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From the Cover: 3D visualization of HIV transfer at the virological synapse between dendritic cells and T cells

机译:从封面:树突状细胞和T细胞之间病毒突触中HIV转移的3D可视化

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摘要

The efficiency of HIV infection is greatly enhanced when the virus is delivered at conjugates between CD4+ T cells and virus-bearing antigen-presenting cells such as macrophages or dendritic cells via specialized structures known as virological synapses. Using ion abrasion SEM, electron tomography, and superresolution light microscopy, we have analyzed the spatial architecture of cell-cell contacts and distribution of HIV virions at virological synapses formed between mature dendritic cells and T cells. We demonstrate the striking envelopment of T cells by sheet-like membrane extensions derived from mature dendritic cells, resulting in a shielded region for formation of virological synapses. Within the synapse, filopodial extensions emanating from CD4+ T cells make contact with HIV virions sequestered deep within a 3D network of surface-accessible compartments in the dendritic cell. Viruses are detected at the membrane surfaces of both dendritic cells and T cells, but virions are not released passively at the synapse; instead, virus transfer requires the engagement of T-cell CD4 receptors. The relative seclusion of T cells from the extracellular milieu, the burial of the site of HIV transfer, and the receptor-dependent initiation of virion transfer by T cells highlight unique aspects of cell-cell HIV transmission.
机译:当病毒通过CD4 + T细胞与带有病毒的抗原呈递细胞(例如巨噬细胞或树突状细胞)之间的结合物通过称为病毒突触的特殊结构传递时,可以大大提高HIV感染的效率。使用离子磨损SEM,电子断层扫描和超高分辨率光学显微镜,我们分析了细胞-细胞接触的空间结构以及在成熟树突状细胞和T细胞之间形成的病毒突触中HIV病毒粒子的分布。我们证明了由成熟的树突状细胞衍生的片状膜延伸引人注目的T细胞的包围,导致形成一个病毒突触的屏蔽区域。在突触中,从CD4 + T细胞发出的丝状延伸物与被隔离在树突状细胞表面可接近隔室的3D网络深处的HIV病毒粒子接触。在树突状细胞和T细胞的膜表面都检测到病毒,但病毒颗粒不会在突触中被动释放;相反,病毒转移需要T细胞CD4受体的参与。 T细胞相对于细胞外环境的相对隔离,HIV转移部位的埋葬以及T细胞通过受体依赖性病毒体转移的启动突出了细胞间HIV传播的独特方面。

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