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膜纳米管在远距离上物理连接T细胞,为HIV-1传播提供了一条新途径。

Membrane nanotubes physically connect T cells over long distances presenting a novel route for HIV-1 transmission.

作者信息

Sowinski Stefanie, Jolly Clare, Berninghausen Otto, Purbhoo Marco A, Chauveau Anne, Köhler Karsten, Oddos Stephane, Eissmann Philipp, Brodsky Frances M, Hopkins Colin, Onfelt Björn, Sattentau Quentin, Davis Daniel M

机构信息

Division of Cell and Molecular Biology, Sir Alexander Fleming Building, Imperial College London, SW7 2AZ, UK.

出版信息

Nat Cell Biol. 2008 Feb;10(2):211-9. doi: 10.1038/ncb1682. Epub 2008 Jan 13.

Abstract

Transmission of HIV-1 via intercellular connections has been estimated as 100-1000 times more efficient than a cell-free process, perhaps in part explaining persistent viral spread in the presence of neutralizing antibodies. Such effective intercellular transfer of HIV-1 could occur through virological synapses or target-cell filopodia connected to infected cells. Here we report that membrane nanotubes, formed when T cells make contact and subsequently part, provide a new route for HIV-1 transmission. Membrane nanotubes are known to connect various cell types, including neuronal and immune cells, and allow calcium-mediated signals to spread between connected myeloid cells. However, T-cell nanotubes are distinct from open-ended membranous tethers between other cell types, as a dynamic junction persists within T-cell nanotubes or at their contact with cell bodies. We also report that an extracellular matrix scaffold allows T-cell nanotubes to adopt variably shaped contours. HIV-1 transfers to uninfected T cells through nanotubes in a receptor-dependent manner. These data lead us to propose that HIV-1 can spread using nanotubular connections formed by short-term intercellular unions in which T cells specialize.

摘要

据估计,HIV-1通过细胞间连接进行传播的效率比无细胞过程高100至1000倍,这或许在一定程度上解释了在存在中和抗体的情况下病毒仍持续传播的现象。HIV-1如此有效的细胞间转移可能通过病毒突触或与受感染细胞相连的靶细胞丝状伪足发生。在此我们报告,T细胞接触并随后分开时形成的膜纳米管为HIV-1传播提供了一条新途径。已知膜纳米管可连接包括神经元和免疫细胞在内的各种细胞类型,并使钙介导的信号在相连的髓样细胞之间传播。然而,T细胞纳米管不同于其他细胞类型之间的开放式膜性连接,因为T细胞纳米管内或其与细胞体接触处存在动态连接。我们还报告,细胞外基质支架可使T细胞纳米管呈现出各种形状的轮廓。HIV-1以受体依赖的方式通过纳米管转移至未感染的T细胞。这些数据使我们提出,HIV-1可利用由T细胞特化的短期细胞间结合形成的纳米管连接进行传播。

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