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Nanoscale organization of tetraspanins during HIV-1 budding by correlative dSTORM/AFM

机译:纳米tetraspanins在组织hiv - 1相关dSTORM / AFM出芽

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摘要

Membrane partition and remodeling play a key role in numerous cell mechanisms, especially in viral replication cycles where viruses subvert the plasma membrane to enter and escape from the host cell. Specifically assembly and release of HIV-1 particles require specific cellular components, which are recruited to the egress site by the viral protein Gag. We previously demonstrated that HIV-1 assembly alters both partitioning and dynamics of the tetraspanins CD9 and CD81, which are key players in many infectious processes, forming enriched areas where the virus buds. In this study we correlated super resolution microscopy mapping of tetraspanins with membrane topography delineated by atomic force microscopy (AFM) in Gag-expressing cells. We revealed that CD9 is specifically trapped within the nascent viral particles, especially at buds tips, suggesting that Gag mediates CD9 and CD81 depletion from the plasma membrane. In addition, we showed that CD9 is organized as small membrane assemblies of few tens of nanometers that can coalesce upon Gag expression.
机译:膜分区和改造起着关键的作用在众多的细胞机制,尤其是病毒复制周期病毒破坏的地方质膜进入和逃离的主机细胞。粒子需要特定细胞组件,招募到出口站点的吗病毒蛋白的呕吐。组装改变分区和hiv - 1动态的tetraspanins CD9和研究在许多感染过程是关键球员,形成丰富的地区病毒芽。本研究我们相关的超分辨率显微镜的映射tetraspanins膜地形由原子力显微镜在Gag-expressing细胞(AFM)。在新生CD9特别困病毒颗粒,特别是在味蕾技巧,表明Gag介导CD9和研究从质膜损耗。我们表明,CD9是组织为小膜组件的几十纳米合并后呕吐的表情。

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