, R. Bron, J. Corver, and J. Wilschut, EMBO J. 13:2797-2804, 1994). Here, using various ceramide analogs, we demonstrate that sphingolipid-dependent fusion of SFV with cholesterol-containing liposomes exhibits remarkable molecular specificity, the 3-hydroxyl group and the 4,5-trans carbon-carbon double bond of the sphingosine backbone being critical for the sphingolipid to mediate the process. This observation supports the notion that sphingolipids act as a cofactor in SFV fusion, interacting directly with the viral fusion protein to induce its ultimate fusion-active conformation.
机译:在模型系统中低pH诱导的Semliki森林病毒(SFV)膜融合是由目标膜中的鞘脂介导的;神经酰胺是最低限度需要的鞘脂(J.L.Nieva,R.Bron,J.Corver和J.Wilschut,EMBO J.13:2797-2804,1994)。在这里,使用各种神经酰胺类似物,我们证明了SFV与含胆固醇脂质体的鞘脂依赖性融合表现出显着的分子特异性,鞘氨醇骨架的3-羟基和4,5-反式碳-碳双键对于鞘脂介导该过程。该观察结果支持了鞘脂在SFV融合中充当辅因子的观点,直接与病毒融合蛋白相互作用以诱导其最终的融合活性构象。

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